On Molecular and Microscopic Science, Volume 1 (of 2)Somerville, Mary
History
On Molecular and Microscopic Science, Volume 1 (of 2)
Somerville, Mary
Matter -- Constitution; Microscopy; Natural history
The structure of the Oscillatoriæ is microscopic. They are minute
filiform plants closely allied to the Nostocs; and consist of
transparent colourless tubular filaments containing colour cells of
various forms, more or less separated from each other, and visible
through their transparent tubes; the colour is usually some shade of
green, yellowish, or purple. In the genus Rivularia these tubular
filaments have a globular transparent cell at the base, and are closely
packed into little balls, either forming small groups, as in the
Rivularia nitida, or singly attached to stones and rocks. In Rivularia
nitida, the filaments radiate from a centre. Some Oscillatoriæ form
velvety cushion-like patches upon rocks, others are attached in tufts as
parasites to other sea weeds, while many are arranged in free or
attached stratified bundles. Lingbya furnishes a beautiful specimen of
the latter. The filaments in the stratified group are usually much
twisted and interwoven, and some of them exhibit singular oscillating
motions, as the Oscillatoria littoralis and spiralis, Spirulina
tenuissima and others; one end of the filaments remains at rest, while
the other extremity is in constant vibration. With a microscope the
movement in some species is seen to be from side to side like a
pendulum, in others it is spiral or twisting, and when a fragment of the
plant is set free when vibrating the movement is progressive. If a
fragment be put into a glass of water, its edge in a little time becomes
fringed with short filaments radiating from central points with their
tips outwards. They soon detach themselves from the fragment by their
oscillations, and as their vibrations continue after they are free, they
swim with a spiral motion to the edge of the water, and even ascend the
glass till arrested by the dry part above.[35] During these motions
there is a corresponding alteration in the form of the filamental tubes
believed to arise from rhythmical periods of vital contractibility,
which are affected by light and heat, because the motions are more rapid
in sunshine than in shade; besides, they are checked by strong chemical
agents. Some of the species have a tuft of delicate cilia at the
extremities of their filaments.
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