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多年生黑麦草11个表达的抗性候选基因中的核苷酸多样性与连锁不平衡

Nucleotide diversity and linkage disequilibrium in 11 expressed resistance candidate genes in Lolium perenne.

作者信息

Xing Yongzhong, Frei Uschi, Schejbel Britt, Asp Torben, Lübberstedt Thomas

机构信息

University of Arhus, Faculty of Agricultural Sciences, Department of Genetics and Biotechnology, Research Centre Flakkebjerg, Slagelse DK-4200, Denmark.

出版信息

BMC Plant Biol. 2007 Aug 4;7:43. doi: 10.1186/1471-2229-7-43.

Abstract

BACKGROUND

Association analysis is an alternative way for QTL mapping in ryegrass. So far, knowledge on nucleotide diversity and linkage disequilibrium in ryegrass is lacking, which is essential for the efficiency of association analyses.

RESULTS

11 expressed disease resistance candidate (R) genes including 6 nucleotide binding site and leucine rich repeat (NBS-LRR) like genes and 5 non-NBS-LRR genes were analyzed for nucleotide diversity. For each of the genes about 1 kb genomic fragments were isolated from 20 heterozygous genotypes in ryegrass. The number of haplotypes per gene ranged from 9 to 27. On average, one single nucleotide polymorphism (SNP) was present per 33 bp between two randomly sampled sequences for the 11 genes. NBS-LRR like gene fragments showed a high degree of nucleotide diversity, with one SNP every 22 bp between two randomly sampled sequences. NBS-LRR like gene fragments showed very high non-synonymous mutation rates, leading to altered amino acid sequences. Particularly LRR regions showed very high diversity with on average one SNP every 10 bp between two sequences. In contrast, non-NBS LRR resistance candidate genes showed a lower degree of nucleotide diversity, with one SNP every 112 bp. 78% of haplotypes occurred at low frequency (<5%) within the collection of 20 genotypes. Low intragenic LD was detected for most R genes, and rapid LD decay within 500 bp was detected.

CONCLUSION

Substantial LD decay was found within a distance of 500 bp for most resistance candidate genes in this study. Hence, LD based association analysis is feasible and promising for QTL fine mapping of resistance traits in ryegrass.

摘要

背景

关联分析是黑麦草数量性状基因座(QTL)定位的一种替代方法。到目前为止,黑麦草中核苷酸多样性和连锁不平衡的相关知识尚缺,而这对于关联分析的效率至关重要。

结果

对11个表达的抗病候选(R)基因进行了核苷酸多样性分析,其中包括6个核苷酸结合位点和富含亮氨酸重复序列(NBS-LRR)类基因以及5个非NBS-LRR基因。从黑麦草的20个杂合基因型中分离出每个基因约1 kb的基因组片段。每个基因的单倍型数量在9到27之间。对于这11个基因,两个随机抽样序列之间平均每33 bp存在一个单核苷酸多态性(SNP)。NBS-LRR类基因片段显示出高度的核苷酸多样性,两个随机抽样序列之间每22 bp有一个SNP。NBS-LRR类基因片段显示出非常高的非同义突变率,导致氨基酸序列改变。特别是富含亮氨酸重复序列(LRR)区域显示出非常高的多样性,两个序列之间平均每10 bp有一个SNP。相比之下,非NBS-LRR抗病候选基因显示出较低的核苷酸多样性,每112 bp有一个SNP。在20个基因型的集合中,78%的单倍型出现频率较低(<5%)。大多数R基因检测到低的基因内连锁不平衡,并且在500 bp内检测到快速的连锁不平衡衰减。

结论

本研究中大多数抗病候选基因在500 bp的距离内发现了显著的连锁不平衡衰减。因此,基于连锁不平衡的关联分析对于黑麦草抗性性状的QTL精细定位是可行且有前景的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28da/1978496/05f0e2cd7010/1471-2229-7-43-1.jpg

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