Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
We have the reverse of this experiment in a Mexican gilled salamander,
the fish-like axolotl (Siredon pisciformis). It was formerly regarded
as a permanent gilled amphibian persisting throughout life at the
fish-stage. But some of the hundreds of these animals that are kept in
the Botanical Garden at Paris got on to the land for some reason or
other, lost their gills, and changed into a form closely resembling
the salamander (Amblystoma). Other species of the genus became
sexually mature for the first time in this condition. This has been
regarded as an astounding phenomenon, although every common frog and
salamander repeats the metamorphosis in the spring. The whole change
from the aquatic and gill-breathing animal to the terrestrial
lung-breathing form may be followed step by step in this case. But
what we see here in the development of the individual has happened to
the whole class in the course of its stem-history.
The metamorphosis goes farther in a third order of Amphibia, the
Batrachia or Anura, than in the salamander. To this belong the various
kinds of toads, ringed snakes, water-frogs, tree-frogs, etc. These
lose, not only the gills, but also (sooner or later) the tail, during
metamorphosis.
The ontogenetic loss of the gills and the tail in the frog and toad
can only be explained on the assumption that they are descended from
long-tailed Amphibia of the salamander type. This is also clear from
the comparative anatomy of the two groups. This remarkable
metamorphosis is, however, also interesting because it throws a
certain light on the phylogeny of the tail-less apes and man. Their
ancestors also had long tails and gills like the gilled Amphibia, as
the tail and the gill-arches of the human embryo clearly show.
For comparative anatomical and ontogenetic reasons, we must not seek
these amphibian ancestors of ours--as one would be inclined to do,
perhaps--among the tail-less Batrachia, but among the tailed lower
Amphibia.
The vertebrate form that comes next to the Amphibia in the series of
our ancestors is a lizard-like animal, the earlier existence of which
can be confidently deduced from the facts of comparative anatomy and
ontogeny. The living Hatteria of New Zealand (Figure 2.264) and the
extinct Rhyncocephala of the Permian period (Figure 2.265) are closely
related to this important stem-form; we may call them the
Protamniotes, or Primitive Amniotes. All the Vertebrates above the
Amphibia--or the three classes of reptiles, birds, and mammals--differ
so much in their whole organisation from all the lower Vertebrates we
have yet considered, and have so great a resemblance to each other,
that we put them all together in a single group with the title of
Amniotes. In these three classes alone we find the remarkable
embryonic membrane, already mentioned, which we called the amnion; a
cenogenetic adaptation that we may regard as a result of the sinking
of the growing embryo into the yelk-sac.
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