Until comparatively recent times the animal world fell into two clearly
distinct halves, the Vertebrates and the Invertebrates. There were
several anatomical differences between the two provinces, but the most
conspicuous and most puzzling was the backbone. Nowhere in living nature
or in the rocks was any intermediate type known between the backboned
and the non-backboned animal. In the course of the nineteenth century,
however, several animals of an intermediate type were found. The
sea-squirt has in its early youth the line of cartilage through the
body which, in embryonic development, represents the first stage of the
backbone; the lancelet and the Appendicularia have a rod of cartilage
throughout life; the "acorn-headed worm" shows traces of it. These are
regarded as surviving specimens of various groups of animals which, in
early times, fell between the Invertebrate and Vertebrate worlds, and
illustrate the transition.
With their aid a genealogical tree was constructed for the fish. It was
assumed that some Cambrian or Silurian Annelid obtained this stiffening
rod of cartilage. The next advantage--we have seen it in many cases--was
to combine flexibility with support. The rod was divided into connected
sections (vertebrae), and hardened into bone. Besides stiffening the
body, it provided a valuable shelter for the spinal cord, and its upper
part expanded into a box to enclose the brain. The fins were formed of
folds of skin which were thrown off at the sides and on the back, as
the animal wriggled through the water. They were of use in swimming, and
sections of them were stiffened with rods of cartilage, and became the
pairs of fins. Gill slits (as in some of the highest worms) appeared in
the throat, the mouth was improved by the formation of jaws, and--the
worm culminated in the shark.
Some experts think, however, that the fish developed directly from a
Crustacean, and hold that the Ostracoderms are the connecting link. A
close discussion of the anatomical details would be out of place here,
[*] and the question remains open for the present. Directly or
indirectly, the fish is a descendant of some Archaean Annelid. It is
most probable that the shark was the first true fish-type. There are
unrecognisable fragments of fishes in the Ordovician and Silurian rocks,
but the first complete skeletons (Lanarkia, etc.) are of small shark-
like creatures, and the low organisation of the group to which the shark
belongs, the Elasmobranchs, makes it probable that they are the most
primitive. Other remains (Palaeospondylus) show that the fish-like
lampreys had already developed.
* See, especially, Dr. Gaskell's "Origin of Vertebrates"
(1908).
Public-domain text, read in full here on John Shaqi.
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