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颗粒头信号调节德国蜚蠊的上皮发育和蜕皮。

Grainy head signaling regulates epithelium development and ecdysis in Blattella germanica.

机构信息

Guangdong Provincial Key Laboratory of Insect Developmental Biology and Applied Technology, Institute of Insect Science and Technology, School of Life Sciences, South China Normal University, Guangzhou, China.

Guangmeiyuan R&D Center, Guangdong Provincial Key Laboratory of Insect Developmental Biology and Applied Technology, South China Normal University, Meizhou, Guangdong Province, China.

出版信息

Insect Sci. 2021 Apr;28(2):485-494. doi: 10.1111/1744-7917.12780. Epub 2020 Jul 20.

Abstract

The transcription factor grainy head (Grh) functions in the protection of the epithelium against the external environment by generating strongly adhesive layers, and this function is conserved in vertebrates and invertebrates. In Drosophila, the top model for holometabolous insects, Grh is necessary during embryonic development, epidermal differentiation, central nervous system specification and epithelial repair. However, the function of this gene in hemimetabolous insect epithelia remains unknown. To examine the function of Grh signaling in regulating epithelium development in Hemimetabola, we focused on the Blattella germanica epidermal layer using a gene knockdown strategy. The spatiotemporal expression pattern of BgGrh was detected, and knockdown of BgGrh and BgCad96ca, which provide positive feedback to BgGrh, caused severe defects in new epithelium development and impeded the molting process required to discard the old integument. Knockdown of the expression of BgGrh and BgCad96ca caused increased expression of chitin synthase gene (BgCHS1) and chitinase gene (BgCht5), the upregulations of which should be mediated by the higher level of hormone receptor 3 (BgHr3) gene. In conclusion, epithelium development is regulated by Grh signaling, which might represent a potential target for the control of urban pest cockroaches.

摘要

转录因子颗粒头 (Grh) 通过生成强粘性层来保护上皮组织免受外界环境的影响,这一功能在脊椎动物和无脊椎动物中都得到了保守。在完全变态昆虫的顶级模型果蝇中,Grh 在胚胎发育、表皮分化、中枢神经系统特化和上皮修复过程中都是必需的。然而,这个基因在半变态昆虫的上皮组织中的功能仍然未知。为了研究 Grh 信号在调控半变态昆虫上皮组织发育中的作用,我们使用基因敲低策略聚焦于德国小蠊的表皮层。检测了 BgGrh 的时空表达模式,并且敲低 BgGrh 和 BgCad96ca(为 BgGrh 提供正反馈)导致新表皮发育严重缺陷,并阻碍了蜕皮过程,而蜕皮过程是丢弃旧表皮所必需的。BgGrh 和 BgCad96ca 的表达敲低导致几丁质合成酶基因 (BgCHS1) 和几丁质酶基因 (BgCht5) 的表达增加,这些上调应该是由更高水平的激素受体 3 (BgHr3) 基因介导的。总之,上皮组织的发育受到 Grh 信号的调控,这可能代表了控制城市害虫蟑螂的一个潜在目标。

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