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家蚕脂肪体在持续高温处理后的转录组分析显示出性别差异。

Transcriptome analysis of the Bombyx mori fat body after constant high temperature treatment shows differences between the sexes.

作者信息

Wang Hua, Fang Yan, Wang Lipeng, Zhu Wenjuan, Ji Haipeng, Wang Haiying, Xu Shiqing, Sima Yanghu

机构信息

Department of Applied Biology, School of Biology and Basic Medical Sciences, Medical College of Soochow University, Suzhou, 215123, China.

出版信息

Mol Biol Rep. 2014 Sep;41(9):6039-49. doi: 10.1007/s11033-014-3481-2. Epub 2014 Jun 28.

Abstract

Ambient temperature plays a large role in insect growth, development and even their distribution. The elucidation of the associated molecular mechanism that underlies the effect of constant high temperature will enables us to further understand the stress responses. We constructed four digital gene expression libraries from the fat body of female and male Bombyx mori. Differential gene expression was analyzed after constant high temperature treatment. The results showed that there were significant changes to the gene expression in the fat body after heat treatment, especially in binding, catalytic, cellular and metabolic processes. Constant high temperature may induce more traditional cryoprotectants, such as glycerol, glycogen, sorbitol and lipids, to protect cells from damage, and induce heat oxidative stress in conjunction with the heat shock proteins. The data also indicated a difference between males and females. The heat shock protein-related genes were up-regulated in both sexes but the expression of Hsp25.4 and DnaJ5 were down-regulated in the male fat body of B. mori. This is the first report of such a result. Constant high temperature also affected the expression of other functional genes and differences were observed between male and female fat bodies in the expression of RPS2, RPL37A and MREL. These findings provide abundant data on the effect of high temperature on insects at the molecular level. The data will also be beneficial to the study of differences between the sexes, manifested in variations in gene expression under high temperature.

摘要

环境温度在昆虫的生长、发育乃至分布方面起着重要作用。阐明持续高温影响的相关分子机制将有助于我们进一步了解应激反应。我们从雌雄家蚕的脂肪体构建了四个数字基因表达文库。在持续高温处理后分析差异基因表达。结果表明,热处理后脂肪体中的基因表达有显著变化,尤其是在结合、催化、细胞和代谢过程中。持续高温可能诱导更多传统的抗冻剂,如甘油、糖原、山梨醇和脂质,以保护细胞免受损伤,并与热休克蛋白一起诱导热氧化应激。数据还表明了雌雄之间的差异。热休克蛋白相关基因在两性中均上调,但家蚕雄性脂肪体中Hsp25.4和DnaJ5的表达下调。这是首次报道这样的结果。持续高温还影响其他功能基因的表达,并且在核糖体蛋白S2(RPS2)、核糖体蛋白L37A(RPL37A)和MREL的表达上,雌雄脂肪体之间存在差异。这些发现提供了关于高温对昆虫分子水平影响的丰富数据。这些数据也将有利于研究高温下基因表达变化所表现出的性别差异。

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