首页> 外文期刊>Insect Biochemistry and Molecular Biology >Translucent larval integument and flaccid paralysis caused by genome editing in a gene governing molybdenum cofactor biosynthesis in Bombyx mori
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Translucent larval integument and flaccid paralysis caused by genome editing in a gene governing molybdenum cofactor biosynthesis in Bombyx mori

机译:半透明幼虫内容和松弛瘫由基因编辑在Bombyx Mori中的钼Cofactor生物合成中的基因编辑引起的

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摘要

Translucency of the larval integument in Bombyx mori is caused by a lack of uric acid in the epidermis. Hime'nichi translucent (ohi) is a unique mutation causing intermediate translucency of the larval integument and male-specific flaccid paralysis. To determine the gene associated with the ohi mutation, the ohi locus was mapped to a 400-kb region containing 29 predicted genes. Among the genes in this region, we focused on Bombyx homolog of mammalian Gephyrin (BmGphn), which regulates molybdenum cofactor (MoCo) biosynthesis, because MoCo is indispensable for the activity of xanthine dehydrogenase (XDH), a key enzyme in uric acid biosynthesis. The translucent integument of ohi larvae turned opaque after injection of bovine xanthine oxidase, which is a mammalian equivalent to XDH, indicating that XDH activity is defective in ohi larvae. RT-PCR and sequencing analysis showed that (i) in ohi larvae, expression of the BmGphn gene was repressed in the fat body where uric acid is synthesized, and (ii) there was no amino acid substitution in the ohi mutant allele. Finally, we obtained BmGphn knockout alleles (hereafter denoted as BmGphn(Delta)) by using CRISPR/Cas9. The resulting ohi/ BmGphn(Delta) larvae had translucent integuments, demonstrating that BmGphn is the gene responsible for the ohi phenotype. Our results show that repressed expression of BmGphn is a causative factor for the defective MoCo biosynthesis and XDH activity observed in ohi larvae. Interestingly, all male BmGphn(Delta) homozygotes died before pupation and showed a flaccid paralysis phenotype. The genetic and physiological mechanisms underlying this flaccid paralysis phenotype are also discussed.
机译:Bombyx Mori中幼虫Integument的透明度是由于表皮中缺乏尿酸引起的。 Hime'nichi半透明(OHI)是一种独特的突变,导致幼虫和男性特异性弛缓性瘫痪的中间半透明。为了确定与OHI突变相关的基因,OCHI基因座被映射到含有29个预测基因的400kb区域。在该地区的基因中,我们专注于哺乳动物Gephylin(BMGPHN)的BOMBYX同源物,其调节钼辅因子(MOCO)生物合成,因为MOCO对于紫红素脱氢酶(XDH)的活性是必不可少的,尿酸生物合成中的关键酶。在注射牛黄嘌呤氧化酶后,OHI幼虫的半透明产物转向不透明,这是哺乳动物等同于XDH的哺乳动物,表明XDH活性在OHI幼虫中有缺陷。 RT-PCR和测序分析显示(I)在OHI幼虫中,在合成尿酸的脂肪体中抑制了BMGPHN基因的表达,并且(ii)在OHI突变等位基因中没有氨基酸取代。最后,我们通过使用CRISPR / CAS获得BMGPHN淘汰等位基因(以下,以下表示为BMGPHN(DELTA))。得到的OHI / BMGPHN(DELTA)幼虫具有半透明的整体,证明BMGPH是负责OHI表型的基因。我们的研究结果表明,BMGPHN的压抑表达是OHI幼虫观察到缺陷的MOCO生物合成和XDH活性的致病因素。有趣的是,所有雄性BMGPHN(DELTA)纯合子在蛹化之前死亡并显示出弛缓性瘫痪表型。还讨论了这种弛缓性瘫痪表型的基因和生理机制。

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