Crop Improvement Division, ICAR - National Rice Research Institute, Cuttack, India.
Department of Genetics and Plant breeding, Naini Agricultural Institute, Sam Higginbottom University of Agriculture, Technology and Sciences (SHUATS), Prayagraj, India.
J Sci Food Agric. 2023 Jan 30;103(2):720-728. doi: 10.1002/jsfa.12183. Epub 2022 Sep 2.
To improve production efficiency, positive alleles corresponding to yield-related attributes must be accumulated in a single elite background. We designed and used cgSSR markers, which are superior to random SSR markers in genome-wide association study, to identify genomic regions that contribute to panicle characters and grain yield in this study.
As evidenced by the high polymorphic information content value and gene diversity coefficient, the new cgSSR markers were determined to be highly informative. These cgSSR markers were employed to generate genotype data for an association panel evaluated for four panicle characters and grain yield over three seasons. For five traits, 17 significant marker-trait associations on six chromosomes were discovered. The percentage of phenotypic variance that could be explained ranged from 4% to 13%. Unrelated gene-derived markers had a strong association with target traits as well.
Trait-associated cgSSR markers derived from corresponding or related genes ensure their utility in direct allele selection, while other linked markers aid in allele selection indirectly by altering the phenotype of interest. Through a marker-assisted breeding approach, these marker-trait associations can be leveraged to accumulate favourable alleles for yield enhancement in rice. © 2022 Society of Chemical Industry.
为了提高生产效率,必须在单个优良背景中积累与产量相关的性状的有利等位基因。我们设计并使用了 cgSSR 标记,与随机 SSR 标记相比,它们在全基因组关联研究中具有更高的优势,用于鉴定与穗部特征和籽粒产量相关的基因组区域。
高多态信息含量值和基因多样性系数表明,新的 cgSSR 标记具有高度信息性。这些 cgSSR 标记被用于生成关联面板的基因型数据,该关联面板在三个季节中评估了四个穗部特征和籽粒产量。对于五个性状,在六个染色体上发现了 17 个与标记显著相关的关联。可以解释的表型方差的百分比范围从 4%到 13%。与目标性状具有强关联的还有与基因无关的衍生标记。
来自相应或相关基因的与性状相关的 cgSSR 标记确保了它们在直接等位基因选择中的实用性,而其他连锁标记则通过改变感兴趣的表型间接地帮助等位基因选择。通过标记辅助育种方法,可以利用这些标记-性状关联来积累水稻产量提高的有利等位基因。©2022 化学工业协会。