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在蛹发育过程中大规模鉴定差异表达基因揭示溶质载体基因对二化螟蛹色素沉着至关重要。

Large-scale identification of differentially expressed genes during pupa development reveals solute carrier gene is essential for pupal pigmentation in Chilo suppressalis.

作者信息

Sun Yang, Huang Shuijin, Wang Shuping, Guo Dianhao, Ge Chang, Xiao Huamei, Jie Wencai, Yang Qiupu, Teng Xiaolu, Li Fei

机构信息

Department of Entomology, Nanjing Agricultural University, Nanjing 210095, China.

Institute of Plant Protection, Jiangxi Academy of Agricultural Science, Nanchang 330200, China.

出版信息

J Insect Physiol. 2017 Apr;98:117-125. doi: 10.1016/j.jinsphys.2016.12.007. Epub 2016 Dec 29.

Abstract

Insects undergo metamorphosis, involving an abrupt change in body structure through cell growth and differentiation. Rice stem stripped borer (SSB), Chilo suppressalis, is one of the most destructive rice pests. However, little is known about the regulation mechanism of metamorphosis development in this notorious insect pest. Here, we studied the expression of 22,197 SSB genes at seven time points during pupa development with a customized microarray, identifying 622 differentially expressed genes (DEG) during pupa development. Gene ontology (GO) analysis of these DEGs indicated that the genes related to substance metabolism were highly expressed in the early pupa, which participate in the physiological processes of larval tissue disintegration at these stages. In comparison, highly expressed genes in the late pupal stages were mainly associated with substance biosynthesis, consistent with adult organ formation at these stages. There were 27 solute carrier (SLC) genes that were highly expressed during pupa development. We knocked down SLC22A3 at the prepupal stage, demonstrating that silencing SLC22A3 induced a deficiency in pupa stiffness and pigmentation. The RNAi-treated individuals had white and soft pupa, suggesting that this gene has an essential role in pupal development.

摘要

昆虫会经历变态发育,通过细胞生长和分化使身体结构发生突然变化。二化螟(Chilo suppressalis)是最具破坏性的水稻害虫之一。然而,对于这种臭名昭著的害虫变态发育的调控机制却知之甚少。在此,我们使用定制的微阵列研究了二化螟在蛹发育的七个时间点上22197个基因的表达情况,鉴定出蛹发育过程中的622个差异表达基因(DEG)。对这些差异表达基因的基因本体(GO)分析表明,与物质代谢相关的基因在蛹前期高表达,这些基因参与了幼虫组织在这些阶段的解体生理过程。相比之下,蛹后期高表达的基因主要与物质生物合成相关,这与这些阶段成虫器官的形成一致。有27个溶质载体(SLC)基因在蛹发育过程中高表达。我们在预蛹期敲低了SLC22A3,结果表明沉默SLC22A3会导致蛹的硬度和色素沉着不足。经RNA干扰处理的个体蛹呈白色且柔软,这表明该基因在蛹发育中起着至关重要的作用。

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