Sun Tingting, Zhang Qi, Liu Lu, Tang Yujie, Wang Jiabao, Wang Kun, Yuan Boran, Wang Piwu
Jilin Agricultural University, Changchun 130000, China.
Jilin Academy of Agricultural Sciences, Changchun 130000, China.
Breed Sci. 2024 Jun;74(3):223-231. doi: 10.1270/jsbbs.23057. Epub 2024 Jun 26.
As an essential grain, oil, and feed crop worldwide, soybean plays a crucial role. Developing high-yielding and high-quality soybean varieties is a critical goal for breeders. The grain weight per plant and 100-grain weight directly impact the soybean yield. This study combined genotypic data from the population with phenotypic data. Based on genome-wide association analysis (GWAS), GLM and MLM analysis models were used to locate the Gm04_21489088, Gm04_15703616, and Gm04_46466250 are loci related to soybean grain weight per plant, and find the Gm09_20334173, Gm04_39518612 and Gm04_39518624 are loci related to 100-seed weight. After performing a reference comparison, we conducted gene annotation and identified candidate genes and , potentially associated with grain weight per plant in soybeans. These genes are primarily involved in protein synthesis and cell differentiation processes. The candidate gene , associated with the 100-grain weight trait, was successfully annotated. The analysis revealed that the gene primarily involves enzyme activity, suggesting its potential role in regulating grain weight. These findings offer valuable insights into the mechanism of soybean yield and serve as a critical theoretical foundation and genetic resource for cultivating new soybean germplasm with high yield. These findings are of immense significance for future research endeavors to achieve high-yielding soybean varieties.
作为全球重要的粮食、油料和饲料作物,大豆发挥着关键作用。培育高产优质大豆品种是育种者的关键目标。单株粒重和百粒重直接影响大豆产量。本研究将群体的基因型数据与表型数据相结合。基于全基因组关联分析(GWAS),使用GLM和MLM分析模型定位到Gm04_21489088、Gm04_15703616和Gm04_46466250是与大豆单株粒重相关的位点,并发现Gm09_20334173、Gm04_39518612和Gm04_39518624是与百粒重相关的位点。在进行参考比对后,我们进行了基因注释,鉴定出了可能与大豆单株粒重相关的候选基因 和 。这些基因主要参与蛋白质合成和细胞分化过程。与百粒重性状相关的候选基因 已成功注释。分析表明,该基因主要涉及酶活性,表明其在调节粒重方面的潜在作用。这些发现为大豆产量形成机制提供了有价值的见解,并为培育高产大豆新种质提供了关键的理论基础和遗传资源。这些发现对未来实现高产大豆品种的研究工作具有极其重要的意义。