Heat and Drought Stresses in Crops and Approaches for Their Mitigation

Тепловой и засушливый стресс у сельскохозяйственных культур и подходы к их смягчению
Mouna Lamaoui, Martin Jemo, Raju Datla, Faouzi Bekkaoui
2018-02-18

abiotic stress toleranceagronomic managementcrop productivitydrought stressheat stress
Drought and heat are major abiotic stresses that reduce crop productivity and weaken global food security, especially given the current and growing impacts of climate change and increases in the occurrence and severity of both stress factors. Plants have developed dynamic responses at the morphological, physiological and biochemical levels allowing them to escape and/or adapt to unfavorable environmental conditions. Nevertheless, even the mildest heat and drought stress negatively affects crop yield. Further, several independent studies have shown that increased temperature and drought can reduce crop yields by as much as 50%. Response to stress is complex and involves several factors including signaling, transcription factors, hormones, and secondary metabolites. The reproductive phase of development, leading to the grain production is shown to be more sensitive to heat stress in several crops. Advances coming from biotechnology including progress in genomics and information technology may mitigate the detrimental effects of heat and drought through the use of agronomic management practices and the development of crop varieties with increased productivity under stress. This review presents recent progress in key areas relevant to plant drought and heat tolerance. Furthermore, an overview and implications of physiological, biochemical and genetic aspects in the context of heat and drought are presented. Potential strategies to improve crop productivity are discussed.
1
Advances in genomics, biotechnology, information technology, agronomic management, and breeding can support development of crop varieties with improved productivity under heat and drought stress.
2
Crop stress responses involve coordinated morphological, physiological, biochemical, and molecular mechanisms, including signaling, transcription factors, hormones, and secondary metabolites.
3
Drought and heat are major abiotic stresses that reduce crop productivity and threaten global food security, with their frequency and severity increasing under climate change.
4
Independent studies indicate that combined or individual increases in temperature and drought can reduce crop yields by as much as 50%.
5
Reproductive development and grain production are particularly sensitive to heat stress in several crops, making this stage a key target for mitigation.

crops and plants exposed to heat and drought stress

physiological, biochemical, genetic, and adaptive responses to heat and drought stress, including mechanisms and strategies for improving crop productivity and tolerance

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2018-02-18
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Mouna Lamaoui
Martin Jemo
Raju Datla
Faouzi Bekkaoui
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