Dryland agricultural environment and sustainable productivity

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Title
Dryland agricultural environment and sustainable productivity
Author(s)
G X Li; B C Xu; L N Yin; S W Wang; S Q Zhang; L Shan; Sang Soo Kwak; Q Ke; X P Deng
Bibliographic Citation
Plant Biotechnology Reports, vol. 14, pp. 169-176
Publication Year
2020
Abstract
Global climate change is expected to cause progressively increased frequency and severity of drought events, which further seriously limit plant growth and crop yields. Increasing water use efficiency (WUE) and yield per unit rainfall are one of the most important challenges in dry land agriculture. Here, we reviewed the comprehensive technical strategies including conserving water to combine both increased agricultural productivity and resource conservation; enquiring into how crop plants respond to drought through morphological, physiological, and molecular modifications that occur in all plant organs; breeding for drought tolerance where there is a delineated stress environment and genotype × environment interactions are stable; effective conservation of rainfall and high efficiency of use. In addition, we discussed the preponderance of biological water-saving measures, which embraces improvements in WUE and drought tolerance, by genetic improvement and physiological regulation. Sustainable agriculture would be benefited from modern engineering such as biological engineering, conservation tillage, and breeding technologies.
Keyword
Conservation tillageDry land agricultureGlobal climate changeSustainable productionWater use efficiencyWater-saving biology
ISSN
1863-5466
Publisher
Springer
Full Text Link
http://dx.doi.org/10.1007/s11816-020-00613-w
Type
Article
Appears in Collections:
Division of Research on National Challenges > Plant Systems Engineering Research > 1. Journal Articles
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