The Wonders of Life: A Popular Study of Biological PhilosophyHaeckel, Ernst
Philosophy
The Wonders of Life: A Popular Study of Biological Philosophy
Haeckel, Ernst
Biology; Evolution (Biology); Life -- Origin
The phenomena of regeneration are extremely varied, and have of
late years been made the subject of a good deal of comprehensive
experiment, especially on the side of what is called "mechanical
embryology." Many of these experimental embryologists have drawn
far-reaching conclusions from their somewhat narrow experiments, and
have partly urged them as objections to Darwinism. They imagine that
they have disproved the theory of selection. Most of these efforts
betray a notable lack of general physiological and morphological
knowledge. As they also generally ignore the biogenetic law, and
take no account of the fundamental correlation of embryology and
stem history, we can hardly wonder that they reach the most absurd
and contradictory conclusions. Many examples of this will be found
in the _Archiv für Entwickelungsmechanik_. When, however, we make
a comprehensive survey of the interesting field of regeneration
processes, we discover a continuous series of development from
the simplest repair of plasm in the unicellular protists to the
sexual generation of the higher histona. The sperm-cells and ova
of the latter are redundant growth-products, which have the power
of regenerating the whole multicellular organism. But many of the
higher histona have also the capacity to produce new individuals by
regeneration from detached pieces of tissue, or even single cells.
In the peculiar mode of metabolism and growth which accompanies
these processes of regeneration, the memory of the plastidule, or
the unconscious retentive power of the biogens, plays the chief part
(_cf._ my _Perigenesis of the Plastidule_, 1875). In the most primitive
kinds of the unicellular protists we find the phenomena of death and
regeneration in the simplest form. When an unnucleated moneron (a
chromaceum or bacterium) divides into two equal halves, the existence
of the dividing individual comes to an end. Each half regenerates
itself in the simplest conceivable way by assimilation and growth,
until it, in turn, reaches the size of the parent organism. In the
nucleated cells of most of the protophyta and protozoa it is more
complicated, as the nucleus becomes active as the central organ and
regulator of the metabolism. If an infusorium is cut into two pieces,
only one of which contains the nucleus, this one alone grows into a
complete nucleated cell; the unnucleated portion dies, being unable to
regenerate itself.
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