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窄叶羽扇豆核心种质库中的根系性状多样性、分子标记多样性及性状-标记关联

Root trait diversity, molecular marker diversity, and trait-marker associations in a core collection of Lupinus angustifolius.

作者信息

Chen Yinglong, Shan Fucheng, Nelson Matthew N, Siddique Kadambot Hm, Rengel Zed

机构信息

School of Earth and Environment, The University of Western Australia, Perth, WA 6009, Australia The UWA Institute of Agriculture, The University of Western Australia, Perth, WA 6009, Australia The State Key Laboratory of Soil Erosion and Dryland Farming on the Loess Plateau, Northwest A&F University, and Chinese Academy of Sciences, Yangling, Shaanxi 712100, China

The Department of Agriculture and Food, Western Australia, Locked Bag 4, Bentley, WA 6983, Australia.

出版信息

J Exp Bot. 2016 Jun;67(12):3683-97. doi: 10.1093/jxb/erw127. Epub 2016 Apr 5.

Abstract

Narrow-leafed lupin (Lupinus angustifolius L.) is the predominant grain legume crop in southern Australia, contributing half of the total grain legume production of Australia. Its yield in Australia is hampered by a range of subsoil constraints. The adaptation of lupin genotypes to subsoil constraints may be improved by selecting for optimal root traits from new and exotic germplasm sources. We assessed root trait diversity and genetic diversity of a core collection of narrow-leafed lupin (111 accessions) using 191 Diversity Arrays Technology (DArT) markers. The genetic relationship among accessions was determined using the admixture model in STRUCTURE. Thirty-eight root-associated traits were characterized, with 21 having coefficient of variation values >0.5. Principal coordinate analysis and cluster analysis of the DArT markers revealed broad diversity among the accessions. An ad hoc statistics calculation resulted in 10 distinct populations with significant differences among and within them (P < 0.001). The mixed linear model test in TASSEL showed a significant association between all root traits and some DArT markers, with the numbers of markers associated with an individual trait ranging from 2 to 13. The percentage of phenotypic variation explained by any one marker ranged from 6.4 to 21.8%, with 15 associations explaining >10% of phenotypic variation. The genetic variation values ranged from 0 to 7994, with 23 associations having values >240. Root traits such as deeper roots and lateral root proliferation at depth would be useful for this species for improved adaptation to drier soil conditions. This study offers opportunities for discovering useful root traits that can be used to increase the yield of Australian cultivars across variable environmental conditions.

摘要

窄叶羽扇豆(Lupinus angustifolius L.)是澳大利亚南部主要的谷物豆类作物,占澳大利亚豆类作物总产量的一半。其在澳大利亚的产量受到一系列土壤下层限制因素的影响。通过从新的和外来种质资源中选择最佳根系性状,可能会提高羽扇豆基因型对土壤下层限制因素的适应性。我们使用191个多样性阵列技术(DArT)标记评估了窄叶羽扇豆核心种质库(111份材料)的根系性状多样性和遗传多样性。利用STRUCTURE中的混合模型确定了材料之间的遗传关系。对38个根系相关性状进行了表征,其中21个性状的变异系数值>0.5。对DArT标记进行主坐标分析和聚类分析,结果表明材料间存在广泛的多样性。一项特设统计计算得出了10个不同的群体,群体间和群体内均存在显著差异(P < 0.001)。TASSEL中的混合线性模型检验表明,所有根系性状与一些DArT标记之间存在显著关联,与单个性状相关的标记数量从2到13不等。任何一个标记解释的表型变异百分比范围为6.4%至21.8%,其中15个关联解释的表型变异>10%。遗传变异值范围为0至7994,其中23个关联的值>240。更深的根系和深层侧根增生等根系性状对该物种适应更干燥的土壤条件可能有用。本研究为发现可用于提高澳大利亚品种在不同环境条件下产量的有用根系性状提供了机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce8d/4896361/770794f584e2/exbotj_erw127_f0001.jpg

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