In the lowest adult form of the vertebrates, amphioxus, the gill-system
is used largely as a sieve for procuring food, partly also, perhaps, for
respiration. In the sharks, bony fishes, and lower amphibians, water is
taken in through the mouth, and passes through the gill-slits to the
exterior. As it goes through the slits it passes over the gills, that
stand like fringes on the sides of the slits. The blood that passes in
large quantities through the gills is aerated in this way. In the
embryos of the higher vertebrates the gill-slits may appear even before
the mouth has opened, but in no case is there a passage of water through
the gill-slits, nor is the blood aerated in the gill-region, although it
passes through this part on its way from the heart to the dorsal side of
the digestive tract. It is quite certain that the gill-system of the
embryo performs no respiratory function.[9]
Footnote 9:
This statement is not intended to prejudice the question as to whether
the presence of the gill-slits and arches may be essential to the
formation of other organs.
In the higher amphibians, the frogs for example, we find an interesting
transition. The young embryo, when it emerges from the egg-membranes,
bears three pairs of external gills that project from the gill-arches
into the surrounding water. Later these are absorbed, and a new system
of internal gills, like those of fishes, develops on the gill-arches.
These are used throughout the tadpole stage for respiratory purposes.
When the tadpole is about to leave the water to become a frog, the
internal gills are also absorbed and the gill-clefts close. Lungs then
develop which become the permanent organs of respiration.
There are two points to be noticed in this connection. First, the
external gills, which are the first to develop, do not seem to
correspond to any permanent adult stage of a lower group. Second, the
transition from the tadpole to the frog can only be used by way of
analogy of what is supposed to have taken place ancestrally in the
reptiles, birds, and mammals, since no one will maintain that the frogs
represent a group transitional between the amphibians and the higher
forms. However, since the salamanders also have gills and gill-slits in
the young stages, and lose them when they leave the water to become
adult land forms, this group will better serve to illustrate how the
gill-system has been lost in the higher forms. Not that in this case
either, need we suppose that the forms living to-day represent
ancestral, transitional forms, but only that they indicate how such a
remarkable change from a gill-breathing form, living in the water, might
become transformed into a lung-breathing land form. Such a change is
supposed to have taken place when the ancestors of the reptiles and the
mammals left the water to take up their abode on the land.
Public-domain text, read in full here on John Shaqi.
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