THE PLATYPUS IN CAPTIVITY
Australian mammals have so far proved disappointing. The dingo will certainly parade his enclosure by day, but he is just a dog, after all. The kangaroos and wallabies show well enough, but one is very much like another. The long series of interesting and beautiful marsupials, which one would much like to see in our Zoological Gardens--pouched mice, flying ‘squirrels,’ ‘opossums,’ bandicoots, and others--are not only nocturnal, but so cryptozoic that they are rarely seen, even in the bush. In the ‘Zoo’ they are represented merely by labels on apparently untenanted cages, though occasionally one may catch a glimpse of something furry rolled up in a ball in the heavy shadow of the sleeping-hutch. Perhaps some day we shall have a special Marsupial House, lit by powerful electric lamps all night, to simulate daylight and drive our fauna to slumber, and darkened down by day to the intensity of bright moonlight, in which we may come to know the grace and beauty of the smaller arboreal forms.
In September 1921 I sent two living adult and three nestling platypus to the Zoology Department at the University of Sydney. The limited number of people who on that occasion were privileged to see the platypus swimming and diving in a large glass-fronted tank were all agreed as to the interest and beauty of the exhibition. The loveliness of the fur on the ventral surface, with its gold and silver lights as seen under water, was certainly something to remember. This same fur, by the way, is described in the British Museum Catalogue of Mammalia as ‘dirty-white’--an indication of the difference between the stuffed and the living animal.
The platypus can be kept alive in captivity; and it is very probable that, with sufficient pains and interest, it can be satisfactorily exhibited. As it is probably the most interesting animal in the whole world, it would certainly be worth while to make the attempt.
Until quite recently, although the animal has been kept alive for fairly long periods in Australia, no living platypus had ever been exported from the country. Chenu (1879, p. 351) certainly writes:--“Ces animaux longtemps rares dans nos collections européennes y sont actuellement plus fréquemment apportés, et l’on en a même de vivants, surtout en Angleterre;” but there is no truth in the statement. It is probably founded on lying reports of rascally dealers. Bennett relates one such case, in which it was reported that a loud quacking noise, like that of a duck, was heard coming from an East London pond; that a gentleman struck with his stick at the spot from which the noise was proceeding; and that some hours later a fine male Ornithorhynchus was found dying on the bank. It was now stuffed, and might be seen in Mr. So-and-so’s shop.
Maule (P.Z.S., 1832, p. 146) says:--
“in one of the nests he was fortunate enough to secure an old female and two young. The female lived for about two weeks on worms and bread and milk, being abundantly supplied with water, and supported her young, as it was supposed, by similar means. She was killed by accident on the fourteenth day after her capture.”
Verreaux (1848, p. 133) had, of course, no difficulty whatever in keeping them in captivity. During all the time that he was making his important and painstaking series of observations, he had platypus of all sorts and sizes in his possession. He fed them on broken rice mixed with yolk of egg--which, after a time, they preferred to their natural food. They fed at night, and growled and got angry if no food was provided. Seeing how easy it all was, and how glad the French zoologists would have been to welcome them, it is remarkable that Verreaux did not take his pets back to France, or even send them by a reliable hand. But there is no record of his making the attempt.
Dr. George Bennett was very anxious to send the living animal to Europe and made an ill-planned effort to accustom the platypus to captivity; but, as he evidently had not studied its feeding habits, he was not successful. He gives an extended account of his attempts in his Gatherings of a Naturalist, from which these few paragraphs are quoted:--
“I arrived with my little family of Ornithorhynchi safe at Sydney, and as they survived for some time, an opportunity was afforded me of observing their habits. The little animals appeared often to dream of swimming, for I have frequently seen their fore-paws in movement as if in the act. If I placed them on the ground during the day, they ran about, seeking some dark corner for repose; and when put in a dark place, or in a box, they huddled themselves up as soon as they became a little reconciled to the locality, and went to sleep. I found that they would sleep on a table, sofa, or indeed anywhere; but, if permitted, would always resort to that spot in which they had previously been accustomed to repose. Although for days together they would sleep in the bed made up for them, yet on a sudden, from some unaccountable caprice, they would shift their resting-place and seek repose behind a box, or in some dark retirement, in preference to their former habitation. They usually reposed side by side, looking like a pair of furred balls, and surly little growls issued from them when disturbed; nevertheless, when very sound asleep, they might be handled and examined without evincing any signs of annoyance. One evening both the little pets came out about dusk, went as usual and ate food from the saucer, and then commenced playing, like two puppies, attacking each other with their mandibles, raising their fore-paws, and tumbling one over the other.... In the struggle one would get thrust down; and at the moment when the spectator would expect it to rise again and renew the combat, it would commence scratching itself, its antagonist looking on and waiting for the sport to be renewed. When running, they were exceedingly animated, their little eyes glistened, and the orifices of their ears contracted and dilated with rapidity; if taken into the hands at this time for examination, they struggled violently to escape, and their loose integuments rendered it difficult to retain them. Their eyes being placed so high on the head, they do not see objects well in a straight line, and consequently run against every thing in the room during their perambulations, spreading confusion among all the light and easily overturnable articles ... besides combing their fur to clean it when wet, I have seen them preen it with their beak (if the term may be allowed) as a duck would clean its feathers. It is, indeed, interesting to watch them engaged in the operations of the toilet, by which their coats acquire an increased bright and glossy appearance. When I placed them in a pan of deep water, they were eager to get out after being there only a short time; but when the water was shallow, with a turf of grass placed in one corner, they enjoyed it exceedingly. They would sport together, attacking one another with their mandibles, and rolling over in the water in the midst of their gambols; and afterwards, when tired, get on to the turf, where they would lie combing themselves, until the fur was quite smooth and shining. It was most ludicrous to observe these uncouth-looking little creatures, running about, overturning and seizing one another with their mandibles, and then, in the midst of their fun and frolic, coolly inclining to one side and scratching themselves in the gentlest manner imaginable. After the cleaning operation was concluded, they would perambulate the room for a short time, and then seek repose. They seldom remained longer than ten or fifteen minutes in the water at a time. As they were not confined during the night, I sometimes heard them growling; they seemed as if they were fighting or playing, and as if the saucer containing their food had been upset in the scuffle; but, on the following morning, they were quietly rolled up, fast asleep, side by side, in the temporary nest I had formed for them.... One evening, when both were running about, the female uttered a squeaking noise, as if calling to her companion, which was in some part of the room behind the furniture, and was invisible; he immediately answered her in a similar note; and marking the direction from which the answer to her signal came, she ran at once to the place where he had secreted himself.
