So it is with the Cretaceous Revolution. In effect it corresponds very
closely to the Permian Revolution. On the physical side it includes a
very considerable rise of the land over the greater part of the globe,
and the formation of lofty chains of mountains; on the botanical side
it means the reduction of the rich Mesozoic flora to a relatively
insignificant population, and the appearance and triumphant spread of
the flowering plants, on the zoological side it witnesses the complete
extinction of the Ammonites, Deinosaurs, and Pterosaurs, an immense
reduction of the reptile world generally, and a victorious expansion of
the higher insects, birds, and mammals; on the climatic side it provides
the first definite evidence of cold zones of the earth and cold seasons
of the year, and seems to represent a long, if irregular, period of
comparative cold. Except, to some extent, the last of these points,
there is no difference of opinion, and therefore, from the evolutionary
point of view, the Cretaceous period merits the title of a revolution.
All these things were done before the Tertiary period opened.
Let us first consider the fundamental and physical aspect of this
revolution, the upheaval of the land. It began about the close of the
Jurassic period. Western and Central Europe emerged considerably from
the warm Jurassic sea, which lay on it and had converted it into an
archipelago. In North-western America also there was an emergence of
large areas of land, and the Sierra and Cascade ranges of mountains were
formed about the same time. For reasons which will appear later we must
note carefully this rise of land at the very beginning of the Cretaceous
period.
However, the sea recovered its lost territory, or compensation for it,
and the middle of the Cretaceous period witnessed a very considerable
extension of the waters over America, Europe, and southern Asia. The
thick familiar beds of chalk, which stretch irregularly from Ireland to
the Crimea, and from the south of Sweden to the south of France, plainly
tell of an overlying sea. As is well known, the chalk consists mainly
of the shells or outer frames of minute one-celled creatures
(Thalamophores) which float in the ocean, and form a deep ooze at its
bottom with their discarded skeletons. What depth this ocean must have
been is disputed, and hardly concerns us. It is clear that it must have
taken an enormous period for microscopic shells to form the thick masses
of chalk which cover so much of southern and eastern England. On the
lowest estimates the Cretaceous period, which includes the deposit of
other strata besides chalk, lasted about three million years. And as
people like to have some idea of the time since these things happened,
I may add that, on the lowest estimate (which most geologists would at
least double), it is about three million years since the last stretches
of the chalk-ocean disappeared from the surface of Europe.
Public-domain text, read in full here on John Shaqi.
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