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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >BTB domain-containing protein 6 is involved in the development of locust wings during the nymph to adult transition
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BTB domain-containing protein 6 is involved in the development of locust wings during the nymph to adult transition

机译:含有BTB域域的蛋白质6参与若虫期间蝗虫翅膀的发展成人过渡

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摘要

The development of insect wings is a complex process controlled by a series of genes, whereas the mechanism of wing development of orthoptera insects is less frequently reported. In the present study, a BTB domain-containing protein 6 (LmBTBD6) gene was identified from Locusta migratoria. Its encoded protein belongs to the BTB-BACK-PHR subfamily, and is highly conserved among insect species. LmB113D6 was mainly expressed in the wing pads and showed high expression on day 7 of fifth-instar nymphs. LmBTBD6 responded to induction by 20-Hydroxyecdysone (20E) in vivo, and its expression was significantly suppressed after knocking down the ecdysone receptor gene LmEcR and nuclear receptor gene LmHR39. Deficiency of LmBTBD6 did not show visible phenotype in the wing pads transition from nymph to nymph of L. migralotia, but caused wing defects in the transition from nymph to adult. After silencing of LmBTBD6, the transcription of wing development-related genes (LmSal411, LmSal468, and LmHth) and the wing-specific cuticle protein genes (LmACP7 and LmACP8) of L. migratoria were significantly suppressed. Thus, LmBTBD6 that regulated by the LmEcR-LmHR39-mediated 20E signaling pathway is involved in wing development during the nymph to adult transition by regulating the expression of wing development-related genes and wing-specific cuticle protein genes. (C) 2019 Elsevier B.V. All rights reserved.
机译:昆虫翅膀的发展是由一系列基因控制的复杂过程,而果实昆虫的机翼发展机制较少报道。在本研究中,鉴定了含有BTB域的蛋白质6(LMBTBD6)基因,从Locusta Migraria鉴定。其编码的蛋白质属于BTB-Back-Phr亚家族,并且在昆虫物种中具有高度保守。 LMB113D6主要在翼垫中表达,并在第五次幼虫的第7天显示高表达。 LMBTBD6响应于20-羟基粥样酮(20e)的诱导体内,并且在击落蜕皮受体基因LMEC和核受体基因LMHR39后显着抑制其表达。 LMBTBD6的缺乏在翼片从若虫到L.Migralotia的若虫中没有显示出可见表型,但在从若虫到成年人的过渡中导致翼缺陷。在LMBTBD6沉默后,显着抑制了LMBTBD6的转录(LMSA1411,LMHTH,LMHTH)和L.特异性角质蛋白基因(LMACP7和LMACP8)。因此,由LMECR-LMHR39介导的20E信号传导途径调节的LMBTBD6通过调节翼发育相关基因和翼特异性角质基因基因的表达,在若虫期间涉及翼状发育。 (c)2019 Elsevier B.v.保留所有权利。

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