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玉米及相关属中伤口诱导型丝氨酸蛋白酶抑制剂wip1的分子进化

Molecular evolution of the wound-induced serine protease inhibitor wip1 in Zea and related genera.

作者信息

Tiffin P, Gaut B S

机构信息

Department of Ecology and Evolutionary Biology, University of California, Irvine, USA.

出版信息

Mol Biol Evol. 2001 Nov;18(11):2092-101. doi: 10.1093/oxfordjournals.molbev.a003750.

DOI:10.1093/oxfordjournals.molbev.a003750
PMID:11606705
Abstract

Plant defense mechanisms have been the subject of intensive investigation. However, little is known about their long-term evolutionary dynamics. We investigated the molecular diversity of a wound-induced serine protease inhibitor, wip1, in the genus Zea, as well as the divergence of wip1 among four genera, Zea, Tripsacum, Sorghum, and Oryza, in order to gain insight into the long-term evolution of plant defense. The specific objectives of this study were to determine (1) whether wip1 has a history of positive or balancing selection, as has been shown for genes involved in plant defense against pathogens, and (2) if the evolutionary histories of wip1 inhibitory loops, which come into closest contact with proteases, differ from the evolutionary history of other parts of this gene. The Zea polymorphism data are consistent with a neutral evolutionary history. In contrast, relative-rate tests suggest a nonneutral evolutionary history. This inconsistency may indicate that selection acting on wip1 is episodic or that wip1 evolves in response to selection favoring novel alleles. We also detected significant heterogeneity in the evolutionary rates of the two inhibitory loops of wip1-one inhibitory loop is highly conserved, whereas the second has diverged rapidly. Because these two inhibitory loops are predicted to have very similar biochemical functions, the significantly different evolutionary histories suggest that these loops have different ecological functions.

摘要

植物防御机制一直是深入研究的主题。然而,对于它们的长期进化动态却知之甚少。我们研究了玉米属中一种伤口诱导的丝氨酸蛋白酶抑制剂wip1的分子多样性,以及wip1在玉米属、摩擦禾属、高粱属和稻属这四个属之间的差异,以便深入了解植物防御的长期进化。本研究的具体目标是确定:(1)wip1是否具有正选择或平衡选择的历史,就像参与植物抵御病原体的基因那样;(2)与蛋白酶最接近接触的wip1抑制环的进化历史是否与该基因其他部分的进化历史不同。玉米的多态性数据与中性进化历史一致。相比之下,相对速率测试表明其进化历史是非中性的。这种不一致可能表明作用于wip1的选择是间歇性的,或者wip1是响应有利于新等位基因的选择而进化的。我们还检测到wip1的两个抑制环的进化速率存在显著差异——一个抑制环高度保守,而另一个则迅速分化。由于预计这两个抑制环具有非常相似的生化功能,显著不同的进化历史表明这些环具有不同的生态功能。

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