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MODIFICATIONS ULTRASTRUCTURALES DES CELLULES SÉCRÉTRICES DE LA GLANDE PROTHORACIQUE DE VERS À SOIE AU COURS DES DEUX DERNIERS ÂGES LARVAIRES

机译:最近两个幼体期家蚕前胸腺分泌细胞的超微结构修饰

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摘要

Ultrastructural study of the prothoracic glands of silkworms (Antheraea pernyi and Bombyx mori) at the last two larval stages has shown that the essential modifications which take place during each intermolt affect the chondriome of secretory cells. A description is given of the differentiation of macromitochondria from typical mitochondria by a general swelling, a clearing of the matrix, and the formation of a complex tubular network. The hypothesis of fixation or anaesthesia artifacts has been dismissed because of the persistence of these transformations after different fixations and because of the existence of numerous intermediary stages between these two types of chondriosomes which imply the progressiveness of differentiation. The cytochemical demonstration of mitochondrial DNA fibers suggests that the genetic information, probably present in this type of nucleic acid, controls the differentiation and the specific metabolic activity of these organelles. The frequent relationships observed in Antheraea between the tubules of agranular reticulum and the macromitochondria which are reminiscent of the vacuoles-mitochondria associations of the adrenal cortex, may be related to the transfer of cholesterol and other precursors of steroidogenesis. In the last stages, the macromitochondria become transformed into vacuoles by a disappearance of the tubular network. The correlation revealed between mitochondrial transformations and the cyclical release of ecdysone (65) leads to the conclusion that a prominent fraction of chondriosomes is involved, in relation to the agranular reticulum, in the elaboration of steroid hormones such as ecdysone.
机译:在最后两个幼虫期对蚕(An蚕和桑蚕)的胸腺进行的超微结构研究表明,在每次蜕皮期间发生的必要修饰都会影响分泌细胞的软骨瘤。给出了通过一般的肿胀,基质的清除以及复杂的管状网络的形成来区分线粒体与典型线粒体的描述。固定或麻醉伪影的假设已被驳回,因为在不同的固定后这些转换的持续存在,以及由于这两种类型的软骨体之间存在许多中间阶段,这暗示着分化的进行。线粒体DNA纤维的细胞化学显示表明,这种核酸中可能存在的遗传信息控制着这些细胞器的分化和特定的代谢活性。在花药中观察到的网状小管和大线粒体之间的频繁关系让人联想到肾上腺皮质的液泡-线粒体缔合,这可能与胆固醇的转移和类固醇生成的其他前体有关。在最后阶段,由于线状网络的消失,线粒体变成了液泡。线粒体转化与蜕皮激素的周期性释放之间的相关性揭示[65],得出的结论是,与粒状网状结构有关的软骨体的主要部分参与了类固醇激素(如蜕皮激素)的加工。

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