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茄RanGAP2 的进化和变异性,该基因是抗病蛋白 GPA2 与根结线虫效应因子 Gp-RBP-1 不亲和互作的辅助因子。

Evolution and variability of Solanum RanGAP2, a cofactor in the incompatible interaction between the resistance protein GPA2 and the Globodera pallida effector Gp-RBP-1.

机构信息

INRA, UMR 1349 IGEPP INRA, Agrocampus Ouest, Université Rennes1, Ploudaniel, Keraïber F.29260, France.

出版信息

BMC Evol Biol. 2013 Apr 19;13:87. doi: 10.1186/1471-2148-13-87.

Abstract

BACKGROUND

The Ran GTPase Activating Protein 2 (RanGAP2) was first described as a regulator of mitosis and nucleocytoplasmic trafficking. It was then found to interact with the Coiled-Coil domain of the Rx and GPA2 resistance proteins, which confer resistance to Potato Virus X (PVX) and potato cyst nematode Globodera pallida, respectively. RanGAP2 is thought to mediate recognition of the avirulence protein GP-RBP-1 by GPA2. However, the Gpa2-induced hypersensitive response appears to be relatively weak and Gpa2 is limited in terms of spectrum of efficiency as it is effective against only two nematode populations. While functional and evolutionary analyses of Gp-Rbp-1 and Gpa2 identified key residues in both the resistance and avirulence proteins that are involved in recognition determination, whether variation in RanGAP2 also plays a role in pathogen recognition has not been investigated.

RESULTS

We amplified a total of 147 RanGAP2 sequences from 55 accessions belonging to 18 different di-and tetraploid Solanum species from the section Petota. Among the newly identified sequences, 133 haplotypes were obtained and 19.1% of the nucleotide sites were found to be polymorphic. The observed intra-specific nucleotide diversity ranges from 0.1 to 1.3%. Analysis of the selection pressures acting on RanGAP2 suggests that this gene evolved mainly under purifying selection. Nonetheless, we identified polymorphic positions in the protein sequence at the intra-specific level, which could modulate the activity of RanGAP2. Two polymorphic sites and a three amino-acid deletion in RanGAP2 were found to affect the timing and intensity of the Gpa2-induced hypersensitive response to avirulent GP-RBP-1 variants even though they did not confer any gain of recognition of virulent GP-RBP-1 variants.

CONCLUSIONS

Our results highlight how a resistance gene co-factor can manage in terms of evolution both an established role as a cell housekeeping gene and an implication in plant parasite interactions. StRanGAP2 gene appears to evolve under purifying selection. Its variability does not seem to influence the specificity of GPA2 recognition but is able to modulate this activity by enhancing the defence response. It seems therefore that the interaction with the plant resistance protein GPA2 (and/or Rx) rather than with the nematode effector was the major force in the evolution of the RanGAP2 locus in potato. From a mechanistic point of view these results are in accordance with a physical interaction of RanGAP2 with GPA2 and suggest that RBP-1 would rather bind the RanGAP2-GPA2 complex than the RanGAP2 protein alone.

摘要

背景

Ran GTPase 激活蛋白 2(RanGAP2)最初被描述为有丝分裂和核质运输的调节剂。后来发现它与 Rx 和 GPA2 抗性蛋白的卷曲螺旋结构域相互作用,Rx 和 GPA2 分别赋予对马铃薯病毒 X(PVX)和马铃薯胞囊线虫 Globodera pallida 的抗性。RanGAP2 被认为介导了 GPA2 对无毒蛋白 GP-RBP-1 的识别。然而,Gpa2 诱导的过敏反应似乎相对较弱,并且 Gpa2 的效率范围有限,因为它仅对两种线虫种群有效。虽然对 Gp-Rbp-1 和 Gpa2 的功能和进化分析确定了抗性和无毒蛋白中参与识别决定的关键残基,但 RanGAP2 的变异是否也在病原体识别中发挥作用尚未得到研究。

结果

我们从属于 18 个不同二倍体和四倍体马铃薯属物种的 55 个品系中总共扩增了 147 个 RanGAP2 序列。在新鉴定的序列中,获得了 133 个单倍型,有 19.1%的核苷酸位点发生多态性。观察到的种内核苷酸多样性范围为 0.1 到 1.3%。对 RanGAP2 上作用的选择压力的分析表明,该基因主要受到纯化选择的影响。尽管如此,我们在种内水平上鉴定了蛋白质序列中的多态性位置,这些位置可能调节 RanGAP2 的活性。RanGAP2 中的两个多态性位点和一个三氨基酸缺失影响了 Gpa2 诱导的对无毒 GP-RBP-1 变体的过敏反应的时间和强度,尽管它们并没有赋予对有毒 GP-RBP-1 变体的任何识别增益。

结论

我们的结果强调了一个抗性基因共因子如何在进化中兼顾作为细胞管家基因的既定作用和参与植物寄生虫相互作用。StRanGAP2 基因似乎受到纯化选择的影响。它的变异性似乎不会影响 GPA2 识别的特异性,但能够通过增强防御反应来调节这种活性。因此,与植物抗性蛋白 GPA2(和/或 Rx)的相互作用而不是与线虫效应物的相互作用似乎是马铃薯中 RanGAP2 基因座进化的主要力量。从机制的角度来看,这些结果与 RanGAP2 与 GPA2 的物理相互作用一致,并表明 RBP-1 可能与 RanGAP2-GPA2 复合物而不是 RanGAP2 蛋白本身结合。

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