“It was very ludicrous to see the uncouth little creatures open their mandible-like lips and yawn, stretching out the fore-paws and extending the webs of the fore-feet to their utmost expansion. Although this was natural, yet, not being in the habit of seeing a duck yawn, it had the semblance of being perfectly ridiculous. It often surprised me how they contrived to reach the summit of a book-case, or any other elevated piece of furniture. This was at last discovered to be effected by the animal supporting its back against the wall, placing its feet against the book-case, and thus, by means of the strong cutaneous muscles of the back and the claws of the feet, contriving to reach the top very expeditiously. They often performed this mode of climbing, so that I had frequent opportunities of witnessing the manner in which it was done. The food I gave them was bread soaked in water, chopped egg, and meat, minced very small. Although at first I presented them with milk, they did not seem to prefer it to water.
“Some time after my arrival at Sydney, to my great regret, the little creatures became meagre, and their coats lost the sleek and beautiful appearance which had before called forth so much admiration; they ate little; yet they ran about the room as before, and appeared lively. But these external symptoms argued strongly against their being in a state of health. When wet, their fur became matted, never appearing to dry so readily as before; and the mandibles, and indeed every part of the animal, indicated anything but a satisfactory condition. How different was their appearance now, from the time when I removed them from the burrow! then their plump and sleek appearance roused even the apathetic blacks; now the poor creatures could only excite commiseration. The young female died on the 29th of January, and the male on the 2nd of February, having been kept alive only during the space of nearly five weeks; and thus my expectations of conveying them to Europe in a living state were frustrated, and the ladies of England lost an opportunity of beholding these really ‘darling little ducks’ of quadrupeds.”
The nest is composed of willow “swishes,” willow rootlets, and flag of reeds.
(About one-fourth natural size)
Plate 33]
From my experience with platypus in captivity, I think the so-called engaging antics of Bennett’s captives were really the desperate struggles of slowly starving nestlings, while the food supplied and general treatment were quite the reverse of their requirements.
Note that both upper and lower lips in this undeveloped state are adapted for sucking.
Plate 33]
I settled at Manilla, on the Namoi River, in northern New South Wales, in 1901, and soon established a small zoological garden, in which I kept a variety of marsupials and birds. While engaged in getting water-weeds for my wild ducks, I met my first platypus, and confess to having fallen in love at first sight. From this first meeting, the idea of establishing a platypus amongst my pets never left my mind. I wrote to the zoological authorities in Sydney, asking for advice how to proceed with my plan, but received the discouraging reply that the animal would not live in confinement, and that if I felt disposed to experiment for myself, I should give a milk diet. Far from being discouraged, I became the more determined to attempt this apparent impossibility. Local people could give me no precise information as to the food on which the platypus normally subsisted, until one day I learned that one of the creatures had been caught upon a fishing-line baited with a worm. Here was a ray of light on the food-question, and I at once set about devising a suitable vivarium, in which to keep a supply of worms. A kerosene-tin with small perforations in the bottom, filled with alternate layers of grass-roots and earth, and topped off with a layer of grass (which was renewed daily), served admirably. This was hung in a shady place, and kept moist, and the worms throve in it.
The first enclosure used (Plate 34, top figure) consisted of a brick structure, roofed over, and floored with a thick layer of river-earth--to represent the burrow--which was connected by a submerged tunnel with a cemented pond, also fitted with a cover, the top being made of wire-netting. The experiment was begun on 14 January, 1910, with a female which had been trapped in the river. Within a short space of time two more females and two males were added. Here I recorded the interesting fact that, when the males (which were caught together in the same trap) were placed in the tank, they circled round a few times, then entered the submerged tunnel and made their way to the ‘burrow,’ where they were received with growls and muffled snorts by the females, who evidently resented the intrusion. This was the first occasion upon which I had heard an adult platypus utter a vocal sound. To find a sufficient supply of food for five animals--two more specimens were added later--was a difficult problem. I worked six hours daily, with mattock and shrimping-net, and served my captives with a mixed diet of earth-worms, freshwater shrimps, larvae of scarab beetles, and pond-snails, supplemented by a certain amount of water-weed, and fresh water daily. But my utmost endeavours succeeded in producing only about two pounds of animal food a day; and this, apparently, was not enough. One by one the animals died, until there was left only the original female, ‘Biddy,’ with whom the experiment had begun. This powerful animal escaped by tearing her way through the wire-netting covering the tank, after having been in captivity for nine weeks and five days.
So ended the first attempt, but it pointed the way to success. The most important discovery arising out of it was made during the period of Biddy’s sole survivorship, when it was found that she could eat quite comfortably the amount of food that had been thought sufficient for herself and her four companions. It had not previously been suspected that a platypus could eat half its own body-weight of food in the course of a single night. The natural food, and the order of its preference, had also been ascertained--shrimps, earth-worms, and insect larvae, in that order; tadpoles in default of something better; molluscs and water-weeds only very sparingly, even when the creature was hungry. River fish she would not touch, even though shrimp-size and served alive.
Consideration was now given to the question of improving the enclosure. In the first primitive structure the water was contained in a cemented tank. Food had to be given alive in this tank; as the animal invariably defaecates in the water, it rapidly became foul, and had to be changed each morning. Running water being out of the question where the sole supply consisted of rain-water caught in tanks, some better system of pond had to be devised, which would allow of easier emptying and renewal.
The sleeping-compartment had not been opened during the time of the first experiment. It was, as has been said, built with brick walls and a cemented floor, and was filled with river-earth. When the cover was removed, the interior was found to be in a foul and dank condition, the water brought in by the animals on their bodies having converted it into a bog, with a few mounds of damp soil projecting above the general level. Obviously such a retreat could not have been healthy for the captives. The next fault lay in the use of brick and cement, which caused sores upon their knuckles. Finally it was noted that, as long as the animals were able to see anything of their terrestrial surroundings, they spent all their time trying to escape; and it was resolved that wire-netting should be used only as top cover, in such a way that clear sky alone could be seen through it.
Coupled with a wish to improve the enclosure in these different directions, I next considered the question of portability. The outcome of my deliberations was the designing and construction of a portable artificial habitat, which I called a Platypusary, and which Dr. W. T. Hornaday, Director of the New York Zoological Park, subsequently described as “the most amazing contraption that we have ever seen in use in animal transportation.”
