Multi-environment Evaluations Across Ecological Regions Reveal That the Kernel Oil Content of Cottonseed Is Equally Determined by Genotype and Environment
文献类型: 外文期刊
第一作者: Gong, Juwu
作者: Gong, Juwu;Liu, Ping;Xiao, Xianghui;Liu, Ruixian;Chen, Quanjia;Yuan, Youlu;Gong, Juwu;Liu, Ping;Xiao, Xianghui;Liu, Ruixian;Chen, Quanjia;Yuan, Youlu;Gong, Juwu;Kong, Depei;Liu, Ping;Xiao, Xianghui;Liu, Ruixian;Shang, Haihong;Shi, Yuzhen;Li, Junwen;Ge, Qun;Liu, Aiying;Deng, Xiaoying;Fan, Senmiao;Pan, Jingtao;Yuan, Youlu;Gong, Wankui;Liu, Changwen;Li, Pengtao;Lu, Quanwei;Shang, Haihong;Yuan, Youlu
作者机构:
关键词: Gossypium hirsutum; kernel oil content; GxE interaction; climate factor; stability
期刊名称:JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY ( 影响因子:5.895; 五年影响因子:6.048 )
ISSN: 0021-8561
年卷期: 2022 年 70 卷 8 期
页码:
收录情况: SCI
摘要: Cotton is the fifth-largest oil crop in the world. A high kernel oil content (KOC) and high stability are important cottonseed attributes for food security. In this study, the phenotype of KOC and the genotype-by-environment interaction factors were collectively dissected using 250 recombinant inbred lines, their parental cultivars sGK156 and 901-001, and CCRI70 across multi-environments. ANOVA and correlation analysis showed that both genotype and environment contributed significantly to KOC accumulation. Analyses of additive main effect multiplicative interaction and genotype-by-environment interaction biplot models presented the effects of genotype, environment, and genotype by environment on KOC performance and the stability of the experimental materials. Interaction network analysis revealed that meteorological and geographical factors explained 38% of the total KOC variance, with average daily rainfall contributing the largest positive impact and cumulative rainfall having the largest negative impact on KOC accumulation. This study provides insight into KOC accumulation and could direct selection strategies for improved KOC and field management of cottonseed in the future.
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