Report on the Radiolaria Collected by H.M.S. Challenger During the Years 1873-1876, First Part: Porulosa (Spumellaria and Acantharia): Report on the Scientific Results of the Voyage of H.M.S. Challenger During the Years 1873-76, Vol. XVIIIHaeckel, Ernst
Science
Report on the Radiolaria Collected by H.M.S. Challenger During the Years 1873-1876, First Part: Porulosa (Spumellaria and Acantharia): Report on the Scientific Results of the Voyage of H.M.S. Challenger During the Years 1873-76, Vol. XVIII
Haeckel, Ernst
Radiolaria
by three longitudinal furrows into three equal prominent ridges, which
correspond to three circular lobes in the porochora; the cause of this
basal triradial lobular formation lies probably in the triradial
development of the skeleton in many NASSELLARIA or in the cortinar
structure of the collar septum. (3) The simple podoconus splits into three
or four elongated lobes, which eventually become almost completely
separated and correspond to the lobes of the central capsule, in the axial
wall of which they lie as longitudinally striated bands. The behaviour of
these bands justifies the hypothesis that the podoconus is a muscular
differentiated portion of the endoplasm and is composed of myophane
fibrillæ, whose contraction determines the opening of the central capsule.
A. The podoconus of the MONOPYLEA was first described by R. Hertwig in
1879, and recognised as a characteristic component of the central capsule
in the most various groups of this legion (in #Plectoidea#, #Stephoidea#,
#Spyroidea#, and #Cyrtoidea#; see his figures, _loc. cit._, Taf. vii.,
viii., and the description, pp. 71, 73, 83, 106). Hertwig called it the
"pseudopodial cone," and regarded it as a conical process of the
capsule-membrane, which is developed from this latter and projects from
the porous area into the interior of the central capsule; "it is
penetrated by fine canals which arise at the apex of the cone, diverge
towards the base, and terminate there in the rods of the pseudopodial
area. The intracapsular protoplasm penetrates at the apex of the
pseudopodial cone into its fine canals, runs along them and emerges from
the rods of the porous area in the form of slender threads" (_loc. cit._,
p. 19). I cannot agree with this view of Hertwig, although I have been
able to confirm the accuracy of his description by my own observations
upon numerous excellently stained and preserved preparations in the
Challenger collection. As I have proved by numerous teased out
preparations, and as Hertwig himself correctly states, "the cone is more
readily detached from the membrane than from the protoplasm, when the
capsule is teased" (_loc. cit._, p. 73). Hence I regard the podoconus not
as a differentiated portion of the capsule-membrane but as endoplasm, and
believe that it is composed of myophanes or "contractile muscular
fibrils" in the same manner as the cortical layer of the CANNOPYLEA.
Probably the contraction of these fibrils serves to raise the opercular
rods and hence to allow the exit of the endoplasm through the pores which
lie between these opercular rhabdillae (compare § 59).
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