The nature of the invention may be gathered from Plates 34 and 35. It was planned, as in the first attempt, in two distinct parts--a tank to represent a river, and a labyrinth to simulate the burrow in the bank, the two being connected by a sheet-metal tunnel. The general arrangement is best seen from above (the view shown in Plate 35). The tank was to the left, the labyrinth to the right. Taking the latter first, it will be seen that an animal coming from the tank through the tunnel would enter the small chamber at the upper left-hand corner. Here it would rid itself of some of the water from its body, and possibly rest awhile and chew some of the food in peace and comfort. It would then pass on through a series of holes cut in the partitions, first passing through an aperture in the short longitudinal partition, then through one at the right-hand end of the upper transverse partition, and so on, the holes in the remaining partitions being alternately left and right, until it reached the sleeping-chamber shown at the lower right-hand corner. It will be seen that, altogether, it must pass through six of these holes, each of which was guarded by a soft rubber gasket with an aperture smaller than the body of the animal, so that the wet fur was effectively ‘squeezed’ and the animal arrived at its sleeping-quarters with fur almost dry. Not only was this essential to its comfort, but it was necessary also to prevent, to some extent, the observation glass above the burrows from becoming so moist as to obscure the view when exhibiting the sleeping occupants.
A second feature of the labyrinth was that the apertures through the transverse partitions were placed progressively higher up, and the floors of the runways sloped up accordingly, so that the platypus had to climb a kind of zig-zag ramp on its way to bed. This was a simulation of the natural rising course of its burrow in a river-bank; and, though some critics suggested that it was over-elaborate, my experience of the platypus in captivity is that no precaution can be too elaborate (especially during a test case) for the successful treatment of a creature so delicately organized.
Plate 34]
The labyrinth was further improved by using curved mouldings in all the corners, so that no right angles might remain, and by fastening sheet rubber on the floors of the runways, to minimize injury to the animal’s knuckles and feet. It was covered with a wooden lid, beneath which was a framed sheet of plate-glass, permitting inspection of the burrow.
The tank portion was of much larger size, and was constructed of galvanized iron, set in a wooden crate, the sides of which were carried up to such a height that animals in the water could see nothing but the sky above them. To the right is the exercising and feeding-tank. This, at the bottom, contained sand and shell-grit. Of course, mud would have been preferable, but it would have tended to discolour the water, and, without a continuous supply of fresh water, the animal would have died. The metal drum in the middle, the flat top of which projects three inches above the water, forms an island upon which the captive may rest, but its special purpose is to give the animal an endless swim. To the left is a smaller tank in which aquatic plants are grown in mud. The space at each side of it was filled with clean sand to form two banks, on which the animal could exercise by digging, or take a rest, at will. A continuous stream of water could be run from the main tank into the mud tank, which was kept at a constant though lower level (to prevent pollution of the feeding-tank) by means of an overflow pipe. The platypus is intolerant of water which is not clean--hence the necessity for clean sand and flowing water, where these can be provided. The doors covering the tank were made with wooden frames, upon which wire-netting was stretched, so that the water was open to the sky, day and night, in all weathers.
Over-alls are occasionally very necessary during the trials of a Platypus providore.
Plate 34]
By means of this enclosure I succeeded during 1910 in achieving my aim of placing the platypus on exhibition in the Sydney Zoological Gardens, then at Moore Park. One animal lived for three months in good condition; but on the approach of winter it became difficult to secure for it a supply of natural food, and it was released in one of the ponds of the Centennial Park. Discouraged by what I considered to be a lack of interest in my endeavours, I took no further measures for some time, and my contraption was scrapped.
In 1913, however, I interviewed Ellis Stanley Joseph, a well-known animal-dealer, who became keenly interested in a scheme for taking a live platypus to America. I at once recovered my discarded artificial burrows, etc., from the scrap-heap, and set them up again for Joseph at his Moore Park vivarium. Here I instructed him in the art of feeding and caring generally for the appetites and other requirements of captive platypus. Owing to his occasional absence, however, matters proceeded but slowly. Later, at Granville, two more of these enclosures were built for Joseph under my supervision. Subsequently a number of animals were obtained and kept for various periods. Joseph, in the New York Zoological Society Bulletin for September 1922, gives the following account of his experiences:--
“My first attempt to bring one to New York was in 1916, and I must say that it was not a fair trial, either to the animal or to myself. Mr. Burrell had secured one for me from the Namoi River, and it arrived in Sydney one day before I sailed on the S.S. Niagara, one of the Canadian-Australian liners. I kept it for exactly one week, and then unfortunately it died.
“On my return to Australia from the United States in February, 1917, I was unable to give the matter much attention, as I was too busy getting a collection together, and so deferred action until I had made another trip to America. When I returned to Sydney on October 27, 1917, I put all my energy into the keeping of the platypus alive in captivity. I secured two, and kept one for 96 days and the other for 125 days. Then I got several others from time to time and kept them for varying periods, from one week to over one year. On August 27, 1918, I secured one and kept him until April 26, 1919, on which date the animal died. I honestly believe that the animal would have lived longer had it been possible for me to give it my personal attention, because for three weeks before its death I saw very little of it. I was ill with the pneumonic influenza--raging at the time all over the world--and had to depend on others to see to his keeping.
“As soon as I was up, I secured several more specimens, and on one occasion I had three females and one male quartered together. To my sorrow I found that the male fought them and just worried them, and in one instance there were several scratches on the bill of the female which I am sure could not have been made except by the claws, or possibly by the spur, of the male. The females ultimately were afraid to go in their sleeping-box; for I put them in myself on several occasions in the course of a day, and they would struggle hard to get out. It seems to me that it was actual fear of the male.
“On August 22, 1919, I secured a fine male measuring 23½ inches, and during a period of nine months he was responsible for the death of no less than two females and one male. In August, 1920, I approached the authorities in Sydney for a permit to take this specimen to the New York Zoological Society, but was refused. Keenly disappointed, I left Sydney on September 3, 1920, on the S.S. Bellbuckle, bound for New York, without my platypus. On October 15, 1920, while I was still on the sea, the animal escaped from his tank because the lid had not been properly secured. I certainly would have liked to have kept him till he died, as it would have been very interesting to learn how long he could have lived in captivity.
“When I decided to go to the United States again, I felt that I should bring a platypus along, as I knew the great desire of the Zoological Park authorities in New York to obtain a specimen. At first things looked black for securing a permit from the Federal Government for the exportation.”
Here follows an account of his difficulties, which were finally solved through the good offices of the Federal member for Parramatta, Mr. E. K. Bowden, and Sir Baldwin Spencer. Joseph continues:--
“Having secured the Federal permits, I made arrangements to get the animals. I secured six, five of which were males. Unfortunately the female died sixteen days after I received it.
