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Genome-wide association study reveals significant genomic regions for improving yield, adaptability of rice under dry direct seeded cultivation condition

机译:基因组 - 范围的协会研究揭示了改善产率的显着基因组区域,干燥直接培养条件下水稻的适应性

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Puddled transplanted system of rice cultivation despite having several benefits, is a highly labor, water and energy intensive system. In the face of changing climatic conditions, a successful transition from puddled to dry direct seeded rice (DDSR) cultivation system looks must in future. Genome-wide association study was performed for traits including, roots and nutrient uptake (14 traits), plant-morphological (5 traits), lodging-resistance (4 traits) and yield and yield attributing traits (7 traits) with the aim to identify significant marker-trait associations (MTAs) for traits enhancing rice adaptability to dry direct-seeded rice (DDSR) system. Study identified a total of 37 highly significant MTAs for 20 traits. The false discovery rate (FDR) ranged from 0.264 to 3.69?×?10-?4, 0.0330 to 1.25?×?10-?4, and 0.0534 to 4.60?×?10-?6 in 2015WS, 2016DS and combined analysis, respectively. The percent phenotypic variance (PV) explained by SNPs ranged from 9 to 92%. Among the identified significant MTAs, 15 MTAs associated with the traits including nodal root, root hair length, root length density, stem and culm diameter, plant height and grain yield were reported to be located in the proximity of earlier identified candidate gene. The significant positive correlation of grain-yield with seedling establishment traits, root morphological and nutrient-uptake related traits and grain yield attributing traits pointing towards combining target traits to increase rice yield and adaptability under DDSR. Seven promising progenies with better root morphology, nutrient-uptake and higher grain yield were identified that can further be used in genomics assisted breeding for DDSR varietal development. Once validated, the identified MTAs and the SNPs linked with trait of interest could be of direct use in genomic assisted breeding (GAB) to improve grain yield and adaptability of rice under DDSR.
机译:尽管有几个益处,但仍有额外的水稻栽培制度挤压,是一种高度劳动,水和能量密集型系统。面对变化气候条件,成功过渡到泥泞的干燥直接种植稻(DDSR)栽培系统的外观期待。对基因组 - 范围的协会研究进行了特性,包括根和营养吸收(14个特征),植物形态(5个特征),植物形态(5个特征),抗性(4个特征)和产量和产量归因于旨在识别的特征(7个特征)具有可用于干燥直接稻(DDSR)系统的水稻适应性的特征的重要标记性关联(MTA)。研究鉴定了20种高度显着的MTA的20个特征。假发现率(FDR)的范围为0.264至3.69?×10-?4,0.0330至1.25?×10-?4,和0.0534至4.60?×10-?6在2015ws,2016ds和组合分析,分别。 SNP解释的百分比表型方差(PV)的范围为9至92%。在鉴定的显着的MTA中,据报道,据据报告与包括节节根,根毛长度,根长度,茎和秆直径,植物高度和籽粒产量相关的15MTAS相关,植物高度和籽粒产量位于早期鉴定的候选基因的接近。粮食率与幼苗建立特征,根形态和营养吸收相关性状的显着正相关性和谷物产量归因于靶性性状,增加DDSR下水稻产量及适应性。鉴定出具有更好的根形态,营养吸收和更高谷物产量的七个有希望的后代,可以进一步用于基因组学辅助育种的DDSR品种发育。一旦经过验证,所确定的MTA和与感兴趣的特征相关的SNP可以直接用于基因组辅助育种(GAB),以提高DDSR下水稻的籽粒产量和适应性。

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