Atoms in Agriculture
The Understanding the Atom Series
Nuclear energy is playing a vital role in the life of every man, woman, and child in the United States today. In the years ahead it will affect increasingly all the peoples of the earth. It is essential that all Americans gain an understanding of this vital force if they are to discharge thoughtfully their responsibilities as citizens and if they are to realize fully the myriad benefits that nuclear energy offers them.
The United States Atomic Energy Commission provides this booklet to help you achieve such understanding.
Edward J. Brunenkant, Director Division of Technical Information
UNITED STATES ATOMIC ENERGY COMMISSION
Dr. Glenn T. Seaborg, Chairman James T. Ramey Wilfrid E. Johnson Dr. Theos J. Thompson Dr. Clarence E. Larson
Atoms in Agriculture
by Thomas S. Osborne
CONTENTS
RESEARCH IN THE UNITED STATES 1 HOW ARE RADIOISOTOPES USED IN RESEARCH? 2 They May be Used as “Tracers” 2 How Effective Are Radioactive Tracers? 3 PLANT NUTRITION AND METABOLISM 4 What Happens to Fertilizer in the Soil? 4 Do Plants Absorb Through Roots Only? 4 Where Should Fertilizer be Placed? 5 Do Fertilizers Move Fast in Plants? 5 What Else Do Radioisotopes Tell Us? 5 PLANT DISEASES AND WEEDS 8 How Can We Combat Plant Diseases? 8 Why Do Chemicals Destroy Some Plants? 10 ANIMAL NUTRITION AND METABOLISM 11 How Nutritious Are Various Feedstuffs? 11 Can Lean Meat be Estimated “on the Hoof”? 12 Does Thyroid Affect Milk—Egg Production? 13 More Tracers in Animal Nutrition Research 13 INSECTS 15 Where and How Fast Do Insects Travel? 15 How Far Do Insects Carry Pollen? 15 Are Predators Used to Destroy Insects? 16 Can Tracers Measure Spray Residues? 17 RADIOISOTOPES AS RADIATION SOURCES 17 Can Radiation Produce New Plants? 18 Can Radiation Destroy Germs and Insects? 19 How Does Radiation Affect Farm Animals? 22 What Else Can Radiation Tell Us? 22 CONCLUSION 23 SUGGESTED REFERENCES 24
United States Atomic Energy Commission Division of Technical Information Library of Congress Catalog Card Number: 64-60274 1962; 1963(Rev.)
ABOUT THE AUTHOR
Thomas S. Osborne is in charge of plant-breeding research being conducted by the University of Tennessee’s Agricultural Research Laboratory for the Atomic Energy Commission. He has been in this work since 1953.
But Dr. Osborne is a teacher at heart. Hence when students wrote inquiring about the effects of radiation on seeds, he took great interest in replying. From these replies grew mimeographed literature suggesting experiments for students; then this and other booklets.
Dr. Osborne received his undergraduate degree from Oklahoma State University and his doctorate from Washington State University.
Atoms in Agriculture
by Thomas S. Osborne, Associate Professor of Agronomy, University of Tennessee.
To know what questions to put to Nature—that is 95 per cent of scientific research. —Whitehead
If man’s existence on the earth is compared to a calendar year, then he began farming in the very early morning of December 30 and began applying systematic knowledge to agriculture at 10:15 p.m. on December 31.
The first traces of man on the earth are dated at about one and three-quarter million years ago. Plant life then was very much like plant life today, but the animal population was quite different. Man became a producer of plants and animals instead of merely a gatherer and hunter about 8000 years ago. He has applied systematic study to cultivated plants and animals for only 300 years.
Research in the United States
Estimates of crop losses in the United States each year are approximately $5 billion to weeds, $4 billion to insects, and $3 billion to diseases. This total loss of $12 billion a year is about $22,500 a minute.
In an effort to reduce these losses and to raise the standard of living, agricultural research has become more specialized and more complex. Over the years it has gradually changed from trial-and-error attempts to increase production to the actual study of basic questions. To study such intricate systems as the leaf of a plant or the liver of an animal, agricultural science has had to draw from every other science. The use of radioactive tracers and radiations in research looks especially promising to agriculture.
In fact, agriculture has already begun to benefit from the applications of such research. Radioactive techniques have been used to study soils, plants, microbes, insects, farm animals, and new ways to use and preserve foodstuffs. Radioactive atoms are not used directly by farmers but are used in research directed by the U. S. Department of Agriculture and Atomic Energy Commission, by the agricultural experiment stations of the various states, and by numerous public and private research institutions. From such research come improved materials and methods which are used on the farm.
In more highly developed countries agricultural research has brought a shift of emphasis from production to utilization. In the United States today, each farmer produces enough food for himself and 25 other people. Moreover, for every person who works on a farm, there are two or three other people who sell him goods and services or process and distribute the things he produces.
In agriculture, as in all areas of research, the number of questions to be asked of Nature seems infinite. Future generations seeking to answer these questions will probably rely more on techniques using radioactive isotopes than on any other methods known today.
How Are Radioisotopes Used in Research?
Atoms in Agriculture: Applications of Nuclear Science to Agriculture (revised) · The Wunder Library — complete classics, free to read, with narration.