“I left Sydney with five male platypus on May 12, 1922, on the U.S.S. West Henshaw (Shipping Board Steamer), bound for San Francisco via Newcastle, N.S.W., and Honolulu. On May 19, while we were still in Newcastle, one of the medium-sized ones died. The remaining four were absolutely in the best of health as far as I could make out, because they were eating well; that being about the only sign by which I could determine their condition. We left Newcastle on May 20, and for six days it blew a regular gale. The seas were mountain-high, and unfortunately the ship was more under water than over it, and certainly that did the animals no good. On the night of May 25 a huge sea came aboard, and rushing along the deck smashed into one of the platypus-tanks, bent the metal neck and jammed it so effectively that the animals were imprisoned in the sleeping-quarters for that night. From then on that pair ate less and less, but they lived till the 5th and 6th of June respectively, on which dates they died in a comparatively poor condition.
“Of the remaining two, one was fine and healthy but the second was just about medium, and I am sorry to state that on the 14th of June while the ship was at Honolulu, it also died. My feelings can readily be imagined. I would rather have lost all of my shipment of a very valuable cargo of birds, animals, and reptiles. This was not because the platypus was worth more (far from it), but because it was my ambition to bring one alive to America. I am glad to say that good fortune eventually favoured me, since on June 30, 1922, I landed in San Francisco with the first living platypus ever brought to America.
“I had to stay five days in San Francisco in order to procure a new supply of fresh worms, and this I can assure the reader was not an easy matter. From Honolulu I had sent two wireless messages to different parties to try and get some for me, but to my great disappointment I found on my arrival in San Francisco that neither of them had been able to get any. After a lot of work, worry, and expense I managed to secure sufficient for the trip across the continent to New York. That trip was the hardest part of the long journey, for the shaking and the jolting of the train was a very great strain on the animal. When two days out from San Francisco, the platypus began to get hungry, for he used to get out whenever the train stopped and look for food, and so I was up day and night, and whenever the train stopped for any length of time I put water in the tank and also food, and that gave the animal a chance to eat a little.
“I was glad when we arrived in Chicago, where I rested for two nights, and that gave the animal a fresh start. I started on the last lap on Tuesday night and on Thursday, July 14, arrived in New York, both man and animal completely tired out.”
What Dr. Hornaday thought about the matter finds expression in his article in the same number of the Society’s Bulletin, some paragraphs from which are here quoted:--
“The spell of ten thousand years has been broken.
“The most wonderful of all living mammals has been carried alive from the insular confines of its far-too-distant native land, and introduced abroad. Through a combination of favoring circumstances it has been the good fortune of New York to give hospitality and appreciation to the first platypus that ever left Australia and landed alive on a foreign shore....
“No matter what evil fate may hereafter overtake the platypus species, nothing can rob us of the fact that New York has looked upon a living Ornithorhynchus paradoxus, and found it mighty interesting. It cost us $1400, but it was worth it.
“When our first platypus arrived at the Zoological Park on July 14, 1922, after a journey (of 10,000 miles) that had consumed the lives of four companions, we felt reasonably certain that when fairly out from under the excitement of foreign travel the queer little beast would die in a very few days. We hoped that it might live for one week, but we resigned ourselves to the impending loss. It lived at the Park forty-nine days, and was on exhibition daily for one hour.
“At the outset we observed that the platypus is an animal of nervous temperament, and easily excited by too many observing eyes. It was evident that one hour of daily exhibition was all that the little animal could endure, and subsequent observations proved the correctness of this estimate. We are sure that a longer exhibition period would speedily have proven fatal to the distinguished stranger....
“The exhibition of the platypus was accomplished by removing the wire-netting tops of the contraption, admitting visitors in a line, in single file, and permitting them to pass entirely around the man-made habitat of the animal. As the stream of visitors marched and countermarched, the platypus briskly swam and emerged, scrambled, and climbed up the wire-netting walls of its main salon in efforts to get out....
“The two features of a living platypus that make the daily life of its keeper a nightmare and a burden are its food habits and its water habits. In this vale of tears there seem to be just about five kinds of food that it will consider and consume. Named in the order of their acceptability these are: angle worms, very small shrimps, wood-grubs (of the kind most difficult to find!), oysters, and water insects. Of any one of the three leading kinds the animal soon tires, and requires a change. The cost of digging angleworms, even if it is possible to preserve them, is quite serious; and wood-grubs cost us ten cents each, with few purveyors.
“While it lived, our little platypus--about half grown--cost us between $4 and $5 per day to feed. Even in summer the food problem kept us moving, but we looked forward with apprehension to the horrors of winter.
“One trouble lies in the voracious appetite of a healthy platypus.... One day’s ration of our specimen was as follows:
“August 6; ½ lb. earthworms, 40 shrimps, and 40 grubs.
“One week’s food supply for the platypus consisted of the following:
“Each day, between three and four o’clock, the animal was given one-quarter of a pound of earthworms. On Tuesday nights and Friday nights one-quarter of a pound of shrimps and one-half pound of grubs were given. On the evenings of Monday, Wednesday, Thursday, Saturday and Sunday he received one-half pound of shrimps each day....
“Really, it seems incredible that an animal so small could chamber a food supply so large. I know of nothing equal to it among other mammals.”
During an experiment which I made in September 1910 to test the appetite of an adult platypus, I found that in the space of 72 hours it ate 70 ten-inch red worms (resembling an ordinary lead pencil in both length and girth), 10 ground-grubs, and 600 salt-water prawns (of the size usually bought in packets as bait). The record for one night was:--red worms, 30; prawns, 300.
Hornaday remarks on the fact that the creature showed itself, in captivity, to be of nervous and active temperament, a fact that must strike any observer who has had to do with it. That is why I would not allow my captives to observe any surroundings other than those within their enclosure. Because of this, I claim to have practically solved the problem of keeping platypus in captivity. By comparison the echidna is a dull animal, unless taken young and trained systematically for exhibition purposes. It does not pretend to be a gourmet, and thrives quite well on raw egg-and-milk, a diet utterly different from that to which it is accustomed when at large. True, it uses its very remarkable bodily strength to explore all possible ways of escape; but, once having found the task hopeless, it becomes resigned. It does seem to show an intermediate mentality, as much reptilian as mammalian, despite the fact that its brain has a convoluted surface, while that of the platypus is smooth. The natural food of the platypus resembles that of a bird, rather than that of a mammal. It demands a varied diet, and will starve to death in the presence of food which no longer pleases it. It must have clean, clear water, and sweet, dry sleeping-quarters. It is impatient of observation, and resents being handled. It is easily killed by too much excitement. These things bear witness to an organization of a higher grade than that of many of the lower Didelphia and Monodelphia, despite its Ornithodelphian plan.
