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Comparative and parallel genome-wide association studies for metabolic and agronomic traits in cereals

机译:谷物代谢和农艺性状的全基因组关联和平行比较研究

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摘要

The plant metabolome is characterized by extensive diversity and is often regarded as a bridge between genome and phenome. Here we report metabolic and phenotypic genome-wide studies (mGWAS and pGWAS) in rice grain that, in addition to previous metabolic GWAS in rice leaf and maize kernel, show both distinct and overlapping aspects of genetic control of metabolism within and between species. We identify new candidate genes potentially influencing important metabolic and/or morphological traits. We show that the differential genetic architecture of rice metabolism between different tissues is in part determined by tissue specific expression. Using parallel mGWAS and pGWAS we identify new candidate genes potentially responsible for variation in traits such as grain colour and size, and provide evidence of metabotype-phenotype linkage. Our study demonstrates a powerful strategy for interactive functional genomics and metabolomics in plants, especially the cloning of minor QTLs for complex phenotypic traits.
机译:植物代谢组的特征是广泛的多样性,通常被认为是基因组与现象组之间的桥梁。在这里,我们报告了水稻籽粒中代谢和表型的全基因组研究(mGWAS和pGWAS),除了先前在稻叶和玉米粒中的代谢GWAS,还显示了物种内和物种间代谢遗传控制的不同方面和重叠方面。我们确定了可能影响重要的代谢和/或形态特征的新候选基因。我们表明,不同组织之间水稻代谢的差异遗传结构部分取决于组织特异性表达。使用平行的mGWAS和pGWAS,我们可以识别可能导致性状变化的新候选基因,例如谷物的颜色和大小,并提供代谢型-表型连锁的证据。我们的研究表明了一种用于植物中相互作用的功能基因组学和代谢组学的强大策略,尤其是针对复杂表型性状的次要QTL的克隆。

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