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首页> 外文期刊>Frontiers in Physiology >Identification of COP9 Signalosome Subunit Genes in Bactrocera dorsalis and Functional Analysis of csn3 in Female Fecundity
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Identification of COP9 Signalosome Subunit Genes in Bactrocera dorsalis and Functional Analysis of csn3 in Female Fecundity

机译:女性生殖力中 Bactrocera dorsali s的COP9信号体亚基基因的鉴定和 csn3 的功能分析

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The COP9 signalosome (CSN) is an evolutionarily conserved multi-subunit complex that plays crucial roles in regulating various biological processes in plants, mammals, and the model insect Drosophila . However, it is poorly studied in non-model insects, whereas its role in fecundity remains unclear. In this study, all nine CSN subunits were identified and characterized in Bactrocera dorsali s, a major invasive agricultural tephritid pest. Each subunit gene, except for csn9x1 , encoded a protein containing a PCI/PINT or MPN domain. Phylogenetic analysis revealed that all CSN subunits were individually clustered into a specific branch with their counterparts from other species. All CSN subunit genes were expressed in all detected developmental stages and tissues. Most subunits, except for csn8 and csn9x1 , showed the highest expression level in the eggs. Notably, csn 3 and csn 5 were significantly enriched in mature female adults. Further analysis of csn3 revealed that it was enriched in the ovary and that its ovarian expression level gradually increased with the reproductive development process. RNAi-based knockdown of csn3 in female adults significantly reduced the number of laid eggs. The expression level of EcRB1 and USP , which encode the heterodimer receptors of 20E, and vitellogenin transcripts ( Vg1 and Vg2 ) was suppressed in the fat body of female adults injected with csn3 dsRNA. Decreased level of Vg1 protein was confirmed by means of Western blots. These data indicate that csn3 is involved in female reproduction by regulating 20E signaling and Vg synthesis. Overall, our study may facilitate the development of new strategies for controlling B. dorsali s since it provides insights into the evolution and expression patterns of all CSN subunit genes as well as the critical roles of csn3 in female fecundity.
机译:COP9信号小体(CSN)是一种进化保守的多亚基复合物,在调节植物,哺乳动物和模型昆虫果蝇的各种生物过程中起着至关重要的作用。然而,它在非模型昆虫中研究很少,而其在繁殖力中的作用仍不清楚。在这项研究中,所有的9个CSN亚基均已在Bactrocera dorsali s中鉴定并鉴定,该细菌是一种主要的入侵性农业病虫害。除csn9x1以外,每个亚基基因编码的蛋白质均包含PCI / PINT或MPN域。系统发育分析表明,所有CSN亚基均与其他物种的对等体一起聚集成特定分支。所有CSN亚基基因均在所有检测到的发育阶段和组织中表达。除csn8和csn9x1以外,大多数亚基在卵中表达水平最高。值得注意的是,csn 3和csn 5在成年女性中显着富集。对csn3的进一步分析表明,它在卵巢中富集,并且其卵巢表达水平随着生殖发育过程逐渐增加。在成年雌性动物中,基于RNAi的csn3基因敲低显着减少了产卵数。注射csn3 dsRNA的成年女性的脂肪体内,编码20E异二聚体受体的EcRB1和USP的表达水平以及卵黄蛋白原转录物(Vg1和Vg2)受到抑制。通过蛋白质印迹证实Vg1蛋白水平降低。这些数据表明csn3通过调节20E信号传导和Vg合成参与了雌性生殖。总体而言,我们的研究可能有助于控制背背双歧杆菌的新策略的开发,因为它提供了对所有CSN亚基基因的进化和表达模式以及csn3在女性生殖力中的关键作用的见识。

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