Impact of Climate Change on Crops Adaptation and Strategies to Tackle Its Outcome: A Review
Влияние изменения климата на адаптацию сельскохозяйственных культур и стратегии преодоления его последствий: обзор
2019-01-30
SCID: 54.1/tkycnx3g
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climate changeclimate-resilient cropsclimate-smart agriculturecrop adaptationgenetic engineering
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Abstract (AI)
Agriculture and climate change are internally correlated with each other in various aspects, as climate change is the main cause of biotic and abiotic stresses, which have adverse effects on the agriculture of a region. The land and its agriculture are being affected by climate changes in different ways, e.g., variations in annual rainfall, average temperature, heat waves, modifications in weeds, pests or microbes, global change of atmospheric CO₂ or ozone level, and fluctuations in sea level. The threat of varying global climate has greatly driven the attention of scientists, as these variations are imparting negative impact on global crop production and compromising food security worldwide. According to some predicted reports, agriculture is considered the most endangered activity adversely affected by climate changes. To date, food security and ecosystem resilience are the most concerning subjects worldwide. Climate-smart agriculture is the only way to lower the negative impact of climate variations on crop adaptation, before it might affect global crop production drastically. In this review paper, we summarize the causes of climate change, stresses produced due to climate change, impacts on crops, modern breeding technologies, and biotechnological strategies to cope with climate change, in order to develop climate resilient crops. Revolutions in genetic engineering techniques can also aid in overcoming food security issues against extreme environmental conditions, by producing transgenic plants.
Key Findings
1
Climate change generates diverse biotic and abiotic stresses, including altered rainfall, temperature extremes, pests, pathogens, atmospheric gases, and sea levels, that adversely affect crops.
2
Climate variability threatens global crop production and food security, with agriculture identified as one of the most vulnerable human activities.
3
Climate-smart agriculture is presented as essential for reducing climate-related impacts on crop adaptation and strengthening ecosystem resilience.
4
Genetic engineering, including transgenic plant production, is identified as a potential tool for addressing food-security challenges caused by climate change.
5
Modern breeding technologies and biotechnological strategies can support development of climate-resilient crops adapted to extreme environmental conditions.
Research Object
crops and crop production systems under climate change
Research Subject
climate-change impacts on crop adaptation and production, and strategies for developing climate-resilient crops
Publication Details
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2019-01-30
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