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Identification of Quantitative Trait Loci for Lipid Metabolism in Rice Seeds

机译:水稻种子脂质代谢的数量性状位点的鉴定

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摘要

Plant seed oil is important for human dietary consumption and industrial application. The oil trait is controlled by quantitative trait loci (QTLs), but no QTLs for fatty acid composition are known in rice, the monocot model plant. QTL analysis was performed using F2 and F2:3 progeny from a cross of an indica variety and a japonica variety. Gas chromatography–mass spectrometry (GC–MS) analysis revealed significant differences between parental lines in fatty acid composition of brown rice oil, and 29 associated QTLs in F2 and/or F2:3 populations were identified throughout the rice genome, except chromosomes 9 and 10. Eight QTLs were repeatedly identified in both populations across different environments. Five loci pleiotropically controlled different traits, contributing to complex interactions of oil with fatty acids and between fatty acids. Nine rice orthologs of Arabidopsis genes encoding key enzymes in lipid metabolism co-localized with 11 mapped QTLs. A strong QTL for oleic (18:1) and linoleic (18:2) acid were associated with a rice ortholog of a gene encoding acyl–CoA:diacylglycerol acyltransferase (DGAT), and another for palmitic acid (16:0) mapped similarly to the acyl–ACP thioesterase (FatB) gene ortholog. Our approach rapidly and efficiently identified candidate genes for mapped QTLs controlling fatty acid composition and oil concentration, providing information for improving rice grain quality by marker assisted selection.
机译:植物种子油对于人类的饮食消费和工业应用非常重要。油性状受数量性状基因座(QTL)控制,但单子叶植物模型水稻中尚无脂肪酸组成的QTL。使用来自d稻和粳稻杂交后代的F 2 和F 2:3 后代进行QTL分析。气相色谱-质谱(GC-MS)分析显示,糙米油脂肪酸组成的亲本系与F 2 和/或F 2:3中的29个相关QTL之间存在显着差异在整个水稻基因组中都鉴定出种群,除了9号和10号染色体。在不同环境的两个种群中都反复鉴定出八个QTL。五个位点多效性地控制了不同的性状,导致油与脂肪酸以及脂肪酸之间的复杂相互作用。九个拟南芥水稻直系同源基因编码的脂质代谢关键酶与11个定位QTL共同定位。水稻酸直向同源性强的油酸(18:1)和亚油酸(18:2)的QTL与编码酰基-CoA:二甘油甘油酰基转移酶(DGAT)的基因的直系同源基因有关,而与棕榈酸(16:0)的基因相似与酰基-ACP硫酯酶(FatB)基因直系同源。我们的方法可以快速有效地为控制脂肪酸组成和油浓度的QTL定位候选基因,通过标记辅助选择为提高稻米品质提供信息。

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  • 来源
    《Molecular Plant》 |2012年第4期|p.865-875|共11页
  • 作者单位

    aNational Key Laboratory of Plant Molecular Genetics and National Center for Plant Gene Research (Shanghai), Shanghai Institute of Plant Physiology and Ecology, Shanghai Institutes for Biological Sciences, The Chinese Academy of Sciences, Graduate School of the Chinese Academy of Sciences, 300 Fenglin Road, Shanghai 200032, China bNational Key Laboratory of Rice Biology, China National Rice Research Institute, Hangzhou 310006, China;

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