This being so, is it possible to exhibit the animal satisfactorily in a Zoological Garden? I believe so, provided that the lessons to be learned from experience up to the present are fully realized. Young animals (not necessarily nestlings) which have never tasted the true delights of wild life, will pretty certainly take more kindly to confinement than adults. The questions of food and transport may be looked upon as solved. The method of exhibition, however, could be greatly improved. It is remarkable that the New York animal should have lived for so long as seven weeks, when for an hour each day it was surrounded by a continuous stream of curious visitors, and underwent constant handling by the keeper. Think of it!
What I suggest, apart from improved burrows, is a raised tank, with a plate-glass front. The eyes of the platypus are kept closed under water, and it would never see people standing below the water-level of its tank. It would thus be saved the greater part of the fret and excitement of the exhibition period. The animal would soon become accustomed to a regular feeding-time in the afternoon, and would not need the intervention of a keeper to turn it out into the exhibition tank. Given these conditions, there seems to be no reason whatever why the platypus should not live in Zoological Gardens at least so long on the average as other animals which are commonly kept in such places. Unfortunately, many of these do not survive so long as one might expect.
(This negative is owned by the New York Zoological Society)
Plate 35]
BIBLIOGRAPHY
ALLPORT, MORTON. Notes on the Platypus (Ornithorhynchus anatinus): Report of the Royal Society of Tasmania, 1878, pp. 30-31.
Annales des Sciences Naturelles, ii, 1824, pp. 74-77--Quelques Observations nouvelles sur l’Ornithorhynque; x, 1827, pp. 193-195--Sur les Habitudes de l’Ornithorhynque. See also references to articles by Lesson, 1825, and Etienne Geoffroy, 1826 and 1829.
Antologia di Firenze, xxiv, p. 305, quoted in Annales des Sciences Naturelles, x, 1827, p. 194.
ARMIT, WM. E. Notes on the Presence of Tachyglossus and Ornithorhynchus in Northern and North-eastern Queensland: Journal of the Linnean Society of London (Zoology), xiv, 1878, pp. 411-413.
AXFORD, T. Notice regarding the Ornithorhynchus: Edinburgh New Philosophical Journal, vi, 1829, pp. 399-400; id. Oken, Isis, viii, 1832, col. 806.
BADEN-POWELL, G. S. New Homes for the Old Country, 1872, pp. 296-314, 3 figures.
BENNETT, GEORGE. Gatherings of a Naturalist in Australasia, 1860, pp. 94-146, 1 plate; Notes on the Natural History and Habits of the Ornithorhynchus paradoxus Blum.: Transactions of the Zoological Society of London, i, 1835, pp. 229-258, plate 34.
BENNETT, GEORGE FREDERICK. Notes on Ornithorhynchus paradoxus: Proceedings of the Zoological Society of London, 1877, pp. 161-166, 2 figures.
BEWICK, THOMAS. General History of Quadrupeds, 7th edition, 1820, p. 528, 1 figure.
BLAINVILLE, HENRI D. DE. Dissertation sur la place que la famille des Ornithorhynques et des Echidnés doit occuper dans les séries naturelles, Paris, 1812; Sur l’organe appelé Ergot dans l’Ornithorhynque: Bulletin, Société Philomatique, Paris, 1817, pp. 82-84: Mémoire sur la nature du produit femelle de la génération dans l’Ornithorhynque: Nouvelles Annales du Muséum d’Histoire Naturelle, ii, 1833, pp. 369-416, plate xii.
BLUMENBACH, JOHANN F. Sur un nouveau genre de quadrupède édenté, nommé Ornithorhynchus paradoxus: Bulletin, Société Philomatique, Paris, ii, 1800, p. 113; De Ornithorhynchi paradoxi fabrica observationes quâedam anatomicæ: Voigt’s Magazin, ii, 1800, pp. 284-291; also article in iii, 1801.
BRODERIP, W. J. Ornithorhynchus: Penny Cyclopaedia, xvii, 1840, pp. 28-36, 16 figures.
CALDWELL, W. H. The Embryology of Monotremata and Marsupialia, Part I: Philosophical Transactions of the Royal Society, Series B, vol. 179, 1887, pp. 463-486, 3 plates.
CHENU, JEAN C. Monotremes: Encyclopédie d’Histoire Naturelle--Pachydermes, etc., 1879, pp. 349-358, 1 plate, 2 figures.
COLLINS, DAVID. An Account of the English Colony in New South Wales, ii, 1802, pp. 321-328, or, second edition, 1804, pp. 425-428, 1 figure.
CROWTHER, A. B. On some Points of Interest connected with the Platypus: Papers and Proceedings of the Royal Society of Tasmania, 1879, pp. 96-99.
CUVIER, G. Recherches sur les Ossemens Fossiles, v, 3rd edition, Paris, 1825, pp. 143-158.
DARWIN, CHARLES. A Naturalist’s Voyage ... Round the World in H.M.S. Beagle, 1884, pp. 441-2, or later editions.
FLEMING, JOHN. The Philosophy of Zoology, ii, 1822, pp. 213-215.
FLETCHER, J. J. On the Rise and Early Progress of Our Knowledge of the Australian Fauna: Report of the 8th Meeting of the Australasian Association for the Advancement of Science, Melbourne, 1900, pp. 69-104.
GEOFFROY SAINT-HILAIRE, ETIENNE. Sur l’Identité des deux espèces nominales d’Ornithorhynque: Annales des Sciences Naturelles, ix, 1826, pp. 451-460; Considérations sur les œufs d’Ornithorhynque, formant de nouveaux documens pour la question de la classification des Monotrêmes: ibid, xviii, 1829, pp. 157-164.
GEOFFROY SAINT-HILAIRE, ISIDORE. Monotrêmes: Dictionnaire Classique d’Histoire Naturelle, xi, 1827, pp. 102-107; Ornithorhynque: ibid, xii, 1827, pp. 393-411.
GOULD, JOHN. The Mammals of Australia, i, 1863, pp. 1-4, plate i.
HILL, PATRICK. [Observations on Ornithorhynchus]: Transactions of the Linnean Society of London, xiii, 1822, pp. 621-624.
