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Characteristics of Halloween genes and RNA interference‐mediated functional analysis of LmCYP307a2 in Locusta migratoria

机译:LmCYP307a2在迁徙蝗虫中的万圣节基因特征及RNA干扰介导的功能分析

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摘要

Abstract Halloween genes are involved in the biosynthesis of the molting hormone, which plays a key role in insect ecdysis, development, metamorphosis, and reproduction. Our previous work identified five Halloween genes from Locusta migratoria, but their functions are currently unknown. In this study, the sequences of these five Halloween genes were analyzed and characterized. LmCYP307a2, LmCYP306a1, LmCYP302a1, and LmCYP315a1 were primarily expressed in the prothoracic glands, while LmCYP314a1 was universally expressed in peripheral tissues, especially in the ovaries and Malpighian tubules. All five Halloween genes were mainly expressed from the 5th to the 7th d in 5th‐instar nymphs. RNA interference (RNAi) silencing of LmCYP307a2 resulted in severe molting delays and molting failure, which could be rescued by supplementary 20‐hydroxyecdysone. A hematoxylin and eosin staining analysis suggested that the RNAi of LmCYP307a2 inhibited the ecdysis process by inhibiting the apolysis and degradation of the old cuticle, and by promoting the synthesis of a new cuticle. Quantitative reverse transcription polymerase chain reaction results showed that the expressions of LmE74, LmCht5, and LmCht10 were dramatically down‐regulated, while that of LmChsI was substantially up‐regulated, after knockdown of LmCYP307a2. The results suggest that LmCYP307a2 is related to the molt process via regulation of chitin synthesis and degradation.
机译:摘要 万圣节基因参与蜕皮激素的生物合成,在昆虫蜕皮、发育、和繁殖中起关键作用。我们之前的工作从蝗虫迁徙中鉴定出五个万圣节基因,但它们的功能目前尚不清楚。在这项研究中,对这五个万圣节基因的序列进行了分析和表征。LmCYP307a2、LmCYP306a1、LmCYP302a1 和 LmCYP315a1 主要在前胸腺中表达,而 LmCYP314a1 普遍在外周组织中表达,尤其是在卵巢和马尔皮吉亚小管中。5个万圣节基因主要在5龄若虫中5-7 d表达。LmCYP307a2 的 RNA 干扰 (RNAi) 沉默导致严重的蜕皮延迟和蜕皮失败,这可以通过补充 20-羟基蜕皮激素来挽救。苏木精和伊红染色分析表明,LmCYP307a2的RNAi通过抑制旧角质层的分解和降解,促进新角质层的合成来抑制蜕皮过程。定量逆转录聚合酶链反应结果显示,敲低LmCYP307a2后,LmE74、LmCht5和LmCht10的表达显著下调,而LmChsI的表达显著上调。结果表明,LmCYP307a2通过调节几丁质的合成和降解与蜕皮过程有关。

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