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Mutation of a Cuticle Protein Gene BmCPG10 Is Responsible for Silkworm Non-Moulting in the 2nd Instar Mutant

机译:表皮蛋白基因BmCPG10的突变负责家蚕在第二龄突变体中的换羽

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摘要

In the silkworm, metamorphosis and moulting are regulated by ecdysone hormone and juvenile hormone. The subject in the present study is a silkworm mutant that does not moult in the 2nd instar (nm2). Genetic analysis indicated that the nm2 mutation is controlled by a recessive gene and is homozygous lethal. Based on positional cloning, nm2 was located in a region approximately 275 kb on the 5th linkage group by eleven SSR polymorphism markers. In this specific range, according to the transcriptional expression of thirteen genes and cloning, the relative expression level of the BmCPG10 gene that encodes a cuticle protein was lower than the expression level of the wild-type gene. Moreover, this gene’s structure differs from that of the wild-type gene: there is a deletion of 217 bp in its open reading frame, which resulted in a change in the protein it encoded. The BmCPG10 mRNA was detectable throughout silkworm development from the egg to the moth. This mRNA was low in the pre-moulting and moulting stages of each instar but was high in the gluttonous stage and in newly exuviated larvae. The BmCPG10 mRNA showed high expression levels in the epidermis, head and trachea, while the expression levels were low in the midgut, Malpighian tubule, prothoracic gland, haemolymph and ventral nerve cord. The ecdysone titre was determined by ELISA, and the results demonstrated that the ecdysone titre of nm2 larvae was lower than that of the wild-type larvae. The nm2 mutant could be rescued by feeding 20-hydroxyecdysone, cholesterol and 7—dehydrocholesterol (7dC), but the rescued nm2 only developed to the 4th instar and subsequently died. The moulting time of silkworms could be delayed by BmCPG10 RNAi. Thus, we speculated that the mutation of BmCPG10 was responsible for the silkworm mutant that did not moult in the 2nd instar.
机译:在家蚕中,蜕皮激素和幼年激素调节着蜕皮和蜕皮。本研究的对象是不会在第二龄(nm2)蜕皮的蚕突变体。遗传分析表明,nm2突变受隐性基因控制,是纯合的致死性。根据位置克隆,通过11个SSR多态性标记,nm2位于第5 键组的大约275 kb区域。在此特定范围内,根据13个基因的转录表达和克隆,编码表皮蛋白的BmCPG10基因的相对表达水平低于野生型基因的表达水平。此外,该基因的结构与野生型基因的结构不同:其开放阅读框中缺失了217 bp,导致其编码的蛋白质发生了变化。在从卵到蛾的整个蚕发育过程中,均可检测到BmCPG10 mRNA。该mRNA在每个幼虫的换羽前和换羽期低,但在glut阶段和新近灭绝的幼虫中高。 BmCPG10 mRNA在表皮,头部和气管中显示高表达水平,而在中肠,Malpighian小管,胸腺,血淋巴和腹侧神经索中表达水平较低。 ELISA法测定了蜕皮激素的滴度,结果表明,nm2幼虫的蜕皮激素滴度低于野生型幼虫。可以通过喂食20-羟基蜕皮激素,胆固醇和7-脱氢胆固醇(7dC)来拯救nm2突变体,但是被拯救的nm2只发育到第4龄,随后死亡。 BmCPG10 RNAi可延缓家蚕的换羽时间。因此,我们推测BmCPG10突变是造成不蜕皮于第二龄的蚕突变体的原因。

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