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家蚕(鳞翅目:蚕蛾科)中肠重塑期间与变态变化相关的蜕皮激素相关基因的发育表达

Developmental Expression of Ecdysone-Related Genes Associated With Metamorphic Changes During Midgut Remodeling of Silkworm Bombyx mori (Lepidoptera:Bombycidae).

作者信息

Goncu Ebru, Uranlı Ramazan, Selek Gozde, Parlak Osman

机构信息

Department of Biology, Faculty of Science, Ege University, 35100 Bornova, Izmir/Turkey (

出版信息

J Insect Sci. 2016 Sep 12;16(1). doi: 10.1093/jisesa/iew061. Print 2016.

Abstract

Steroid hormone 20-hydroxyecdysone is known as the systemic regulators of insect cells; however, how to impact the fate and function of mature and stem cells is unclear. For the first time, we report ecdysone regulatory cascades in both mature midgut cell and stem cell fractions related to developmental events by using histological, immunohistochemical, biochemical and gene expression analysis methods. Ecdysone receptor-B1 (EcR-B1) and ultraspiracle 1 (USP-1) mRNAs were detected mainly in mature cells during programmed cell death (PCD). Lowered E75A and probably BR-C Z4 in mature cells appear to provide a signal to the initiation of PCD. E74B, E75B and BR-C Z2 seem to be early response genes which are involved in preparatory phase of cell death. It is likely that βFTZ-F1, E74A and BR-C Z1 are probably associated with execution of death. EcR-A and USP2 mRNAs were found in stem cells during remodeling processes but EcR-B1, USP1 and E74B genes imply an important role during initial phase of metamorphic events in stem cells. BHR3 mRNAs were determined abundantly in stem cells suggesting its primary role in differentiation. All of these results showed the determination the cell fate in Bombyx mori (Linnaeus) midgut depends on type of ecdysone receptor isoforms and ecdysone-related transcription factors.

摘要

类固醇激素20-羟基蜕皮酮被认为是昆虫细胞的系统性调节因子;然而,其如何影响成熟细胞和干细胞的命运与功能尚不清楚。我们首次通过组织学、免疫组织化学、生物化学和基因表达分析方法,报道了与发育事件相关的成熟中肠细胞和干细胞组分中的蜕皮激素调节级联反应。蜕皮激素受体-B1(EcR-B1)和超气门蛋白1(USP-1)的mRNA主要在程序性细胞死亡(PCD)期间的成熟细胞中被检测到。成熟细胞中E75A以及可能的BR-C Z4水平降低似乎为PCD的启动提供了信号。E74B、E75B和BR-C Z2似乎是参与细胞死亡准备阶段的早期反应基因。βFTZ-F1、E74A和BR-C Z1可能与死亡的执行有关。在重塑过程中,干细胞中发现了EcR-A和USP2的mRNA,但EcR-B1、USP1和E74B基因在干细胞变态事件的初始阶段发挥着重要作用。在干细胞中大量检测到BHR3的mRNA,表明其在分化中起主要作用。所有这些结果表明,家蚕中肠细胞命运的决定取决于蜕皮激素受体亚型和蜕皮激素相关转录因子的类型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a60/5019025/0f02acd0a97f/iew061f1p.jpg

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