Elements of Structural and Systematic Botany: For High Schools and Elementary College Courses — John Shaqi
Elements of Structural and Systematic Botany: For High Schools and Elementary College CoursesCampbell, Douglas Houghton
Science
Elements of Structural and Systematic Botany: For High Schools and Elementary College Courses
Campbell, Douglas Houghton
Botany -- Textbooks
As a representative of the group, we will select one of the commonest
forms (_Oscillaria_), known sometimes as green slime, from forming a
dark blue-green or blackish slimy coat over the mud at the bottom of
stagnant or sluggish water, in watering troughs, on damp rocks, or
even on moist earth. A search in the places mentioned can hardly fail
to secure plenty of specimens for study. If a bit of the slimy mass is
transferred to a china dish, or placed with considerable water on a
piece of stiff paper, after a short time the edge of the mass will
show numerous extremely fine filaments of a dark blue-green color,
radiating in all directions from the mass (Fig. 6, _a_). The filaments
are the individual plants, and possess considerable power of motion,
as is shown by letting the mass remain undisturbed for a day or two,
at the end of which time they will have formed a thin film over the
surface of the vessel in which they are kept; and the radiating
arrangement of the filaments can then be plainly seen.
If the mass is allowed to dry on the paper, it often leaves a bright
blue stain, due to the blue pigment in the cells of the filament. This
blue color can also be extracted by pulverizing a quantity of the
dried plants, and pouring water over them, the water soon becoming
tinged with a decided blue. If now the water containing the blue
pigment is filtered, and the residue treated with alcohol, the latter
will extract the chlorophyll, becoming colored of a yellow-green.
The microscope shows that the filaments of which the mass is
composed (Fig. 6, _B_) are single rows of short cylindrical cells of
uniform diameter, except at the end of the filament, where they
usually become somewhat smaller, so that the tip is more or less
distinctly pointed. The protoplasm of the cells has a few small
granules scattered through it, and is colored uniformly of a pale
blue-green. No nucleus can be seen.
If the filament is broken, there may generally be detected a
delicate, colorless sheath that surrounds it, and extends beyond the
end cells (Fig. 6, _c_). The filament increases in length by the
individual cells undergoing division, this always taking place at
right angles to the axis of the filament. New filaments are produced
simply by the older ones breaking into a number of pieces, each of
which rapidly grows to full size.
The name "oscillaria" arises from the peculiar oscillating or swinging
movements that the plant exhibits. The most marked movement is a
swaying from side to side, combined with a rotary motion of the free
ends of the filaments, which are often twisted together like the
strands of a rope. If the filaments are entirely free, they may often
be observed to move forward with a slow, creeping movement. Just how
these movements are caused is still a matter of controversy.
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.
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account