Improving resilience to high temperature in drought: water replenishment enhances sucrose and amino acid metabolisms in maize grain
文献类型: 外文期刊
第一作者: Wang, Xinglong
作者: Wang, Xinglong;Wang, Junhao;Zhu, Yupeng;Qu, Ziren;Wang, Pu;Meng, Qingfeng;Wang, Xinglong;Liu, Xiwei
作者机构:
关键词: heat stress; grain weight; water replenishment; transcriptome; starch biosynthesis; maize
期刊名称:PLANT JOURNAL ( 影响因子:7.2; 五年影响因子:7.9 )
ISSN: 0960-7412
年卷期: 2024 年
页码:
收录情况: SCI
摘要: Heat stress poses a significant threat to maize, especially when combined with drought. Recent research highlights the potential of water replenishment to ameliorate grain weight loss. However, the mitigating mechanisms of heat in drought stress, especially during the crucial early grain-filling stage, remain poorly understood. We investigated the mechanism for mitigating heat in drought stress by water replenishment from the 12th to the 32nd days after silking in a controlled greenhouse experiment (Exp. I) and field trial (Exp. II). A significant reduction in grain weight was observed in heat stress compared to normal conditions. When water replenishment was applied to increase soil water content (SWC) under heat stress, the grain yield exhibited a notable increase ranging from 28.4 to 76.9%. XY335 variety was used for transcriptome sequencing to analyze starch biosynthesis and amino acid metabolisms in Exp. I. With water replenishment, the transcripts of genes responsible for trehalose 6-phosphate phosphates (TPP), alpha-trehalase (TRE), ADP-glcpyrophosphorylase, and starch synthase activity were stimulated. Additionally, the expression of genes encoding TPP and TRE contributed to an enhanced conversion of trehalose to glucose. This led to the conversion of sucrose from glucose-1-phosphate to ADP-glucose and ADP-glucose to amylopectin, ultimately increasing starch production by 45.1%. Water replenishment to boost SWC during heat stress also elevated the levels of essential amino acids in maize, including arginine, serine, tyrosine, leucine, glutamic acid, and methionine, providing valuable support to maize plants in adversity. Field trials further validated the positive impact of water replenishment on SWC, resulting in a notable increase in grain yield ranging from 7.1 to 9.2%. This study highlights the vital importance of adapting to abiotic stress and underscores the necessity of developing strategies to counteract its adverse effects on crop yield. Heat stress poses a significant threat to maize, especially when combined with drought. Recent research highlights the potential of water replenishment to ameliorate grain weight loss. image
分类号:
- 相关文献
作者其他论文 更多>>
-
Comprehensive metabolic profiling of dioxin-like compounds exposure in laying hens: Implications for toxicity assessment
作者:Hu, Xiaoxu;Xu, Tong;Chen, Yangsheng;Zheng, Liping;Wang, Chu;Zhang, Qinghua;Xie, Heidi Qunhui;Xu, Li;Zhao, Bin;Hu, Xiaoxu;Xu, Tong;Chen, Yangsheng;Zheng, Liping;Wang, Chu;Zhang, Qinghua;Xie, Heidi Qunhui;Xu, Li;Zhao, Bin;Zhang, Qian;Tang, Lijuan;Wang, Pu;Dong, Shujun;Wang, Ruiguo;Zhang, Su
关键词:Polychlorinated dibenzo-p-dioxins; and furans; Dioxin-like polychlorinated; biphenyls; Laying hens; Metabolomic
-
Heat stress and sexual reproduction in maize: unveiling the most pivotal factors and the greatest opportunities
作者:Lv, Xuanlong;Yao, Qian;Mao, Fen;Liu, Mayang;Wang, Yudong;Wang, Xin;Liao, Shuhua;Wang, Pu;Huang, Shoubing;Gao, Yingbo;Wang, Yuanyuan
关键词:Flowering stage; high temperature; pollen tube; seed set; sexual organs; Zea mays
-
Adaptation to priming drought at six-leaf stage relieves maize yield loss to individual and combined drought and heat stressors around flowering
作者:Liu, Xiwei;Chang, Xuhong;Wang, Yanjie;Wang, Demei;Liu, Xiwei;Meng, Qingfeng;Wang, Pu;Wang, Xinglong
关键词:Combined stressors; Starch biosynthesis; Kernel numbers; Kernel weight; Yield
-
Impact of individual and combined water deficit and high temperature on maize seed set: a field study
作者:Liu, Xiwei;Chang, Xuhong;Wang, Demei;Wang, Yanjie;Liu, Xiwei;Meng, Qingfeng;Wang, Pu;Wang, Xinglong
关键词:Maize; Water deficit; High temperature; Seed set; Yield
-
Identification and function analysis of GABA branch three gene families in the cotton related to abiotic stresses
作者:Zheng, Juyun;Liang, Yajun;Gong, Zhaolong;Wang, Junduo;Li, Xueyuan;Zhang, Zeliang;Zhang, Nala;Wang, Junhao;Sang, Zhiwei;Ditta, Allah
关键词:Gene family; GABA branch; Stress; Expression analysis
-
Enhancing spatial and temporal coordination of soil water and root growth to improve maize (Zea mays L.) yield
作者:Gao, Jia;Zhang, Yingjun;Xu, Chenchen;Wang, Pu;Huang, Shoubing;Gao, Jia;Lv, Yanjie
关键词:Maize; Soil water content; Root spatial distribution; Root length density; Yield
-
Synergistic effects of planting density and nitrogen fertilization on chlorophyll degradation and leaf senescence after silking in maize
作者:Lan, Tianqiong;Wang, Xinglong;Feng, Dongju;Kong, Fanlei;Yuan, Jichao;Du, Lunjing;Lan, Tianqiong;Du, Lunjing;Wang, Xinglong;Zhan, Xiaoxu;Liu, Qinlin;Wei, Gui;Lyu, Chengcheng;Liu, Fan;Gao, Jiaxu;Feng, Dongju;Kong, Fanlei;Yuan, Jichao
关键词:Density; Nitrogen fertilization; Leaf senescence; Chlorophyll-degrading enzyme; Logistic model