Impact of Climate Change on Agriculture and Its Mitigation Strategies: A Review
Влияние изменения климата на сельское хозяйство и стратегии его смягчения: обзор
2021-01-27
SCID: 54.1/ukjnwxay
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climate changecrop productivityfood securitygreenhouse-gas emissionsmitigation strategies
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Abstract (AI)
Climate change is a global threat to the food and nutritional security of the world. As greenhouse-gas emissions in the atmosphere are increasing, the temperature is also rising due to the greenhouse effect. The average global temperature is increasing continuously and is predicted to rise by 2 °C until 2100, which would cause substantial economic losses at the global level. The concentration of CO2, which accounts for a major proportion of greenhouse gases, is increasing at an alarming rate, and has led to higher growth and plant productivity due to increased photosynthesis, but increased temperature offsets this effect as it leads to increased crop respiration rate and evapotranspiration, higher pest infestation, a shift in weed flora, and reduced crop duration. Climate change also affects the microbial population and their enzymatic activities in soil. This paper reviews the information collected through the literature regarding the issue of climate change, its possible causes, its projection in the near future, its impact on the agriculture sector as an influence on physiological and metabolic activities of plants, and its potential and reported implications for growth and plant productivity, pest infestation, and mitigation strategies and their economic impact.
Key Findings
1
Climate change alters soil microbial populations and their enzymatic activities, potentially affecting soil processes and crop performance.
2
Climate change threatens global food and nutritional security, with average global temperature projected to increase by 2 °C by 2100 and cause substantial economic losses.
3
Higher temperatures contribute to increased pest infestation, shifts in weed flora, and shortened crop duration, adversely affecting agricultural productivity.
4
Rising atmospheric CO2 can enhance photosynthesis, growth, and plant productivity, but warming offsets these benefits through increased respiration and evapotranspiration.
5
The review examines agricultural mitigation strategies and their reported economic impacts alongside climate change’s physiological, metabolic, and productivity effects on crops.
Research Object
Agriculture (crop systems and soil microbial communities) under climate change
Research Subject
Climate-change impacts on plant physiological and metabolic processes, crop growth and productivity, pest infestation, soil microbial activity, and mitigation strategies
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2021-01-27
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