The works of Francis Maitland Balfour, Volume 2 (of 4) : $b A treatise on comparative embryology: InvertebrataBalfour, Francis M. (Francis Maitland)
Science
The works of Francis Maitland Balfour, Volume 2 (of 4) : $b A treatise on comparative embryology: Invertebrata
Balfour, Francis M. (Francis Maitland)
Embryology; Zoology
The structural peculiarities of the adult are formed by a post-larval
metamorphosis. The caudal appendage of Pterotrachea and Firoloidea is
formed as an outgrowth of the upper border of the hind end of the
foot. The so-called fin arises as a cylindrical process in front of
the base of the foot, which is eventually flattened laterally. In the
Atlantidæ it is in some cases at first vermiform, and in other cases
attains directly its adult structure. The embryonic foot itself gives
rise in Pterotrachea, Firoloidea and Carinaria to the tail, on the
dorsal and posterior side of which the operculum may still be seen in
young specimens. In Atlanta it forms the posterior part of the foot on
which the operculum persists through life.
The embryonic shell is completely lost in Pterotrachea and Firoloidea,
and the shell is rudimentary in Carinaria. With its atrophy the mantle
region also becomes much reduced.
The velum is enormously developed in many Heteropods. In Atlanta it is
six-lobed, each of the two primitive lateral lobes being prolonged
into three processes, two in front, and one behind. As in all other
cases, it atrophies in the course of the post-larval metamorphosis.
[FIG. 108. EMBRYO OF CAVOLINIA (HYALEA) TRIDENTATA. (After Fol.)
_m._ mouth; _a._ anus; _s._ stomach; _i._ intestine; sigma.
nutritive sack; _mb._ mantle; _mc._ mantle cavity; _Kn._ contractile
sinus; _h._ heart; _r._ renal sack: _f._ foot; _pn._ epipodia; _q._
shell; _ot._ otolithic sack.]
Pteropoda. The early larval form of the Pteropods is closely similar
to that of marine Gasteropods. There are usually only three
hypoblastic spheres at the close of the segmentation in the
Thecosomata, and a somewhat larger number in the Gymnosomata. The
blastopore closes at the oral region, on the nutritive side of the
ovum, and the shell-gland is placed at the original formative pole.
The velum, shell-gland and foot have the usual relations. Although
many of the adult forms are symmetrical, there is very early an
asymmetry visible in the larva, shewing that the Pteropods are
descended from asymmetrical ancestors. In the Gymnosomata there is a
second larval stage after the loss of the shell when the larva is
provided with three rings of cilia (fig. 109). In most forms of
Pteropods the dorsal part of the body, covered by the mantle, is
produced into a visceral sack like that of the Cephalopoda (fig. 108).
The velum varies considerably in its development in different forms.
In the Hyaleidæ it is comparatively small and atrophies early; while
in Cymbulia (fig. 103) and the Gymnosomata it is large and bilobed,
and persists till after the foot has attained its full development.
The free edge of the velum is provided with long motor cilia, and its
lower border with small cilia which bring the food to the mouth. In
Cleodora there is a median bunch of cilia in the centre of the velum
like that in the Lamellibranchiata, Nudibranchiata, etc.
Public-domain text, read in full here on John Shaqi.
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