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Selection Signatures in the First Exon of Paralogous Receptor Kinase Genes from the Sym2 Region of the Pisum sativum L. Genome

机译:豌豆(Pisum sativum L.)基因组Sym2区旁系受体激酶基因的第一个外显子的选择特征

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摘要

During the initial step of the symbiosis between legumes (Fabaceae) and nitrogen-fixing bacteria (rhizobia), the bacterial signal molecule known as the Nod factor (nodulation factor) is recognized by plant LysM motif-containing receptor-like kinases (LysM-RLKs). The fifth chromosome of barrel medic (Medicago truncatula Gaertn.) contains a cluster of paralogous LysM-RLK genes, one of which is known to participate in symbiosis. In the syntenic region of the pea (Pisum sativum L.) genome, three genes have been identified: PsK1 and PsSym37, two symbiosis-related LysM-RLK genes with known sequences, and the unsequenced PsSym2 gene which presumably encodes a LysM-RLK and is associated with increased selectivity to certain Nod factors. In this work, we identified a new gene encoding a LysM-RLK, designated as PsLykX, within the Sym2 genomic region. We sequenced the first exons (corresponding to the protein receptor domain) of PsSym37, PsK1, and PsLykX from a large set of pea genotypes of diverse origin. The nucleotide diversity of these fragments was estimated and groups of haplotypes for each gene were revealed. Footprints of selection pressure were detected via comparative analyses of SNP distribution across the first exons of these genes and their homologs MtLYK2, MtLYK3, and MtLYK4 from M. truncatula retrieved from the Medicago Hapmap project. Despite the remarkable similarity among all the studied genes, they exhibited contrasting selection signatures, possibly pointing to diversification of their functions. Signatures of balancing selection were found in LysM1-encoding parts of PsSym37 and PsK1, suggesting that the diversity of these parts may be important for pea LysM-RLKs. The first exons of PsSym37 and PsK1 displayed signatures of purifying selection, as well as MtLYK2 of M. truncatula. Evidence of positive selection affecting primarily LysM domains was found in all three investigated M. truncatula genes, as well as in the pea gene PsLykX. The data suggested that PsLykX is a promising candidate for PsSym2, which has remained elusive for more than 30 years.
机译:在豆类(豆科)和固氮细菌(根瘤菌)之间共生的初始阶段,被称为Nod因子(结瘤因子)的细菌信号分子会被含有植物LysM基序的受体样激酶(LysM-RLKs)识别)。桶状军医的第五条染色体(Medicago truncatula Gaertn。)包含一簇同源的LysM-RLK基因,其中一个已知参与共生。在豌豆(Pisum sativum L.)基因组的同音区域中,已鉴定出三个基因:PsK1和PsSym37,两个具有已知序列的与共生相关的LysM-RLK基因,以及未测序的PsSym2基因,其可能编码LysM-RLK和与增加对某些Nod因子的选择性有关。在这项工作中,我们确定了在Sym2基因组区域内编码LysM-RLK的新基因,命名为PsLykX。我们对来自不同来源的大量豌豆基因型的PsSym37,PsK1和PsLykX的第一个外显子进行了测序(对应于蛋白质受体域)。估计这些片段的核苷酸多样性,并揭示每个基因的单倍型组。通过比较分析这些基因的第一个外显子的SNP分布以及从Medicago Hapmap项目中检索到的M. truncatula的同系物MtLYK2,MtLYK3和MtLYK4,对选择压力的足迹进行了检测。尽管所有研究的基因之间都具有惊人的相似性,但它们仍显示出不同的选择特征,可能表明它们功能的多样化。在PsSym37和PsK1的LysM1编码部分中发现了平衡选择的签名,这表明这些部分的多样性对于豌豆LysM-RLKs可能很重要。 PsSym37和 PsK1 的第一个外显子显示了纯化选择的特征,以及 M的 MtLYK2 。 truncatula 。在所有三个被调查的 M中都发现了主要影响LysM结构域的阳性选择证据。 truncatula 基因以及豌豆基因 PsLykX 中。数据表明 PsLykX PsSym2 的有希望的候选者,至今已有30多年的历史了。

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