Matters are quite different where the genetic effect is concerned. If a
sex cell is damaged and if that sex cell is one of the pair that goes
into the production of a fertilized ovum, a damaged organism results.
There is no margin for correction. There is no unaffected cell that can
take over the work of the damaged sex cell once fertilization has taken
place.
Suppose only one sex cell out of a million is damaged. If so, a damaged
sex cell will, on the average, take part in one out of every million
fertilizations. And when it is used, it will not matter that there are
999,999 perfectly good sex cells that might have been used—it was the
damaged cell that _was_ used. That is why there is no threshold in the
genetic effect of radiation and why there is no “safe” amount of
radiations insofar as genetic effects are concerned. However small the
quantity of radiation absorbed, mankind must be prepared to pay the
price in a corresponding increase of the genetic load.
[Illustration: Percent lethal chromosomes vs. Amount of x radiation, r]
If the straight line obtained by plotting mutation rate against
radiation dose is followed down to a radiation dose of zero, it is found
that the line strikes the vertical axis slightly above the origin. The
mutation rate is more than zero even when the radiation dose is zero.
The reason for this is that it is the dose of man-made radiation that is
being considered. Even when man-made radiation is completely absent
there still remains the natural background radiation.
It is possible in this manner to determine that background radiation
accounts for considerably less than 1% of the spontaneous mutations that
take place. The other mutations must arise out of chemical
misadventures, out of the random heat-jiggling of molecules, and so on.
These, it can be presumed, will remain constant when the radiation dose
is increased.
This is a hopeful aspect of the situation for it means that, if the
background radiation is doubled or tripled for mankind as a whole, only
that small portion of the spontaneous mutation rate that is due to the
background radiation will be doubled or tripled.
Let us suppose, for instance, that fully 1% of the spontaneous mutations
occurring in mankind is due to background radiation. In that case, the
tripling of the background radiation produced in the United States by
man-made causes (see Table) would triple that 1%. In place of 99
non-radiational mutations plus 1 radiational, we would have 99 plus 3.
The total number of mutations would increase from 100 to 102—an increase
of 2%, not an increase of 200% that one would expect if all spontaneous
mutations were caused by background radiation.
RADIATION EXPOSURES IN THE UNITED STATES[7]
Millirems[8]
Public-domain text, read in full here on John Shaqi.
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