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蚜虫组织蛋白酶B的大基因家族扩张及可变选择压力

Large gene family expansion and variable selective pressures for cathepsin B in aphids.

作者信息

Rispe Claude, Kutsukake Mayako, Doublet Vincent, Hudaverdian Sylvie, Legeai Fabrice, Simon Jean-Christophe, Tagu Denis, Fukatsu Takema

机构信息

Institut National de la Recherche Agronomique, Unité Mixte de Recherche 1099 BIO3P, Le Rheu, France.

出版信息

Mol Biol Evol. 2008 Jan;25(1):5-17. doi: 10.1093/molbev/msm222. Epub 2007 Oct 13.

Abstract

Aphids exclusively feed on plant phloem sap that contains much sugar and some nonessential amino acids but is poor in lipids and proteins. Conventionally, it has been believed that aphids substantially have no intestinal digestion of proteins. However, we here report an unexpected finding that cysteine protease genes of the family cathepsin B are massively amplified in the lineage of aphids and that many of the protease genes exhibit gut-specific overexpression. By making use of expressed sequence tag data, sequenced cDNAs, and genomic trace sequences of the pea aphid Acyrthosiphon pisum, we identified a total of 28 cathepsin B-like gene copies in the genome of A. pisum. Phylogenetic analyses of all the cathepsin B genes in aphids revealed that genic expansion has continuously proceeded with basal, intermediary, and recent duplications. Estimation of molecular evolutionary rates indicated that major alterations of the rates often occurred after duplications. For example, a gene copy ("348") was shown to be slow evolving and close to genes of other insects like Drosophila melanogaster, whereas the other gene copies appeared to have evolved faster with higher ratios of nonsynonymous to synonymous substitutions. We identified a number of gene copies (16 in A. pisum) that contained a replacement at the site required for catalytic activity of the protease. Among these, 2 copies were pseudogenes, whereas the remaining copies were structurally intact and possibly acquired new functions. For example, a cluster of such gene copies ("1674") has been subjected to positive selection. Quantitative reverse transcriptase-polymerase chain reaction analyses revealed that the more conserved gene copy ("348") showed a constitutive expression, whereas 5 other forms ("84," "16," "16D," "1874," and "2744") were preferentially expressed in the gut of A. pisum. Putative biological roles of the diversified cathepsin B-like gene copies in aphids are discussed in relation to their nutritional physiology specialized for plant sap feeding lifestyle.

摘要

蚜虫仅以植物韧皮部汁液为食,这种汁液富含糖分和一些非必需氨基酸,但脂质和蛋白质含量较低。传统上,人们认为蚜虫基本上没有肠道蛋白质消化能力。然而,我们在此报告了一个意外发现,即组织蛋白酶B家族的半胱氨酸蛋白酶基因在蚜虫谱系中大量扩增,并且许多蛋白酶基因表现出肠道特异性过表达。通过利用豌豆蚜Acyrthosiphon pisum的表达序列标签数据、测序的cDNA和基因组微量序列,我们在豌豆蚜基因组中总共鉴定出28个组织蛋白酶B样基因拷贝。对蚜虫中所有组织蛋白酶B基因的系统发育分析表明,基因扩增通过基部、中间和近期重复不断进行。分子进化速率估计表明,速率的主要变化通常发生在重复之后。例如,一个基因拷贝(“348”)进化缓慢,与黑腹果蝇等其他昆虫的基因相近,而其他基因拷贝似乎进化得更快,非同义替换与同义替换的比例更高。我们鉴定出许多在蛋白酶催化活性所需位点发生替换的基因拷贝(豌豆蚜中有16个)。其中,2个拷贝是假基因,而其余拷贝结构完整,可能获得了新功能。例如,一组这样的基因拷贝(“1674”)受到了正选择。定量逆转录聚合酶链反应分析表明,保守性较高的基因拷贝(“348”)表现出组成型表达,而其他5种形式(“84”、“16”、“16D”、“1874”和“2744”)在豌豆蚜肠道中优先表达。文中还结合蚜虫专门适应取食植物汁液生活方式的营养生理学,讨论了多样化的组织蛋白酶B样基因拷贝在蚜虫中的假定生物学作用。

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