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Organ-Specific Quantitative Genetics and Candidate Genes of Phenylpropanoid Metabolism in Brassica oleracea

机译:甘蓝中苯丙烷代谢的器官特异性定量遗传学和候选基因

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摘要

Phenolic compounds are proving to be increasingly important for human health and in crop development, defense and adaptation. In spite of the economical importance of Brassica crops in agriculture, the mechanisms involved in the biosynthesis of phenolic compounds presents in these species remain unknown. The genetic and metabolic basis of phenolics accumulation was dissected through analysis of total phenolics concentration and its individual components in leaves, flower buds, and seeds of a double haploid (DH) mapping population of Brassica oleracea. The quantitative trait loci (QTL) that had an effect on phenolics concentration in each organ were integrated, resulting in 33 consensus QTLs controlling phenolics traits. Most of the studied compounds had organ-specific genomic regulation. Moreover, this information allowed us to propose candidate genes and to predict the function of genes underlying the QTL. A number of previously unknown potential regulatory regions involved in phenylpropanoid metabolism were identified and this study illustrates how plant ontogeny can affect a biochemical pathway.
机译:酚类化合物对人类健康以及农作物的生长,防御和适应越来越重要。尽管芸苔属作物在农业上具有经济重要性,但这些物种中存在的酚类化合物生物合成所涉及的机理仍然未知。通过分析甘蓝型油菜双单倍体(DH)群体叶片,花蕾和种子中总酚浓度及其各个成分,分析了酚积累的遗传和代谢基础。整合了影响每个器官中酚类浓度的定量性状位点(QTL),从而形成了33个控制酚类性状的共有QTL。大多数研究的化合物具有器官特异性基因组调控。此外,这些信息使我们能够提出候选基因并预测QTL潜在基因的功能。鉴定了许多参与苯丙烷代谢的潜在未知调控区域,这项研究说明了植物个体发育如何影响生化途径。

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