Drought-resistant cereals: impact on water sustainability and nutritional quality

被引:10
|
作者
Thomas, W. T. B. [1 ]
机构
[1] James Hutton Inst, Dundee DD2 5DA, Scotland
基金
英国生物技术与生命科学研究理事会;
关键词
Barley; Wheat; Grain quality; Drought tolerance; Genetics; STRESS TOLERANCE; BETA-GLUCAN; WHEAT; BARLEY; HEAT; STABILITY; PROTEINS;
D O I
10.1017/S0029665115000026
中图分类号
R15 [营养卫生、食品卫生]; TS201 [基础科学];
学科分类号
100403 ;
摘要
This review uses production and climate data to examine global and local production trends that can be related to events such as drought. UK grain quality data is also available and provides an overview of trends in protein content. Literature surveys show a consistent reduction in grain size due to the effects of temperature and/or drought. A review of gene expression studies showed that most genes involved in starch synthesis are down regulated under heat stress. Net protein production is also reduced under heat and/or drought stress but apparently to a lesser degree as the reduction in grain mass is larger, resulting in an increase in protein concentration. Modelling has suggested that adaptation could be achieved by moving production to more extreme latitudes but other research suggests that simply transferring germplasm from one region to another is unlikely to be successful. Another review has identified drought tolerance phenotypes that could be used to breed more drought tolerant crops. At the time of the review, the authors concluded that phenotypic selection was generally preferable to forms of marker-assisted breeding and have used the approach to produce drought tolerant wheat cultivars. Transgenic approaches have also been shown to improve drought tolerance under controlled environment conditions but there are no results to show how well these results translate into improved crop performance under field conditions. The recent advances in genomic data and detecting marker-trait associations suggest that marker-assisted breeding will play a much more important role in breeding drought tolerant cereals in the future.
引用
收藏
页码:191 / 197
页数:7
相关论文
共 50 条
  • [21] CANOPY TEMPERATURE OF DROUGHT-RESISTANT AND DROUGHT-SENSITIVE GENOTYPES OF MAIZE
    KIRKHAM, MB
    SUKSAYRETRUP, K
    WASSOM, CE
    KANEMASU, ET
    MAYDICA, 1984, 29 (03): : 287 - 303
  • [22] Signpost in the maze: high-quality genome of drought-resistant maize germplasm released
    Yang Mu
    Mingqiu Dai
    Science China(Life Sciences), 2023, 66 (09) : 2196 - 2197
  • [23] Signpost in the maze: high-quality genome of drought-resistant maize germplasm released
    Yang Mu
    Mingqiu Dai
    Science China(Life Sciences) , 2023, (09) : 2196 - 2197
  • [24] Signpost in the maze: high-quality genome of drought-resistant maize germplasm released
    Yang Mu
    Mingqiu Dai
    Science China Life Sciences, 2023, 66 : 2196 - 2197
  • [25] Building Drought-Resistant Soil Map by Using GIS
    Kurucu, Yusuf
    Esetlili, M. Tolga
    Cicek, Gizem
    Demirtas, Ozge
    2019 8TH INTERNATIONAL CONFERENCE ON AGRO-GEOINFORMATICS (AGRO-GEOINFORMATICS), 2019,
  • [26] Morphological and physiological traits of roots and their relationships with water productivity in water-saving and drought-resistant rice
    Chu, Guang
    Chen, Tingting
    Wang, Zhiqin
    Yang, Jianchang
    Zhang, Jianhua
    FIELD CROPS RESEARCH, 2014, 162 : 108 - 119
  • [27] Productivity and water use of ratoon rice cropping systems with water-saving, drought-resistant rice
    Xia, Fangzhao
    Wang, Wukai
    Weng, Yulin
    Ali, Ihsan
    Zhao, Jinsong
    Nie, Zhongnan
    Li, Xinghua
    Yao, Xuan
    Yang, Tewu
    AGRONOMY JOURNAL, 2022, 114 (04) : 2352 - 2363
  • [28] Identification of Drought-Resistant Genes in Shanlan Upland Rice
    Niu, Xiaoling
    Zhai, Nanxin
    Yang, Xinsen
    Su, Meng
    Liu, Caiyue
    Wang, Liu
    Qu, Pengzheng
    Liu, Wuge
    Yuan, Qianhua
    Pei, Xinwu
    AGRICULTURE-BASEL, 2022, 12 (02):
  • [29] Correction to: Physiological Mechanism of Drought-Resistant Rice Coping With Drought Stress
    Benfu Wang
    Xiaolong Yang
    Liang Chen
    Yuanyuan Jiang
    Hongying Bu
    Yang Jiang
    Ping Li
    Cougui Cao
    Journal of Plant Growth Regulation, 2022, 41 : 2652 - 2652