National Key Laboratory of Crop Genetic Improvement and National Centre of Plant Gene Research (Wuhan), Huazhong Agricultural University, Wuhan 430070, China.
National Key Laboratory of Crop Genetic Improvement and National Centre of Plant Gene Research (Wuhan), Huazhong Agricultural University, Wuhan 430070, China.
Mol Plant. 2021 Mar 1;14(3):456-469. doi: 10.1016/j.molp.2020.12.001. Epub 2020 Dec 8.
Rice grain oil is a valuable nutrient source. However, the genetic basis of oil biosynthesis in rice grains remains unclear. In this study, we performed a genome-wide association study on oil composition and oil concentration in a diverse panel of 533 cultivated rice accessions. High variation for 11 oil-related traits was observed, and the oil composition of rice grains showed differentiation among the subpopulations. We identified 46 loci that are significantly associated with grain oil concentration or composition, 16 of which were detected in three recombinant inbred line populations. Twenty-six candidate genes encoding enzymes involved in oil metabolism were identified from these 46 loci, four of which (PAL6, LIN6, MYR2, and ARA6) were found to contribute to natural variation in oil composition and to show differentiation among the subpopulations. Interestingly, population genetic analyses revealed that specific haplotypes of PAL6 and LIN6 have been selected in japonica rice. Based on these results, we propose a possible oil biosynthetic pathway in rice grains. Collectively, our results provide new insights into the genetic basis of oil biosynthesis in rice grains and can facilitate marker-based breeding of rice varieties with enhanced oil and grain quality.
稻米油是一种有价值的营养来源。然而,稻米中油脂生物合成的遗传基础仍不清楚。在这项研究中,我们对来自 533 个栽培稻品种的多样化群体中的油成分和油浓度进行了全基因组关联研究。观察到 11 种与油相关的性状存在高度变异,并且稻米粒的油成分在亚群之间表现出分化。我们鉴定出 46 个与籽粒油浓度或成分显著相关的位点,其中 16 个在三个重组自交系群体中检测到。从这 46 个位点中鉴定出 26 个编码参与油脂代谢的酶的候选基因,其中 4 个基因(PAL6、LIN6、MYR2 和 ARA6)被发现与油成分的自然变异有关,并在亚群之间表现出分化。有趣的是,群体遗传分析表明,PAL6 和 LIN6 的特定单倍型在粳稻中被选择。基于这些结果,我们提出了一个可能的稻米粒油脂生物合成途径。总的来说,我们的研究结果为稻米中油脂生物合成的遗传基础提供了新的见解,并有助于基于标记的水稻品种的改良,以提高油和谷物品质。