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昆虫中一个可识别的肽能神经元的动态变化与变态发育

Dynamics and metamorphosis of an identifiable peptidergic neuron in an insect.

作者信息

Riddiford L M, Hewes R S, Truman J W

机构信息

Department of Zoology, University of Washington, Seattle 98195.

出版信息

J Neurobiol. 1994 Jul;25(7):819-30. doi: 10.1002/neu.480250707.

DOI:10.1002/neu.480250707
PMID:8089659
Abstract

Eclosion hormone (EH) is a 7000 Da peptide that triggers ecdysis behavior in insects. In the moth, Manduca sexta, EH is found in two pairs of ventromedial (VM) cells in the brain which send their axons down the ventral nerve cord to a neurohemal site in the proctodeal nerve in the larva and pupa. During adult development, these cells send axon collaterals to the corpora cardiaca where they form a new release site used for adult eclosion. Studies of bioassayable peptide during the 5th larval instar and the larval-pupal transformation revealed that after depletion at ecdysis, the VM cells showed a transient increase in EH found in their cell bodies and axons. By contrast, their terminals in the proctodeal nerve showed a gradual accumulation of peptide followed by a release of over 90% of the stored material at pupal ecdysis. In situ hybridization analysis on whole mounts of the brains showed that the VM cells always contained EH mRNA with increased accumulation during the larval and pupal molting periods with a slight decline just before ecdysis. High levels of EH mRNA were found in brains of diapausing pupae. During the first two-thirds of adult development, mRNA accumulated to high levels, then slowly declined until ecdysis. EH mRNA levels then increased and remained at intermediate levels up to 3 days after adult eclosion. At no time was EH mRNA found in the lateral neurosecretory cell cluster previously reported to produce EH for adult eclosion.

摘要

羽化激素(EH)是一种7000道尔顿的肽,可触发昆虫的蜕皮行为。在烟草天蛾中,羽化激素存在于大脑中的两对腹内侧(VM)细胞中,这些细胞的轴突沿着腹神经索向下延伸至幼虫和蛹期直肠神经中的一个神经血器官部位。在成虫发育过程中,这些细胞会发出轴突侧支至心侧体,在那里形成一个用于成虫羽化的新释放位点。对五龄幼虫和幼虫-蛹转变期间可进行生物测定的肽的研究表明,在蜕皮时耗尽后,VM细胞的胞体和轴突中发现的羽化激素会短暂增加。相比之下,它们在直肠神经中的终末则显示肽逐渐积累,随后在蛹蜕皮时释放超过90%的储存物质。对整个大脑进行的原位杂交分析表明,VM细胞始终含有羽化激素mRNA,在幼虫和蛹蜕皮期间积累增加,在蜕皮前略有下降。在滞育蛹的大脑中发现了高水平的羽化激素mRNA。在成虫发育的前三分之二时间里,mRNA积累到高水平,然后缓慢下降直至蜕皮。羽化激素mRNA水平随后升高,并在成虫羽化后3天内保持在中等水平。此前报道为成虫羽化产生羽化激素的外侧神经分泌细胞簇中从未发现羽化激素mRNA。

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