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首页> 外文期刊>BMC Evolutionary Biology >The small heat shock protein (sHSP) genes in the silkworm, Bombyx mori, and comparative analysis with other insect sHSP genes
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The small heat shock protein (sHSP) genes in the silkworm, Bombyx mori, and comparative analysis with other insect sHSP genes

机译:家蚕中的小热激蛋白(sHSP)基因以及与其他昆虫sHSP基因的比较分析

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Background Small heat shock proteins (sHSPs) are products of heat shock response and of other stress responses, and ubiquitous in all three domains of life, archaea, bacteria, and eukarya. They mainly function as molecular chaperones to protect proteins from being denatured in extreme conditions. Study on insect sHSPs could provide some insights into evolution of insects that have adapted to diverse niches in the world. Results Taking advantage of the newly assembled genome sequence, we performed a genome-wide analysis of the candidate sHSP genes in the silkworm, Bombyx mori. Based on known silkworm sHSP sequences, we identified 16 silkworm sHSP genes. Most of them are distributed on two silkworm chromosomes 5 and 27, respectively. 15 of 16 silkworm sHSPs have expression evidence. The comparative analysis of insect sHSPs from B. mori, Drosophila melanogaster, Apis mellifera, Tribolium castaneum, and Anopheles gambiae revealed that there is only one orthologous cluster whereas remaining clusters are species-specific on the phylogenetic tree. This suggested that most of sHSPs might have diverged in function across insects investigated. In addition, the data presented in this study also revealed that sHSPs in the insect orthologous cluster are highly conserved in both sequence and expression pattern. In sum, insect sHSPs show a completely different evolutionary pattern from that found in vertebrate sHSPs. Conclusion B. mori has the largest number of insect sHSP genes characterized to date, including 16 genes. The inference that most species-specific sHSPs might have diverged in function across insects investigated will help us understand the adaptability of these insects to diverse environments.
机译:背景技术小型热激蛋白(sHSP)是热激反应和其他应激反应的产物,在生命,古细菌,细菌和真核生物的所有三个领域中普遍存在。它们主要起分子伴侣的作用,以保护蛋白质在极端条件下不被变性。对昆虫sHSPs的研究可以提供一些洞见,以了解已适应世界不同生态位的昆虫的进化。结果利用新组装的基因组序列,我们对家蚕Bombyx mori中的候选sHSP基因进行了全基因组分析。基于已知的蚕sHSP序列,我们鉴定了16个蚕sHSP基因。它们中的大多数分别分布在两个蚕染色体5和27上。 16个家蚕sHSP中有15个具有表达证据。对桑蚕,果蝇,蜜蜂,灰锥虫和冈比亚按蚊的昆虫sHSP的比较分析表明,在系统发育树上只有一个直系同源簇,而其余簇是物种特异性的。这表明大多数sHSPs可能在所调查的昆虫之间功能不同。此外,本研究提供的数据还表明,昆虫直系同源簇中的sHSPs在序列和表达模式上均高度保守。总之,昆虫sHSPs与脊椎动物sHSPs具有完全不同的进化模式。结论迄今为止,家蚕中的昆虫sHSP基因数量最多,包括16个基因。大多数特定物种的sHSP可能在所调查的昆虫之间功能上有所差异,这一推论将有助于我们了解这些昆虫对各种环境的适应性。

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