Atoms in Agriculture: Applications of Nuclear Science to Agriculture (Revised) — John Shaqi
Atoms in Agriculture: Applications of Nuclear Science to Agriculture (Revised)Osborne, Thomas S.
Science
Atoms in Agriculture: Applications of Nuclear Science to Agriculture (Revised)
Osborne, Thomas S.
Agriculture -- Research; Radioisotopes in agriculture
In recent years scientists have used chemical tests to compare the
amount of calcium in the diet against the amount excreted. The apparent
digestibility of such minerals has thus been computed for different
rations. Yet one important source of error in these chemical tests
plagued researchers.
There is a “turnover” in nutrients fed to animals; elements in feed are
absorbed into the animal’s body, retained for a time, and later
excreted. For example, a cow actually loses more calcium (through milk
and excreta) during the first six months of milk production than her
normal ration contains. As long as the amount of recycling was unknown,
scientists could not tell, for instance, how much calcium in alfalfa hay
could be digested by simply measuring incoming and outgoing calcium.
Formerly scientists could study the problem only by withholding all
calcium from the diet. Under this unnatural condition all outgoing
calcium came from the animal’s body.
With radioactive calcium in a steer’s diet (or injected into the blood),
scientists can quickly tell how much of the excreted calcium comes from
the animal’s blood and organs under normal conditions. In a typical
instance a ration thought to have 24 per cent digestible calcium,
chemically determined, was found to have 38 per cent by the tracer
technique.
The tracer method shows that milk contains phosphorus, only 20 per cent
of which may come from the feed and 80 per cent from the cow’s bones.
With eggs, about 65 per cent of the phosphorus is provided by feed and
35 per cent by the hen. Radioactive tracers permit measurement of such
“biological pathways,” as the biochemist calls them.
Can Lean Meat be Estimated “on the Hoof”?
The proof of the ration, one might say, is in the cutting. That is, the
worth of a particular feed was formerly unknown until the carcass had
been cut and priced.
Because of the time and expense, researchers in the past have merely
tested groups of animals on a ration for a few weeks and then estimated
the total gain by weighing and measuring. The main drawback to such a
method is that it measures total growth only. In meat animals, knowing
total growth is less important than knowing how much gain is in the more
valuable lean meat, how much is in fat, and how much merely water.
Techniques based on atomic energy have provided a new approach without
adding radioactive contamination to the animal.
Of the “background radiation” that has existed since the earth was
formed, part comes from cosmic rays (from outer space) and part from
radioactive materials in the earth itself. One of these naturally
radioactive isotopes is radioactive potassium, which is present to a
small but significant extent in food, in human bodies, and in
construction materials.
Public-domain text, read in full here on John Shaqi.
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