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Deciphering the genetic basis of root morphology nutrient uptake yield and yield-related traits in rice under dry direct-seeded cultivation systems

机译:干旱直播栽培体系下水稻根系形态养分吸收产量及产量相关性状的遗传基础

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摘要

In the face of global water scarcity, a successful transition of rice cultivation from puddled to dry direct-seeded rice (DDSR) is a future need. A genome-wide association study was performed on a complex mapping population for 39 traits: 9 seedling-establishment traits, 14 root and nutrient-uptake traits, 5 plant morphological traits, 4 lodging resistance traits, and 7 yield and yield-contributing traits. A total of 10 significant marker-trait associations (MTAs) were found along with 25 QTLs associated with 25 traits. The percent phenotypic variance explained by SNPs ranged from 8% to 84%. Grain yield was found to be significantly and positively correlated with seedling-establishment traits, root morphological traits, nutrient uptake-related traits, and grain yield-contributing traits. The genomic colocation of different root morphological traits, nutrient uptake-related traits, and grain-yield-contributing traits further supports the role of root morphological traits in improving nutrient uptake and grain yield under DDSR. The QTLs/candidate genes underlying the significant MTAs were identified. The identified promising progenies carrying these QTLs may serve as potential donors to be exploited in genomics-assisted breeding programs for improving grain yield and adaptability under DDSR.
机译:面对全球水资源短缺,未来需要将水稻种植成功地从混泥土改为干直播水稻(DDSR)。在39个性状的复杂作图种群上进行了全基因组关联研究:9个幼苗确立性状,14个根和养分吸收性状,5个植物形态性状,4个抗倒性状以及7个产量和产量贡献性状。总共发现了10个重要的标记-性状关联(MTA),以及与25个性状相关的25个QTL。 SNP解释的表型差异百分比范围为8%至84%。发现籽粒产量与幼苗形成性状,根系形态性状,养分吸收相关性状和籽粒产量贡献性状显着正相关。根系形态特征,养分吸收相关性状和籽粒产量贡献性状的基因组共居进一步支持了根形态特征在DDSR下改善养分吸收和籽粒产量的作用。确定了重要MTA的QTL /候选基因。携带这些QTL的有前途的后代可以作为潜在的供体,在基因组学辅助的育种计划中加以利用,以提高DDSR下的谷物产量和适应性。

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