Genome-wide association study to identify candidate genes for submergence tolerance during rice seed germination
文献类型: 外文期刊
作者: Qiuyu Zhang;Bing Han;Di Cui;Zhengwu Zhao;Longzhi Han;Xiaoding Ma
作者机构:
期刊名称: Theoretical and Applied Genetics
ISSN: 0040-5752
年卷期: 2025 年 138 卷 2 期
页码:
收录情况: SCIE(2025版) ; ; EI(2025版)
摘要: Key message: Submergence tolerance QTLs for rice germination were identified via a genome-wide association study, and a new causal gene, LOC_Os06g17260, was identified. Abstract: Submergence stress is a major obstacle limiting the application of direct seeding in rice cultivation. Rapid bud and root growth helps plants establish a stronger growth base and improve their submergence tolerance. Therefore, mining genes for bud length (BL) and root length (RL) helps in the development of varieties that are adaptable to submergence and improve seedling emergence and yield of direct-seeded rice. In this study, a genome-wide association study of BL and RL was performed on a diverse rice collection consisting of 300 accessions. We identified a total of 37 QTLs, 13 of which had phenotypic contributions > 10%. The novel QTLs qBL6.2/qRL6.8, qBL6.3/qRL6.9, qBL6.4/qRL6.10, and qBL6.5/qRL6.11 on chromosome 6 were stably detected across BL and RL, and a total of 31 genes were detected in these four intervals. Concerning the gene annotation information and expression profiles, LOC_Os06g17090, LOC_Os06g17120, LOC_Os06g17140, LOC_Os06g17220, and LOC_Os06g17260 were selected as possible target genes. Through the validation of a knockout transgenic experiment, LOC_Os06g17260 was identified as the causal gene for submergence tolerance in rice at the germination stage. LOC_Os06g17260 encodes UDP-glucoronosyl and a UDP-glucosyl transferase domain-containing protein and contains two major haplotypes, with the Hap1 germplasm presenting greater submergence tolerance at the germination stage. These results provide new clues for exploring the molecular mechanisms that regulate submergence tolerance in rice and provide a promising source of genes for the molecular breeding of direct-seeded rice.
分类号:
- 相关文献
作者其他论文 更多>>
-
Long-term aging of oxychar and biochar: structural, adsorptive, and microbial transformations
作者:Cheng Ji;Shutao Wang;Man Zhang;Hang Sun;Qinggang Meng;Kexin Zhao;Yifan Li;Shiming Su;Bing Han;Wei Liu
关键词:Biochar aging;Heavy metal adsorption;Microbial succession;Oxychar;Soil organic matter
-
Metabolomic insights into the function and nutritional quality of special rice
作者:Di Cui;Zichao Zhu;Soon Wook Kwon;Joohyun Lee;Mingmao Sun;Xiaoding Ma;Chutao Wang;Bing Han;Xianyong Li;Longzhi Han
关键词:Differential metabolites;Flavonoids;Metabolomic analysis;Nutritional quality;Phenolic acids;Special rice;Γ-Aminobutyric acid
-
Haplotype Analysis of the GL7/GW7/SLG7 Gene and Its Application in Improving the Grain Quality of Three-Line Hybrid Rice
作者:Duo Xia;Peizhou Xu;Shuqin Zheng;Le Xue;Yuejiao Yin;Zhuchen Yao;Sikai Ding;Yusen Lai;Yipei Wang;Xiaoding Ma;Xianjun Wu;Hao Zhou
关键词:GL7/GW7;Grain Quality;Hybrid Rice;Oryza sativa
-
Anti-Inflammatory and Antidiarrheal Effects of Two Strains of Lactic Acid Bacteria Isolated from Healthy Pets on Escherichia coli K88-Induced Diarrhea in Mice
作者:Ya Zhao;Shukun Liang;Xiaoxin Fu;Yaping Guo;Yu Wang;Jiaxue Wang;Xiumin Wang;Zhenlong Wang;Hui Tao;Bing Han;Jinquan Wang
关键词:16S rDNA;diarrhea;inflammation;Lacticplantibacillus plantarum;LimosiLactobacillus reuteri;pathway
-
Effects of Dietary Supplementation with Yeast Hydrolysate on Immune Function, Fecal Short Chain Fatty Acids, and Intestinal Health in Cats
作者:Jintao Sun;Shukun Liang;Xinshu Gu;Jie Xu;Xiumin Wang;Zhenlong Wang;Hui Tao;Jinquan Wang;Bing Han
关键词:3-methylindole;cats;fecal microbiota;yeast hydrolysate
-
Anti-Bacterial and Anti-Inflammatory Properties of Sophoridine and Its Effect on Diarrhea in Mice
作者:Jiaxue Wang;Hui Tao;Qiuyu Fan;Zhenlong Wang;Bing Han;Xiumin Wang;Jingquan Wang
关键词:acute intestinal inflammation;anti-bacterial activity;anti-inflammatory activity;sophoridine
-
Lactobacillus plantarum L11 and Lactobacillus reuteri LR: Ameliorate Obesity via AMPK Pathway
作者:Shukun Liang;Jintao Sun;Xinshu Gu;Ya Zhao;Xiumin Wang;Hui Tao;Zhenlong Wang;Yougang Zhong;Jinquan Wang;Bing Han
关键词:gut microbiota;lipid metabolism;mechanism;probiotics