Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
Comparative anatomy and ontogeny prove beyond question that man is a
true vertebrate, and, therefore, man's special genealogical tree must
be connected with that of the other Vertebrates, which spring from a
common root with him. But we have also many important grounds in
comparative anatomy and ontogeny for assuming a common origin for all
the Vertebrates. If the general theory of evolution is correct, all
the Vertebrates, including man, come from a single common ancestor, a
long-extinct "Primitive Vertebrate." Hence the genealogical tree of
the Vertebrates is at the same time that of the human race.
Our task, therefore, of constructing man's genealogy becomes the
larger aim of discovering the genealogy of the entire vertebrate stem.
As we now know from the comparative anatomy and ontogeny of the
Amphioxus and the Ascidia, this is in turn connected with the
genealogical tree of the Invertebrates (directly with that of the
Vermalia), but has no direct connection with the independent stems of
the Articulates, Molluscs, and Echinoderms. If we do thus follow our
ancestral tree through various stages down to the lowest worms, we
come inevitably to the Gastraea, that most instructive form that gives
the clearest possible picture of an animal with two germinal layers.
The Gastraea itself has originated from the simple multicellular
vesicle, the Blastaea, and this in turn must have been evolved from
the lowest circle of unicellular animals, to which we give the name of
Protozoa. We have already considered the most important primitive type
of these, the unicellular Amoeba, which is extremely instructive when
compared with the human ovum. With this we reach the lowest of the
solid data to which we are to apply our biogenetic law, and by which
we may deduce the extinct ancestor from the embryonic form. The
amoeboid nature of the young ovum and the unicellular condition in
which (as stem-cell or cytula) every human being begins its existence
justify us in affirming that the earliest ancestors of the human race
were simple amoeboid coils.
But the further question now arises: "Whence came these first amoebae
with which the history of life began at the commencement of the
Laurentian epoch?" There is only one answer to this. The earliest
unicellular organisms can only have been evolved from the simplest
organisms we know, the Monera. These are the simplest living things
that we can conceive. Their whole body is nothing but a particle of
plasm, a granule of living albuminous matter, discharging of itself
all the essential vital functions that form the material basis of
life. Thus we come to the last, or, if you prefer, the first, question
in connection with evolution--the question of the origin of the
Monera. This is the real question of the origin of life, or of
spontaneous generation.
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