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中欧冬小麦(Triticum aestivum L.)种质资源氮利用效率的全基因组关联研究及遗传多样性分析

Genome-wide association study and genetic diversity analysis on nitrogen use efficiency in a Central European winter wheat (Triticum aestivum L.) collection.

作者信息

Monostori István, Szira Fruzsina, Tondelli Alessandro, Árendás Tamás, Gierczik Krisztián, Cattivelli Luigi, Galiba Gábor, Vágújfalvi Attila

机构信息

Agricultural Institute, Centre for Agricultural Research, Hungarian Academy of Sciences, Martonvásár, Hungary.

CREA Research Centre for Genomics and Bioinformatics, Fiorenzuola d'Arda (PC), Italy.

出版信息

PLoS One. 2017 Dec 28;12(12):e0189265. doi: 10.1371/journal.pone.0189265. eCollection 2017.

Abstract

To satisfy future demands, the increase of wheat (Triticum aestivum L.) yield is inevitable. Simultaneously, maintaining high crop productivity and efficient use of nutrients, especially nitrogen use efficiency (NUE), are essential for sustainable agriculture. NUE and its components are inherently complex and highly influenced by environmental factors, nitrogen management practices and genotypic variation. Therefore, a better understanding of their genetic basis and regulation is fundamental. To investigate NUE-related traits and their genetic and environmental regulation, field trials were evaluated in a Central European wheat collection of 93 cultivars at two nitrogen input levels across three seasons. This elite germplasm collection was genotyped on DArTseq® genotypic platform to identify loci affecting N-related complex agronomic traits. To conduct robust genome-wide association mapping, the genetic diversity, population structure and linkage disequilibrium were examined. Population structure was investigated by various methods and two subpopulations were identified. Their separation is based on the breeding history of the cultivars, while analysis of linkage disequilibrium suggested that selective pressures had acted on genomic regions bearing loci with remarkable agronomic importance. Besides NUE, genetic basis for variation in agronomic traits indirectly affecting NUE and its components, moreover genetic loci underlying response to nitrogen fertilisation were also determined. Altogether, 183 marker-trait associations (MTA) were identified spreading over almost the entire genome. We found that most of the MTAs were environmental-dependent. The present study identified several associated markers in those genomic regions where previous reports had found genes or quantitative trait loci influencing the same traits, while most of the MTAs revealed new genomic regions. Our data provides an overview of the allele composition of bread wheat varieties anchored to DArTseq® markers, which will facilitate the understanding of the genetic basis of NUE and agronomically important traits.

摘要

为满足未来需求,提高小麦(Triticum aestivum L.)产量势在必行。同时,维持高作物生产力和养分的高效利用,尤其是氮素利用效率(NUE),对可持续农业至关重要。NUE及其组成部分本质上很复杂,且受环境因素、氮素管理措施和基因型变异的影响很大。因此,更好地了解其遗传基础和调控机制至关重要。为研究与NUE相关的性状及其遗传和环境调控,在中欧93个小麦品种的种质资源中,于三个季节的两个氮素投入水平下进行了田间试验评估。利用DArTseq®基因分型平台对这一优良种质资源进行基因分型,以鉴定影响与氮相关的复杂农艺性状的位点。为进行稳健的全基因组关联作图,对遗传多样性、群体结构和连锁不平衡进行了研究。通过多种方法研究群体结构,鉴定出两个亚群。它们的分离基于品种的育种历史,而连锁不平衡分析表明,选择压力作用于携带具有显著农艺重要性位点的基因组区域。除了NUE,还确定了间接影响NUE及其组成部分的农艺性状变异的遗传基础,以及对氮肥响应的潜在遗传位点。总共鉴定出183个标记-性状关联(MTA),分布在几乎整个基因组中。我们发现大多数MTA依赖于环境。本研究在先前报道发现影响相同性状的基因或数量性状位点的基因组区域中鉴定出了几个相关标记,而大多数MTA揭示了新的基因组区域。我们的数据提供了锚定在DArTseq®标记上的面包小麦品种等位基因组成的概述,这将有助于理解NUE和农艺重要性状的遗传基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c529/5746223/a7b8bd15fe03/pone.0189265.g001.jpg

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