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INDUCTION OF METAMORPHOSIS IN LARVAE OF A SPONGE

机译:海绵幼虫体内转氨酶的诱导

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Elevated exogenous KCl and CsCl are effective artificial metamorphic triggers for many, but not all, invertebrate larvae. Neither taxonomic nor functional patterns in their effectiveness, however, are apparent. In our experiments, elevated exogenous KCI promoted metamorphosis of larvae of the demosponge Aplysilla sp., but only when applied simultaneously with a biofilmed artificial substratum. Although the presence of this artificial substratum alone significantly enhanced settlement over seawater controls, its effectiveness was further augmented significantly in the presence of elevated KCl, indicating a synergistic interaction. Exposure of larvae to a 2-min pulse of 30 mM KCl promoted metamorphosis as effectively as continuous exposure to 30 mM KCl. Moreover, 30 mM CsCl proved an effective trigger of metamorphosis both in the absence and presence of a biofilmed substratum. As with KCl, the CsCl data indicate the presence of a synergistic interaction between CsCl and the biofilmed substratum. This report provides preliminary insights into the induction of settlement and metamorphosis of sponges, metazoans which lack established sensory and neuronal elements, and it permits comparison with responses of eumetazoans. [References: 49]
机译:升高的外源性KCl和CsCl是许多但不是全部无脊椎动物幼虫的有效人工变态触发因素。然而,分类学或功能模式的有效性均不明显。在我们的实验中,升高的外源性KCI促进了海绵体Aplysilla sp。的幼虫变态,但仅当与生物膜人工基质同时使用时才如此。尽管单独存在该人造基质比海水控制显着增强了沉降,但在存在较高的KCl的情况下,其有效性进一步提高,表明存在协同作用。与连续暴露于30 mM KCl一样,将幼虫暴露于30 mM KCl的2分钟脉冲下也能促进变态。此外,无论是否存在生物被膜基质,30 mM CsCl均被证明是有效的引发变态的触发因素。与氯化钾一样,氯化铯数据表明氯化铯与生物被膜基质之间存在协同相互作用。该报告提供了对海绵的沉降和变态的诱导的初步见解,这些海绵,后生动物缺乏确定的感觉和神经元,并且可以与杜鹃花的反应进行比较。 [参考:49]

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