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首页> 外文期刊>The New Phytologist >Multitrait genome-wide association analysis of Populus trichocarpa identifies key polymorphisms controlling morphological and physiological traits
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Multitrait genome-wide association analysis of Populus trichocarpa identifies key polymorphisms controlling morphological and physiological traits

机译:多型基因组 - 普罗属植物基因组关联分析鉴定了控制形态和生理特性的关键多态性

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摘要

Genome-wide association studies (GWAS) have great promise for identifying the loci that contribute to adaptive variation, but the complex genetic architecture of many quantitative traits presents a substantial challenge. We measured 14 morphological and physiological traits and identified single nucleotide polymorphism (SNP)-phenotype associations in a Populus trichocarpa population distributed from California, USA to British Columbia, Canada. We used whole-genome resequencing data of 882 trees with more than 6.78 million SNPs, coupled with multitrait association to detect polymorphisms with potentially pleiotropic effects. Candidate genes were validated with functional data. Broad-sense heritability (H-2) ranged from 0.30 to 0.56 for morphological traits and 0.08 to 0.36 for physiological traits. In total, 4 and 20 gene models were detected using the single-trait and multitrait association methods, respectively. Several of these associations were corroborated by additional lines of evidence, including co-expression networks, metabolite analyses, and direct confirmation of gene function through RNAi. Multitrait association identified many more significant associations than single-trait association, potentially revealing pleiotropic effects of individual genes. This approach can be particularly useful for challenging physiological traits such as water-use efficiency or complex traits such as leaf morphology, for which we were able to identify credible candidate genes by combining multitrait association with gene co-expression and co-methylation data.
机译:基因组 - 范围协会研究(GWA)对识别有助于自适应变异的基因座具有很大的承诺,但许多量化特征的复杂遗传架构具有大量挑战。我们测量了14种形态和生理性状,并确定了从加利福尼亚州的杨树幼虫群体中鉴定了单核苷酸多态性(SNP) - 本型关联,该幼虫从加利福尼亚州向不列颠哥伦比亚省加拿大。我们使用了882棵树的全基因组数据,超过678万SNP,与多焦点协会相结合,以检测具有潜在脂肪效应的多态性。用功能数据验证候选基因。对于形态学性状的形态特征和生理性状,宽度感遗传性(H-2)的范围为0.30至0.56。使用单个特征和多元关联方法检测总共4和20个基因模型。这些关联的几种缔促进的额外迹线,包括通过RNAi直接证实基因函数的直接确认。多焦点协会确定了比单一特征联系更重要的关联,潜在地揭示个体基因的脂肪效应。这种方法对于挑战诸如水使用效率或复杂性状的挑战诸如叶片形态的复杂性状,通过将多元关联与基因共表达和共甲基化数据组合来识别可靠的候选基因。

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