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在丝腺中异位过表达Broad Complex()抑制了家蚕丝素基因的表达。

Transgenic Ectopic Overexpression of Broad Complex () in the Silk Gland Inhibits the Expression of Silk Fibroin Genes of .

作者信息

Cong Jiangshan, Tao Cuicui, Zhang Xuan, Zhang Hui, Cheng Tingcai, Liu Chun

机构信息

State Key Laboratory of Silkworm Genome Biology, Southwest University, Chongqing 400716, China.

出版信息

Insects. 2020 Jun 16;11(6):374. doi: 10.3390/insects11060374.

Abstract

silk protein genes are strictly turned on and off in different developmental stages under the hormone periodically change. The broad complex () is a transcription factor mediating 20-hydroxyecdysone action, which plays important roles during metamorphosis. Here, we observed that two isoforms of ( and ) exhibited contrasting expression patterns with fibroin genes (, and ) in the posterior silk gland (PSG), suggesting that BmBrC may negatively regulate fibroin genes. Transgenic lines were constructed to ectopically overexpress in the PSG. The silk protein genes in the transgenic line were decreased to almost half of that in the wild type. The silk yield was decreased significantly. In addition, the expression levels of regulatory factors ( and ) response to juvenile hormone (JH) signal were inhibited significantly. Then exogenous JH in the overexpressed lines can inhibit the expression of and activate the expression of silk protein genes and restore the silk yield to the level of the wild type. These results indicated that BmBrC may inhibit fibroin genes by repressing the JH signal pathway, which would assist in deciphering the comprehensive regulation mechanism of silk protein genes.

摘要

在激素周期性变化的情况下,丝蛋白基因在不同发育阶段严格地开启和关闭。泛素连接酶复合体(Broad complex,BrC)是一种介导20-羟基蜕皮激素作用的转录因子,在变态发育过程中发挥重要作用。在此,我们观察到BrC的两种异构体(BmBrC-Z1和BmBrC-Z2)在后部丝腺(PSG)中与丝素蛋白基因(fib-H、fib-L和P25)呈现出相反的表达模式,这表明BmBrC可能对丝素蛋白基因起负调控作用。构建了转基因品系,使其在PSG中异位过表达BmBrC。转基因品系中的丝蛋白基因减少到野生型的近一半。蚕丝产量显著下降。此外,对保幼激素(JH)信号作出反应的调控因子(Kr-h1和Imp-L2)的表达水平也受到显著抑制。然后,在过表达BmBrC的品系中添加外源JH可以抑制BmBrC的表达并激活丝蛋白基因的表达,使蚕丝产量恢复到野生型水平。这些结果表明,BmBrC可能通过抑制JH信号通路来抑制丝素蛋白基因,这将有助于阐明丝蛋白基因的综合调控机制。

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