How many delightful hours I spent in this way at the lounge window!
How many new specimens of underwater flora and fauna I marveled at
beneath the light of our electric beacon! Mushroom-shaped fungus
coral, some slate-colored sea anemone including the species
Thalassianthus aster among others, organ-pipe coral arranged like
flutes and just begging for a puff from the god Pan, shells unique to
this sea that dwell in madreporic cavities and whose bases are twisted
into squat spirals, and finally a thousand samples of a polypary I
hadn’t observed until then: the common sponge.
First division in the polyp group, the class Spongiaria has been
created by scientists precisely for this unusual exhibit whose
usefulness is beyond dispute. The sponge is definitely not a plant, as
some naturalists still believe, but an animal of the lowest order, a
polypary inferior even to coral. Its animal nature isn’t in doubt, and
we can’t accept even the views of the ancients, who regarded it as
halfway between plant and animal. But I must say that naturalists are
not in agreement on the structural mode of sponges. For some it’s a
polypary, and for others, such as Professor Milne-Edwards, it’s a
single, solitary individual.
The class Spongiaria contains about 300 species that are encountered
in a large number of seas and even in certain streams, where they’ve
been given the name freshwater sponges. But their waters of choice are
the Red Sea and the Mediterranean near the Greek Islands or the coast
of Syria. These waters witness the reproduction and growth of soft,
delicate bath sponges whose prices run as high as 150 francs apiece:
the yellow sponge from Syria, the horn sponge from Barbary, etc. But
since I had no hope of studying these zoophytes in the seaports of the
Levant, from which we were separated by the insuperable Isthmus of
Suez, I had to be content with observing them in the waters of the Red
Sea.
So I called Conseil to my side, while at an average depth of eight to
nine meters, the Nautilus slowly skimmed every beautiful rock on the
easterly coast.
There sponges grew in every shape, globular, stalklike, leaflike,
fingerlike. With reasonable accuracy, they lived up to their nicknames
of basket sponges, chalice sponges, distaff sponges, elkhorn sponges,
lion’s paws, peacock’s tails, and Neptune’s gloves—designations
bestowed on them by fishermen, more poetically inclined than
scientists. A gelatinous, semifluid substance coated the fibrous
tissue of these sponges, and from this tissue there escaped a steady
trickle of water that, after carrying sustenance to each cell, was
being expelled by a contracting movement. This jellylike substance
disappears when the polyp dies, emitting ammonia as it rots. Finally
nothing remains but the fibers, either gelatinous or made of horn,
that constitute your household sponge, which takes on a russet hue and
is used for various tasks depending on its degree of elasticity,
permeability, or resistance to saturation.
Public-domain text, read in full here on John Shaqi.
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