The Principles of Biology, Volume 1 (of 2)Spencer, Herbert
Science
The Principles of Biology, Volume 1 (of 2)
Spencer, Herbert
Biology
Consider one of the simplest--that presented by an ordinary vegetal cell
forming part of a leaf or other plant-structure. Its limiting membrane,
originally made polyhedral by pressure of adjacent cells, is gradually
moulded "into one of cylindrical, fibrous, or tabular shape, and
strengthening its walls with pilasters, borders, ridges, hooks, bands, and
panels of various kinds" (Kerner, i, 43): small openings into adjacent
cells being either left or subsequently made. Consisting of
non-nitrogenous, inactive matters, these structures are formed by the
inclosed protoplast. How formed? Is it by the agency of the nucleus? But
the nucleus, even had it characters conceivably adapting it to this
function, is irregularly placed; and that it should work the same effects
upon the cell-wall whether seated in the middle, at one end, or one side,
is incomprehensible. Is the protoplasm then the active agent? But this is
arranged into a network of strands and threads utterly irregular in
distribution and perpetually altering their shapes and connexions. Exercise
of fit directive action by the protoplasm is unimaginable.
Another instance:--Consider the reproductive changes exhibited by the
_Spirogyra_. The delicate threads which, in this low type of Alga, are
constituted of single elongated cells joined end to end, are here and there
adjacent to one another; and from a cell of one thread and a cell of
another at fit distance, grow out prominences which, meeting in the
interspace and forming a channel by the dissolution of their adjoined
cell-walls, empty through it the endochrome of the one cell into the other:
forming by fusion of the two a zygote or reproductive body. Under what
influence is this action initiated and guided? There is no conceivable
directive agency in either cell by which, when conditions are fit, a
papilla is so formed as to meet an opposite papilla.
Or again, contemplate the still more marvellous transformation occurring in
_Hydrodictyon utriculosum_. United with others to form a cylindrical
network, each sausage-shaped cell of this Alga contains, when fully
developed, a lining chromatophore made of nucleated protoplasm with
immersed chlorophyll-grains. This, when the cell is adult, divides into
multitudinous zoospores, which presently join their ends in such ways as to
form a network with meshes mostly hexagonal, minute in size, but like in
arrangement to the network of which the parent cell formed a part.
Eventually escaping from the mother-cell, this network grows and presently
becomes as large as the parent network. Under what play of forces do these
zoospores arrange themselves into this strange structure?
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account