The Cambridge natural history, Vol. 01 (of 10)Hickson, Sydney J. (Sydney John)
Science
The Cambridge natural history, Vol. 01 (of 10)
Hickson, Sydney J. (Sydney John)
Animals
The life-cycles varied considerably in length. It was in every case found
that after a series of fissions the species ultimately underwent
conjugation (more or less unequal or bisexual in character);[124] the
zygote encysted; and within the cyst the protoplasmic body underwent
brood-formation, the outcome of which was a mass of {118}spores discharged
by the rupture of the cyst (Fig. 38). These spores grow from a size too
minute for resolution by our microscopes into the ordinary flagellate form.
They withstand the effects of drying, if this be effected immediately on
their escape from the ruptured cyst; so that it is probable that each spore
has itself a delicate cyst-wall and an aplanospore, from which a single
zoospore escapes. The complex cycle, of course, comprises the whole course
from spore-formation to spore-formation. Such complete and regular
"life-histories," each characteristic of the species, were the final
argument against those who held to the belief that spontaneous generation
of living beings took place in infusions of decomposing organic matter.
Previous to the work of these observers it had been almost universally
believed that the temperature of boiling water was adequate to kill all
living germs, and that any life that appeared in a closed vessel after
boiling must be due to spontaneous change in its contents. But they now
showed that, while none of the species studied resisted exposure _in the
active condition_ to a temperature of 138°-140° F., the spores only
succumbed, in liquid, to temperatures that might even reach 268° F., or
when dry, even 300° F. or more. Such facts explain the constant occurrence
of one or more such minute species in liquids putrefying under ordinary
conditions, the spores doubtless being present in the dust of the air. Very
often several species may co-exist in one infusion; but they separate
themselves into different zones, according to their respective need for
air, when a drop of the liquid is placed on the slide and covered for
examination. Dallinger[125] has made a series of experiments on the
resistance of these organisms in their successive cycles to a gradual rise
of temperature. Starting with a liquid containing three distinct species,
which grew and multiplied normally at 60° F., he placed it under conditions
in which he could slowly raise the temperature. While all the original
inmates would have perished at 142° F., he succeeded in finally producing
races that throve at 158° F., a scalding heat, when an accident put an end
to that series of experiments. In no instance was the temperature raised so
much as to kill off the beings, so that the increased tolerance of their
descendants was due not, as might have been anticipated, to selection of
those that best resisted, but to the inheritance of {119}an increased
toleration and resistance from one generation or cycle to another.
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