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果蝇的α甘油磷酸循环 VI. 果蝇属中酶的旁系同源物的结构和进化。

The alpha glycerophosphate cycle in Drosophila melanogaster VI. structure and evolution of enzyme paralogs in the genus Drosophila.

机构信息

Department of Molecular Biology and Genetics, 407 Biotechnology Building, Cornell University, Ithaca, NY 14853, USA.

出版信息

J Hered. 2010 Mar-Apr;101(2):225-34. doi: 10.1093/jhered/esp111. Epub 2009 Dec 8.

Abstract

The genome sequences of 12 Drosophila species contain 3 paralogs for alpha glycerophosphate dehydrogenase (GPDH) and for the mitochondrial alpha glycerophosphate oxidase (GPO). These 2 enzymes participate in the alpha glycerophosphate cycle in the adult thoracic flight muscles. The flight muscle enzymes are encoded by gpdh-1 at 26A2 and gpo-1 at 52C8. In this paper, we show that the GPDH paralogs share the same evolutionarily conserved functional domains and most intron positions, whereas the GPO paralogs share only some of the functional domains of mitochondrial oxidoreductases. The GPO paralogs not expressed in the flight muscles essentially lack introns. GPDH paralogs encoded by gpdh-2 and gpdh-3 and the GPO paralogs encoded by gpo-2 and gpo-3 are expressed only in the testes. Gene trees for the GPDH and GPO paralogs indicate that the genes expressed in the flight muscles are evolving very slowly presumably under strong purifying selection whereas the paralogs expressed in the testes are evolving more rapidly. The concordance between species and gene trees, d(N)/d(S) ratios, phylogenetic analysis by maximum likelihood-based tests, and analyses of radical and conservative substitutions all indicate that the additional GPDH and GPO paralogs are also evolving under purifying selection.

摘要

12 种果蝇的基因组序列包含 3 个α甘油磷酸脱氢酶(GPDH)和线粒体α甘油磷酸氧化酶(GPO)的基因副本。这两种酶参与成体胸部飞行肌中的α甘油磷酸循环。飞行肌中的酶由 26A2 上的 gpdh-1 和 52C8 上的 gpo-1 编码。在本文中,我们表明 GPDH 副本具有相同的进化保守功能域和大多数内含子位置,而 GPO 副本仅共享线粒体氧化还原酶的一些功能域。在飞行肌中不表达的 GPO 副本基本上缺乏内含子。由 gpdh-2 和 gpdh-3 编码的 GPDH 副本和由 gpo-2 和 gpo-3 编码的 GPO 副本仅在睾丸中表达。GPDH 和 GPO 副本的基因树表明,在飞行肌中表达的基因进化非常缓慢,可能受到强烈的纯化选择的影响,而在睾丸中表达的副本进化得更快。物种树和基因树之间的一致性、d(N)/d(S) 比值、基于最大似然法的系统发育分析以及激进和保守替换的分析均表明,额外的 GPDH 和 GPO 副本也受到纯化选择的影响。

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