HOME, SIR E. A Description of the Anatomy of the Ornithorhynchus paradoxus: Philosophical Transactions of the Royal Society of London, 1802, pp. 67-84, 3 plates.
HORNADAY, W. T. New York’s Duck-Billed Platypus: New York Zoological Society Bulletin, xxv, 1922, pp. 99-104, 15 illustrations; The Minds and Manners of Wild Animals, 1922, p. 9.
ILLIGER, C. Prodromus Systematis Mammalium et Avium, Berlin, 1811, pp. 114-5.
JAMISON, SIR JOHN. [Observations on Ornithorhynchus]: Transactions of the Linnean Society of London, xii, 1818, pp. 584-5.
JONES, F. WOOD. The Mammals of South Australia, Part I, containing the Monotrêmes, 1923.
JOSEPH, ELLIS S. My Experience with the Platypus in Captivity: New York Zoological Society Bulletin, xxv, 1922, pp. 105-111.
KERSHAW, J. A. Notes on the Breeding Habits and Young of the Platypus, Ornithorhynchus anatinus, Shaw: Victorian Naturalist, xxix, 1912, pp. 102-106, 2 plates.
KNOX, ROBERT. Observations on the Anatomy of the Duckbilled Animal of New South Wales, the Ornithorhynchus paradoxus of Naturalists: Memoirs of the Wernerian Natural History Society, v, 1823-4, pp. 26-41, plate i.
KREFFT, G. The Mammals of Australia, plate xv and explanation, 1871; Catalogue of Mammalia in the Collection of the Australian Museum, 1864, p. 56.
LEARMONTH, NOEL. [Natural history notes]. Australasian, Melbourne, 30 June, 1923, p. 1317.
LESSON, R. P. Observations générales d’Histoire Naturelle, faites pendant un voyage dans les Montagnes-Bleues de la Nouvelles-Galles du Sud: Annales des Sciences Naturelles (i), vi, 1825, pp. 241-266 [Ornythorhynchus, p. 249]; Voyage autour du Monde Enterpris par Ordre du Gouvernement sur la Corvette la Coquille, ii, Paris, 139, p. 302 and plate.
LUCAS, A. H. S., and W. H. DUDLEY LE SOUEF. The Animals of Australia, 1909, pp. 143-146, 4 figures.
MACKENZIE, W. C., and W. J. OWEN. The Glandular System in Monotremes and Marsupials, 1919, pp. 11-35, 12 figures.
MARTIN, C. J., and F. TIDSWELL. Observations on the Femoral Gland of Ornithorhynchus and its Secretion; together with an experimental enquiry concerning its supposed toxic action: Proceedings of the Linnean Society of New South Wales, (2), ix, 1894, pp. 471-500, 4 plates.
MAULE, LAUDERDALE. [Habits and Economy of the Ornithorhynchus]: Proceedings of the Zoological Society of London, 1832, pp. 145-6; id., Philosophical Transactions of the Royal Society, 1832, pp. 533-4.
MECKEL, J. F. Ueber den Stachel und das Giftorgan des Ornithorhynchus: Deutsches Archiv für die Physiologie, viii, 1823, pp. 592-595; Ornithorhynchi paradoxi descriptio anatomica, Lipsiae, 1826.
OWEN, RICHARD. On the Mammary Glands of the Ornithorhynchus paradoxus: Philosophical Transactions of the Royal Society of London, 1832, pp. 517-534; On the Ova of Ornithorhynchus paradoxus: Philosophical Transactions of the Royal Society of London, 1834, pp. 555-566, 1 plate; On the Young of the Ornithorhynchus paradoxus Blum.: Proceedings of the Zoological Society of London, 1834, pp. 43-44; id., Transactions of the Zoological Society of London, i, 1835, pp. 221-228, 2 plates; Monotremata: Todd’s Cyclopaedia of Anatomy and Physiology, iii, 1839-47, pp. 366-407, 6 figures; Remarks on the ‘Observations sur l’Ornithorhynque’ par M. Jules Verreaux: Annals and Magazine of Natural History. (2), ii, 1848, pp 317-322; On the Marsupial Pouches. Mammary Glands, and Mammary Foetus in the Echidna hystrix: Philosophical Transactions of the Royal Society of London, clv, 1865, pp. 671-686, 3 plates and 1 figure.
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WILSON, J. T., and J. P. HILL. Observations on the Development of Ornithorhynchus: Philosophical Transactions of the Royal Society of London, Series B, vol. 199, 1908, pp. 31-168, 17 plates, 15 text-figures.
FOOTNOTES:
In this book the words muzzle, snout, bill, and beak are used synonymously, when the upper and lower mandibles combined are referred to. The pliable tissue extending beyond the jawbones is always referred to as the lips.
That is, segmenting eggs from the uterus.
For details, see page 208.
The spurs are not for laying hold of the body, but, if at all, of the hind legs, ankles, or feet, of the female.
With this statement I agree. See page 96.
I have never succeeded in passing a fine horse-hair through, even after extracting the inner tube (see Plate 14).
The Australian Philosophical Society.
I have found both males and females in this state. The denudation is the result of moulting, and has nothing to do with the use of the spur.
Platypus are frequently seen during daylight, and can easily be taken by hand beneath water, even though it may be necessary to jump into the water to do so.
I find that the scent-gland enlarges and diminishes in unison with the other glands described here. This strengthens the statement that the poison gland is subject to seasonal variations.
See page 157.
With the theory that the discharge is for the purpose of dilating the socket I entirely disagree.
I have never known an entrance to be blocked up, and I have examined over 150 breeding-burrows, all of which were glaringly open to view.
See description of breeding habits in chapter xi.
Since this was written Mr. H. R. Carne reports the capture of a platypus in George’s River at Glenfield.
In a few species of viviparous lizards, e.g., Tiliqua, a primitive placental apparatus is found.
Trappers are not likely to report otherwise.
During the breeding-season, to which my experience is limited, the smell is only occasionally noticeable on living specimens; but it is always found in the process of skinning.
