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嗜热栖热放线菌中异核体不相容基因het-c的自然变异揭示了多样化选择。

Natural variation of heterokaryon incompatibility gene het-c in Podospora anserina reveals diversifying selection.

作者信息

Bastiaans Eric, Debets Alfons J M, Aanen Duur K, van Diepeningen Anne D, Saupe Sven J, Paoletti Mathieu

机构信息

Laboratory of Genetics, Wageningen University, Droevendaalsesteeg, Wageningen, The Netherlands.

出版信息

Mol Biol Evol. 2014 Apr;31(4):962-74. doi: 10.1093/molbev/msu047. Epub 2014 Jan 20.

Abstract

In filamentous fungi, allorecognition takes the form of heterokaryon incompatibility, a cell death reaction triggered when genetically distinct hyphae fuse. Heterokaryon incompatibility is controlled by specific loci termed het-loci. In this article, we analyzed the natural variation in one such fungal allorecognition determinant, the het-c heterokaryon incompatibility locus of the filamentous ascomycete Podospora anserina. The het-c locus determines an allogenic incompatibility reaction together with two unlinked loci termed het-d and het-e. Each het-c allele is incompatible with a specific subset of the het-d and het-e alleles. We analyzed variability at the het-c locus in a population of 110 individuals, and in additional isolates from various localities. We identified a total of 11 het-c alleles, which define 7 distinct incompatibility specificity classes in combination with the known het-d and het-e alleles. We found that the het-c allorecognition gene of P. anserina is under diversifying selection. We find a highly unequal allele distribution of het-c in the population, which contrasts with the more balanced distribution of functional groups of het-c based on their allorecognition function. One explanation for the observed het-c diversity in the population is its function in allorecognition. However, alleles that are most efficient in allorecognition are rare. An alternative and not exclusive explanation for the observed diversity is that het-c is involved in pathogen recognition. In Arabidopsis thaliana, a homolog of het-c is a pathogen effector target, supporting this hypothesis. We hypothesize that the het-c diversity in P. anserina results from both its functions in pathogen-defense, and allorecognition.

摘要

在丝状真菌中,异体识别表现为异核体不相容性,即当基因不同的菌丝融合时触发的细胞死亡反应。异核体不相容性由称为het位点的特定基因座控制。在本文中,我们分析了一种这样的真菌异体识别决定因素的自然变异,即丝状子囊菌嗜热栖热放线菌的het-c异核体不相容性基因座。het-c基因座与另外两个不连锁的基因座het-d和het-e一起决定同种异体不相容反应。每个het-c等位基因与het-d和het-e等位基因的特定子集不相容。我们分析了110个个体群体以及来自不同地区的其他分离株中het-c基因座的变异性。我们总共鉴定出11个het-c等位基因,它们与已知的het-d和het-e等位基因组合定义了7个不同的不相容特异性类别。我们发现嗜热栖热放线菌的het-c异体识别基因处于多样化选择之下。我们发现群体中het-c的等位基因分布极不均衡,这与基于其异体识别功能的het-c功能组分布更为平衡形成对比。群体中观察到的het-c多样性的一种解释是其在异体识别中的功能。然而,在异体识别中最有效的等位基因很少见。对观察到的多样性的另一种且非排他性的解释是het-c参与病原体识别。在拟南芥中,het-c的一个同源物是病原体效应子的靶标,支持了这一假设。我们假设嗜热栖热放线菌中het-c的多样性源于其在病原体防御和异体识别中的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e504/3969566/c98efac1ce50/msu047f1p.jpg

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