The Organism as a Whole, from a Physicochemical ViewpointLoeb, Jacques
Science
The Organism as a Whole, from a Physicochemical Viewpoint
Loeb, Jacques
Biology; Life (Biology); Mendel's law
Experiments on a much more favourable animal for this purpose, namely,
the eggs of the marine fish _Fundulus_, gave altogether different
results. The eggs of this marine fish develop naturally in sea water
but they develop just as well in fresh or in distilled water, and
the young fish when they are made to hatch in distilled water will
continue to live in this medium. This proves that these eggs require
none of the salts of the sea water for their development. When these
eggs are put immediately after fertilization into a pure solution of
NaCl of that concentration in which this salt exists in the sea water
practically all the eggs die without forming an embryo; but if a small
quantity of CaCl₂ is added every egg is able to form one, and these
embryos will develop into fish and the latter will hatch. This led the
writer to the conclusion that these fish (and perhaps marine animals in
general) need the Ca of the sea water only to counteract the injurious
effects which a pure NaCl solution has if it is present in too high a
concentration.[261] When we raise the eggs in a pure NaCl solution of
a concentration ≦m/8 practically every egg will develop; and even in
a m/4 or 3/8 m many or some eggs will form embryos without adding Ca;
it may be that a trace of Ca present in the membrane of the egg may
suffice to counter-balance the injurious action of a weak salt solution.
[261] Loeb, J., “The Poisonous Character of a Pure NaCl Solution.”
_Am. Jour. Physiol._, 1900, iii., 329; _Arch. f. d. ges. Physiol._,
1901, lxxxviii., 68; _Am. Jour. Physiol._, 1902, vi., 411; _Biochem.
Zischr._, 1906, ii., 81.
The concentration of the NaCl in the sea water at Woods Hole (where
these experiments were made) is about m/2, and as soon as this
concentration of NaCl is reached the eggs are all killed as a rule
before they can form an embryo, unless a small but definite amount of
Ca is added. It was found that the eggs can be raised in much higher
concentrations of NaCl, but in that case more Ca must be added. The
following table gives the minimal amount of CaCl₂ which must be added
in order to allow fifty per cent. of the eggs to form embryos. (The
eggs were put into the solution an hour or two after fertilization.)
TABLE XVI
----------------+----------------------
_Concentration | _Cc. m/16 CaCl₂
of | Required for 50 c.c.
_NaCl_ | NaCl Solution_
----------------+----------------------
m. |
3/8 | 0.1
4/8 | 0.3
5/8 | 0.5
6/8 | 0.6
7/8 | 0.9
8/8 | 1.2-1.4
9/8 | 1.8-2.0
10/8 | 2.0-2.5
11/8 | 2.0?
12/8 | 3.0-3.5
13/8 | 6.0
----------------+----------------------
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