INDEX
Activity, 164
Adolescence, 188
Affection of pairs, 165
Air in burrows, 137
Albino, 48
Allport, Morton, 152, 153, 154
America, living platypus landed, 214
Amphibia, 26, 28
Anteater. See ECHIDNA
Aquatic adaptations, 9
Armit, W. E., 139
Aves, 28
Axford, Thomas, 80, 90
Baden-Powell, G. S., 90
Banks, Sir Joseph, 1, 5, 6, 20, 22, 23, 26
Barrington’s History of New South Wales, 25
Beak. See MUZZLE
Beaver, comparison with, 54, 112, 132
Bennett, George, 4, 5, 32, 39, 54, 56, 65, 66, 67, 68, 81, 98, 100, 106, 111, 112, 125, 147, 154, 155, 160, 179, 189, 191, 200, 204
Bennett, G. F., 4, 113, 129, 179
Bill. See MUZZLE
Birds, organs of reproduction, 28
Birds, resemblance to, 28
Blainville, Henri D. de, 3, 30, 32, 33, 77
Blood, 56
Blumenbach, J. F., 1, 6, 7, 22, 26, 33
Body. See TRUNK
Boyd, G., 140
Brain, 15, 63, 217
Breathing, 124
Breeding habits, 167
Breeding-season, 171
Brisbane, Sir Thomas, 79
Broderip, W. J., 5, 39
Bruta, 26
Buffon, Comte de, 26
Burrow, blocking with earth, 116, 117, 122, 129
Burrow, descriptions of, 105
Burrow, entrance, 107, 111, 114, 115, 117, 124, 134, 135
Burrow, length of, 106, 108, 110, 113, 114, 116, 117, 124, 127, 134, 135
Burrow, smell of, 163
Burrow, ventilation of, 137
Burrowing, method of, 112, 120
Caldwell. W. H., 3, 5, 45, 113, 119, 177, 182
Captivity, 202
Carpenter, W. B., 41
Caruncle, 183, 185
Casy, Dr., 111
Characters described, 46
Cheek-pouches, 13, 73, 150, 154
Chenu, J. C., 6, 7, 203
Chisholm, A. H., 139
Claws, 12, 52, 120, 122
Cleanliness, 161
Cloaca, 2, 28, 29, 58
Cold, effect on distribution, 146
Collins, David, description of platypus, 17
Colour, 47, 187
Contorting ability, 61
Cookoogong (aboriginal), 78, 105, 106
Copulation, 61, 76, 91, 99, 104, 168
Crowther, A. B., 44, 151, 154, 155, 156
Crural gland, 76, 167
Crustacea as food, 155
Cuvier, G., 30, 32, 33
Darwin, C., 28, 151
Daytime habits, 149
Dermipus, 7, 22
Didelphia, 2
Digging, 12
Digits, 12, 52
Distribution, 139
Diving, 147, 150, 152, 156, 157
Dobson, Mr., 17, 20
Drowning, 137, 150, 159
“Duck-bill” first used, 23
Duck-like bill. See MUZZLE
Ears, 10, 12, 50, 124
Echidna, 6, 15, 27, 29, 30, 45, 57, 58, 59, 99, 133, 149, 161, 187
Economic value of platypus, 199
Edentata, 26
Edwards, Milne, 35
Eggs, controversy re, 2, 29, 32, 33
Eggs, description of, 173
Eggs found by Caldwell, 3, 45; Kershaw, 117; Semon, 119
Eggs, laid, 179
Egg-laying, 175
Egg-tooth, 183, 185
Enemies, 197
Evolution, pre-Darwinian ideas, 28
External features, 9
Eyes, 10, 46, 50, 65, 124
Facial furrow, 10
Faeces, 188
Feeding habits, 10, 149, 151, 152, 153
Feet (hind), 12
Female affection for offspring, 165
Female, excavation of nesting-burrow, 125, 128, 163
Fish-trap, effect of, 198
Flap at base of muzzle, 14, 49, 68
Fleming, J., 34
Flesh, 200
Fletcher, J. J., 5
Floating, 155, 158
Floods, effect on distribution, 143, 145
Food, 13, 14, 73, 154, 208, 216
Food supply, effect on distribution, 145
Fore-paws, 12, 52, 120, 122, 151, 156, 157, 158, 160
French scientific expeditions, 25
Fur. See HAIR
Furrier’s point of view, 199
Generation; ovi-viviparous, 27, 33, 38, 40, 41
Geoffroy St.-Hilaire, Etienne, 3, 4, 29, 30, 32, 34, 35, 36, 38, 184
Geoffroy St.-Hilaire, Isidore, 30, 31, 79
Gould, John, 112, 195
Graafian follicle, 34
Grant, Robert E., 36
Growling. See VOICE
Haacke, W., 45
Habitat, first described, 24
Habitats, 139
Habits, 5, 147
Hair, 9, 47, 49, 155
Hatching of eggs, 182
Head, 46
Hearing, 67, 72, 150
Heat, effect on distribution, 146
Hibernation, 148, 164
Hill, Patrick, 3, 4, 34, 35, 78, 105
Hill, William, 144
Hind feet, 53, 122, 123, 160
Holmes, Mr., 37
Home, Sir Everard, 1, 2, 3, 6, 22, 23, 25, 26, 27, 28, 29, 33, 36, 37, 76, 78, 97, 98, 100, 170
Hornaday, W. T., 70, 209, 215
Hoy, C. M., 74, 93, 134, 157, 165
Hunter, Governor, 1, 17, 20, 21, 24
Illiger, C., 30
Incubation, 181
Insect larvae as food, 155
Ixodes ornithorhynchi, 162
Jamison, Sir John, 2, 3, 34, 35, 77, 79, 91, 103, 105, 201
Jawbones, 10
Jaws, 13
Jones, F. Wood, 52, 54, 55, 63, 65, 102, 132, 133, 154
Joseph, E. S., 211
Kershaw, J. A., 4, 114, 125, 129, 136, 141, 172, 179, 181, 184
King, Governor, 22, 23, 26
Knox, R., 1, 3, 78, 79, 91, 98
Krefft, G., 81, 141
Lalor, Dr., 85
Lamarck, J. B., 30
Latreille, P. A., 30
Leadbeater, Mr., 36, 37
Learmonth, N., 141
Lendenfeld, R. von, 57
Lesson, P., 3, 36, 106
Life history, 5, 167
Limbs, 12, 52
Lips, 9, 10, 68, 120, 123
Longevity, 192
Longman, H. A., 139, 140
Lord, C., 141
Lucas and Le Souef, 114, 193
McCoy, Professor F., 44
Mackenzie, W. C., and W. J. Owen, 99, 163
Maclean, J., 171
Male, pugnacity of, 92, 93, 95, 96, 157, 165, 166
Mammalia, 27, 28, 30, 31
Mammalian relationship, 2, 32
Mammals, early forms of, 7
Mammary glands, 4, 29, 30, 31, 184, 187
Man, 7, 8
Mandibles, 9, 16, 18, 68
Marsupials, 29, 30
Martin, C. J., 57
Martin, C. J., and F. Tidswell, 4, 84, 91, 98, 103
