Genome-Wide Analysis and Genomic Prediction of Chilling Tolerance of Maize During Germination Stage Using Genotyping-by-Sequencing SNPs
文献类型: 外文期刊
第一作者: Cao, Shiliang
作者: Cao, Shiliang;Yu, Tao;Yang, Gengbin;Li, Wenyue;Ma, Xuena;Zhang, Jianguo
作者机构:
关键词: maize; chilling tolerance; germination; genomic prediction; SNP; association mapping
期刊名称:AGRICULTURE-BASEL ( 影响因子:3.6; 五年影响因子:3.8 )
ISSN:
年卷期: 2024 年 14 卷 11 期
页码:
收录情况: SCI
摘要: Chilling injury during the germination stage (CIGS) of maize significantly hinders production, particularly in middle- and high-latitude regions, leading to slow germination, seed decay, and increased susceptibility to pathogens. This study dissects the genetic architecture of CIGS resistance expressed in terms of the relative germination rate (RGR) in maize through association mapping using genotyping-by-sequencing (GBS) single-nucleotide polymorphisms (SNPs). A natural panel of 287 maize inbred lines was evaluated across multiple environments. The results revealed a broad-sense heritability of 0.68 for chilling tolerance, with 12 significant QTLs identified on chromosomes 1, 3, 5, 6, and 10. A genomic prediction analysis demonstrated that the rr-BLUP model outperformed other models in accuracy, achieving a moderate prediction accuracy of 0.44. This study highlights the potential of genomic selection (GS) to enhance chilling tolerance in maize, emphasizing the importance of training population size, marker density, and significant markers on prediction accuracy. These findings provide valuable insights for breeding programs aimed at improving chilling tolerance in maize.
分类号:
- 相关文献
作者其他论文 更多>>
-
Polymerization of beneficial plant height QTLs to develop superior lines which can achieving hybrid performance levels
作者:Kang, Congbin;Hao, Yichen;Sun, Mingfei;Li, Mengyao;Tian, Ziang;Zhao, Yajie;Zhou, Chao;Zhao, Xiang Yu;Zhang, Xian Sheng;Yang, Xuerong;Liu, Hongjun;Zhang, Lin;Dong, Ling;Liu, Xianjun;Zeng, Xing;Sun, Yanjie;Cao, Shiliang;Luebberstedt, Thomas
关键词:Heterosis; Complex agronomic traits; Plant height; Molecular design; Pyramiding QTL line (PQL); Maize
-
Genome-Wide Identification and Expression Analysis Under Abiotic Stress of the Lipoxygenase Gene Family in Maize (Zea mays)
作者:Li, Sinan;Hou, Shuai;Sun, Yuanqing;Sun, Minghao;Sun, Yan;Li, Xin;Li, Yunlong;Wang, Luyao;Cai, Quan;Guo, Baitao;Zhang, Jianguo
关键词:maize; LOX; abiotic stress; gene family; expression analysis
-
Synergizing postharvest physiology and nanopackaging for edible mushroom preservation
作者:Gong, Ming;Zhang, Tongyan;Wu, Yingying;Shang, Junjun;Gong, Ming;Su, Erzheng;Cao, Yu;Gong, Ming;Zhang, Tongyan;Zhang, Jianguo
关键词:Edible fungi; Postharvest preservation; Physiological changes; Nanopackaging; Food nanotechnology
-
Myocyte enhancer factor 2 upregulates expression of myostatin promoter in Yesso scallop, Patinopecten yessoensis
作者:Yang, Hongsu;Yang, Hongsu;Zhou, Liqing;Wu, Biao;Liu, Zhihong;Sun, Xiujun;Yang, Hongsu;Zhou, Liqing;Wu, Biao;Liu, Zhihong;Sun, Xiujun;Zheng, Yanxin;Yu, Tao
关键词:Scallops; Myostatin; Dual-luciferase reporter assay; Myocyte enhancer factor
-
Comparative Transcriptome Analysis Elucidates the Desiccation Stress Adaptation in Sargassum muticum
作者:Cao, Wei;Zhang, Mingyi;Wu, Nan;Zheng, Yanxin;Han, Haiying;Yu, Tao;Li, Bo;Zheng, Yanxin;Qu, Pei;Li, Xiaodong;Li, Xiaodong;Wu, Zhongxun
关键词:
Sargassum muticum ; brown seaweed; desiccation stress; RNA-seq -
A functional role for myostatin in muscle hyperplasia and hypertrophy revealed by comparative transcriptomics in Yesso scallop Patinopecten yessoensis
作者:Yang, Hongsu;Wu, Biao;Liu, Zhihong;Liu, Shufang;Sun, Xiujun;Zhou, Liqing;Yang, Hongsu;Wu, Biao;Liu, Zhihong;Liu, Shufang;Sun, Xiujun;Zhou, Liqing;Yang, Hongsu;Zheng, Yanxin;Yu, Tao
关键词:Yesso scallop; Myostatin; Muscle fiber
-
Integrating Genetic Diversity and Agronomic Innovations for Climate-Resilient Maize Systems
作者:Li, Xin;Li, Yunlong;Sun, Yan;Li, Sinan;Cai, Quan;Li, Shujun;Sun, Minghao;Yu, Tao;Meng, Xianglong;Zhang, Jianguo
关键词:maize; climate resilience; climatic change; genomic selection; multiomics; speed breeding; gene editing