The Universal KinshipMoore, J. Howard (John Howard)
Philosophy
The Universal Kinship
Moore, J. Howard (John Howard)
Evolution; Human beings; Sociology
The first forms of life were one-celled—simple, jelly-like dots of
almost homogeneous plasm—the _protozoa_. These primitive organisms
were the common grandparents of all beings. From them evolved,
through infinite travail and suffering, all of the orders, families,
species, and varieties of animals that to-day live on the earth, and
all those that have in the past lived and passed away. By the
multiplication and specialisation of cells, and the formation of
cell aggregates, the sponges, celenterates, and flat worms were
developed from the protozoa.[1] The connecting links between the
one-celled and the many-celled animals consist of a series of
colonial forms of increasing size and complexity, some of which may
be found in every roadside ditch and pool, while others are extinct.
The development of these many-celled organisms (metazoa) from
one-celled organisms was a perfectly natural process, a process
which takes place in the initial evolutions of every embryo. There
is no more mystery about it than there is about any other act of
association. All association is simply a matter of ‘business.’
Many-celled organisms are colonies, or societies, of more or less
closely co-operating one-celled organisms, and they have come into
existence in obedience to the same laws of economy and advantage as
have those more modern societies of metazoa known as nations,
communities, and states, the organised bodies of men, ants, and
millionaires.
The sponges are the lowest of the many-celled animals. They consist
of irregular masses of loosely associated cells, hopelessly anchored
to the sea-floor. They represent the social instinct in embryo. The
cells are but slightly specialised, and each cell leads a more or
less independent existence. The sponge stands at about that stage of
social integration and intelligence represented by those stupendous
porifera which cover continents and constitute the ‘social
organisms’ of the civilised world. The nutritive system of sponges
consists of countless pores opening from the surface into a common
canal within, through which ever-waving cilia urge the alimental
waters. In the celenterates the cells arrange themselves in the form
of a cup with one large opening into and from the vase-like stomach.
The unsegmented worms are flat and sac-like, with bilateral symmetry
and the power to move about, but not tubular, as are the true worms.
They are bloodless, like the celenterates and sponges.
Public-domain text, read in full here on John Shaqi.
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