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Body Shape and Coloration of Silkworm Larvae Are Influenced by a Novel Cuticular Protein

机译:蚕幼虫的体形和着色受一种新型表皮蛋白的影响

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摘要

The genetic basis of body shape and coloration patterns on caterpillars is often assumed to be regulated separately, but it is possible that common molecules affect both types of trait simultaneously. Here we examine the genetic basis of a spontaneous cuticle defect in silkworm, where larvae exhibit a bamboo-like body shape and decreased pigmentation. We performed linkage mapping and mutation screening to determine the gene product that affects body shape and coloration simultaneously. In these mutant larvae we identified a null mutation in BmorCPH24, a gene encoding a cuticular protein with low complexity sequence. Spatiotemporal expression analyses showed that BmorCPH24 is expressed in the larval epidermis postecdysis. RNAi-mediated knockdown and CRISPR/Cas9-mediated knockout of BmorCPH24 produced the abnormal body shape and the inhibited pigment typical of the mutant phenotype. In addition, our results showed that BmorCPH24 may be involved in the synthesis of endocuticle and its disruption-induced apoptosis of epidermal cells that accompanied the reduced expression of R&R-type larval cuticle protein genes and pigmentation gene Wnt1. Strikingly, BmorCPH24, a fast-evolving gene, has evolved a new function responsible for the assembly of silkworm larval cuticle and has evolved to be an indispensable factor maintaining the larval body shape and its coloration pattern. This is the first study to identify a molecule whose pleiotropic function affects the development of body shape and color patterns in insect larvae.
机译:毛虫的体形和颜色模式的遗传基础通常被认为是分开调节的,但是常见分子可能同时影响两种类型的性状。在这里,我们检查了家蚕自发角质层缺损的遗传基础,其中幼虫表现出竹子状的体形并减少了色素沉着。我们进行了连锁作图和突变筛选,以确定同时影响体形和肤色的基因产物。在这些突变幼虫中,我们鉴定了BmorCPH24中的无效突变,该基因编码具有低复杂度序列的表皮蛋白。时空表达分析表明,BmorCPH24在幼虫表皮蜕皮病后表达。 RNAi介导的敲除和CRISPR / Cas9介导的BmorCPH24的敲除产生异常的体型和突变表型典型的受抑制色素。此外,我们的研究结果表明BmorCPH24可能参与表皮细胞的合成及其破坏诱导的表皮细胞凋亡,并伴随R&R型幼虫表皮蛋白基因和色素沉着基因Wnt1的表达降低。引人注目的是,快速进化的基因BmorCPH24已进化出负责蚕幼虫表皮组装的新功能,并已成为维持幼虫体形及其着色模式的必不可少的因素。这是第一个鉴定其多效功能影响昆虫幼虫体形和颜色模式发展的分子的研究。

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