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Direct observations of schizonts and agamonts releasing megalospheres clarified the asexual phase of the life cycle of Peneroplis planatus and made it most probable that this species has a paratrimorphic life cycle. Specimens with maximum lengths between 837 and 3,503 μm released about 500 to 1,500 megalospheric juveniles, which possessed two chambers (proloculi and flexostyles) prior to emergence from the parental shell. The presence of gamonts was not shown and was only implied by the occurrence of the agamonts. Since agamonts and schizonts have been found from December to May and since asexual reproduction occurs in spring in Elat, sexual reproduction probably occurs at another time of year (June to December). More detailed studies of this species need to be conducted throughout the year to improve our knowledge of the life cycle of this species.  相似文献   
993.
Xylary branching at the proximal end of a differentiating sidebundle was modified by surgical alteration of the surroundingleaf traces and manipulation of their auxin fluxes. Incisionsthrough one corner trace, with the other pre-existing traceintact, resulting in xylem differentiation in the branch ofthe newly formed side bundle toward only the severed trace.Application of IAA to the cut trace allowed xylem branchingof the new strand in both directions. With sufficient auxinimbalance created by increasing the concentration of the appliedIAA, the new xylem strand branched away from the higher auxinsource. Auxin relations were thus able to regulate the courseof differentiation of vascular strands, but their role in regulatingbranching patterns in intact plants may be questioned. Xylembranched exclusively toward an incised trace only when the auxinflux of the incised trace was virtually eliminated. Phloem andprocambium of the differentiating strand were unaffected bythis treatment. Coleus, vascular differentiation, vascular anatomy, vascular branching, vascular patterns, auxin, auxin balance, node  相似文献   
994.
Specialized predators on polychaetes, fishes, hemichordates or other molluscs, members of the predominantly tropical gastropod genus Conus diversified rapidly during the Miocene to constitute the most species-rich modern marine genus. We used DNA sequence data from mitochondrial and nuclear loci of 76 Conus species to generate species-level phylogenetic hypotheses for this genus and then mapped known diets onto the phylogenies to elucidate the origins and evolutionary histories of different feeding specializations. The results indicate that dramatically new feeding modes arose only a few times, that the most derived feeding modes likely arose in the Miocene, and that much of the known diversity of Conus that was generated during Miocene radiations has survived to the present.  相似文献   
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