Mastication, 13
Maturity, 191
Maule, Lauderdale, 4, 32, 39, 106, 179, 203
Measurements, 55
Meckel, J. F., 3, 29, 30, 31, 32, 34, 79
Mesozoic mammals, 7, 8
Miklouho-Maklay, N. N., 57
Milk, 29, 32, 190
Molluscs as food, 154
Monodelphia, 2, 57, 63
Monotremata, 8, 29
Mouth, 12
Mud as food, 10, 73, 155
Mueller, Dr. F. von, 42
Murray cod, 142
Muzzle, 9, 10, 21, 27, 46, 49, 68
Myrmecophaga aculeata, 27
Neck, 52
Nervous organization, 63
Nervous temperament, 165
Nest, 108, 111, 112, 113, 116, 117, 127, 128, 131, 134, 136, 181, 188
Nesting-burrow, 105
Nesting habits, 4
Nestlings, 110
Newcastle Literary and Philosophical Society, 21
New South Wales habitats, 140
New York Zoological Gardens, exhibition of platypus, 215
Nicholson, Dr. John, letter to Sir R. Owen, 41
Nicols, A., 85, 90
Nipples, absence of, 2, 27, 30
Nostrils, 49
Nursing habits, 183
Nursing period, 151, 186
Odour of burrows, 163
Oken, L., 33
Oligorus macquariensis (Murray cod), 142
Opossum, 27
Ornithodelphia, 2, 30
Ornithorhynchus, generic characters described by Home, 27
Ornithorhynchus anatinus Shaw, 1
Ornithorhynchus hystrix, 27
Ornithorhynchus paradoxus, 1, 6, 7, 22
Ovaries of birds, reptiles and mammals compared, 28-9
Oviducts, 2, 28, 29
Ovi-viviparous mode of generation, 27, 33, 38, 40, 41
Ovum. See EGGS
Owen, Sir R., 3, 5, 38, 39, 41, 44, 98, 99, 183
Panniculus carnosus, 31, 164
Parasites, 62, 162
Parker, W. K., 5, 8, 75
Parmeter, Dr. T., 79
Penis, 27
Placenta, 29
Platypus anatinus, 1, 6, 7, 17, 20
Platypus described by David Collins, 16; by George Shaw, 17; by Bewick, 21; by Hunter, 23; by Home, 27
Poison, effects of, 82, 83, 85, 94, 96
Poulton, E. B., 5, 69
Preservation, 193
Protection, 193
Prototheria, 30
Psychological characteristics, 14
“Pugs” and “pug-pits,” 129, 130, 133
Queensland habitats, 139
Rabbits, effect on platypus, 197
Ramsay, J. S. P., 177
Rawley, Mr., 4, 105, 106
Rectum, 27
Reproduction, method of, 3
Reproduction, organs of, 26, 28
Reptantia, 30
Reptiles, organs of reproduction, 28
Reptile relationship, 6, 59, 63
Reptilia, 26
Resting-burrow, 162
Rumby, G. J., letter to Dr. Mueller, 42, 177
Running, 159
Scent-gland, 30, 67, 90, 163, 167
Scott, Mr., 34
Selkirk, H., 24
Semon. R., 57, 66, 67, 99, 100, 114, 119, 145, 148, 151, 153, 155, 158, 160, 191, 195, 201
Senses. See HEARING, SIGHT, SMELL, TASTE, TOUCH; also “SIXTH SENSE”
Sensory perceptions, 63
Septum, 29
Sexes, external differences, 55
Shaw, George, 1, 3, 6, 17, 26, 76
Shell-fish as food, 154
Shrew, 30
Shrimps as food, 154, 155
Sight, 65, 72, 150
Simson, A., 81
“Sixth sense,” 10, 70, 72
Sizes of specimens, 55
Skeleton, 11
Skin, 46, 160, 164, 195
Sleep, 162
Smell of burrows, 163
Smell, sense of, 67, 72
Smith, Geoffrey, 66, 158
Smith, Southwood, 35
Snout. See MUZZLE
Socket (female) in place of spur, 54
Solitary nature, 55, 163
South Australian habitats, 141
Spicer, W. W., 81, 90, 91, 193
Spiny anteater. See ECHIDNA
Spur, 3, 27, 54, 76, 170
Stomach contents, 154
Stranger, C. R., 140
Strength, 59
Stuart, Sir Anderson, 82
Sutherland, Alexander, 57
Swan, E. D., 44
Sweat-glands, 31
Swimming, 9, 66, 151, 156, 157, 158
Tail, 9, 46, 54, 112, 120, 132
Tasmanian habitats, 141
Taste, sense of, 69, 74
Teat, mammalian, 29
Teats, absence of, 27, 30, 31
Teeth, 12, 27
Temperature, 56
Testes, 89, 167
Thomas, Oldfield, 20, 47, 69
Tiedemann, F., 30
Timidity, 147
Toilet habits, 159, 162
Tongue, 12, 27, 69, 155
Toothless mammals, 26
Touch, sense of, 10, 50, 68, 74
Traill, T. S., 3, 77
Trapping, effect of, 197
Trunk, 46, 52
Turtle, green, 61
Type skin, 20
Urine, 27
Uterus, 2, 27, 29
Van der Hoeven, J., 30, 79
Verreaux, J., 6, 32, 41, 68, 81, 91, 111, 112, 130, 168, 190, 203
Victorian habitats, 141
Vitality of young platypus, 137, 138
Voice, 75, 110
Waite, E. R., 139, 141
Walking, 158
Wardlaw, Dr., 57, 58
Water, instinct for finding, 143
“Water-mole” first used, 23
Water-rat, effect on platypus, 197
Weatherhead, Dr., 39
Webbing of feet, 9, 12, 52, 53, 151, 156, 157, 158, 161
White, H. L., 198
Wiedemann, C. R. W., 7, 22
Wilson, J. T., 5, 183
Wilson, J. T., and J. P. Hill, 5, 118, 119, 174, 177, 193
Womb. See UTERUS
Worms as food, 155
Yarrell, W., 37
Zoological position, 26
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Transcriber’s Notes.
Italic text is indicated with underscores, bold text with =equals=. Small/mixed capitals have been replaced with ALL CAPITALS.
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Chapter numbers have been added to the Table of Contents.
On page 179, a reference to “Mawle” has been changed to “Maule”
On page 220, the entry for “Learmouth” has been change to “Learmonth”
The text in the list of illustrations for page 186 has been changed from “Female Platypus” to “Brooding Female” to match the caption.
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