Dragons of the Air: An Account of Extinct Flying ReptilesSeeley, H. G. (Harry Govier)
Science
Dragons of the Air: An Account of Extinct Flying Reptiles
Seeley, H. G. (Harry Govier)
Pterosauria
The relations of reptiles to other animals may be stated so as to make
evident the characters and affinities which bind them together. Early in
the nineteenth century naturalists included with the Reptilia the tribe
of salamanders and frogs which are named Amphibia. The two groups have
been separated from each other because the young of Amphibia pass
through a tadpole stage of development. They then breathe by gills, like
fishes, taking oxygen from the air which is suspended in water, before
lungs are acquired which afterwards enable the animals to take oxygen
directly from the air. The amphibian sometimes sheds the gills, and
leaves the water to live on land. Sometimes gills and lungs are retained
through life in the same individual. This amphibian condition of lung
and gill being present at the same time is paralleled by a few fishes
which still exist, like the Australian _Ceratodus_, the lung-fish, an
ancient type of fish which belongs to early days in geological time.
This metamorphosis has been held to separate the amphibian type from
the reptile because no existing reptile develops gills or undergoes a
metamorphosis. Yet the character may not be more important as a ground
for classification than the community of gills and lungs in the fish and
amphibian is ground for putting them together in one natural group. For
although no gills are found in reptiles, birds, or mammals, the embryo
of each in an early stage of development appears to possess gill-arches,
and gill-clefts between them, through which gills might have been
developed, even in the higher vertebrates, if the conditions of life had
been favourable to such modification of structure. In their bones
Reptiles and Amphibia have much in common. Nearly all true reptiles lay
eggs, which are defined like those of birds by comparatively large size,
and are contained in shells. This condition is not usual in amphibians
or fishes. When hatched the young reptile is completely formed, the
image of its parent, and has no need to grow a covering to its skin like
some birds, or shed its tail like some tadpoles. The reptile is like the
bird in freedom from important changes of form after the egg is hatched;
and the only structure shed by both is the little horn upon the nose,
with which the embryo breaks the shell and emerges a reptile or a bird,
growing to maturity with small subsequent variations in the proportions
of the body.
[Illustration: FIG. 1 LUNG OF THE FISH CERATODUS
Partly laid open to show its chambered structure (After Günther)]
THE REPTILE SKIN
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