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October 10, 2022Frontiers in Plant Science423 citationsOpen Access

Impact of climate change on agricultural production; Issues, challenges, and opportunities in Asia

MRMuhammad Habib ur RahmanUniversity of GöttingenAAAshfaq AhmadUniversity of Azad Jammu and KashmirARAhsan RazaKhwaja Fareed University of Engineering and Information Technology

Key Points

  • Quantify the impacts of projected mid-century climate change on rice and wheat yields and evaluate adaptation strategies for sustainable agricultural productivity.
  • Coupled five global climate models (GCMs), two crop models (DSSAT and APSIM), and the Trade-off Analysis Minimum Data Model (TOA-MD) to simulate mid-century (2040–2069) climate impacts in Pakistan.
  • Evaluated agronomic adaptation strategies, including adjustments to sowing dates, planting density, nitrogen application, and irrigation, alongside a literature review of climate-smart solutions across Asia.
  • Mid-century projections indicate a 2.8°C rise in maximum temperature and a 2.2°C rise in minimum temperature.
  • DSSAT predicted yield reductions of 15.2% in rice and 14.1% in wheat, whereas APSIM predicted yield reductions of 17.2% in rice and 12.0% in wheat.
  • Optimization of crop management practices improved cropping system productivity and farm profitability under climate change scenarios.

Abstract

Agricultural production is under threat due to climate change in food insecure regions, especially in Asian countries. Various climate-driven extremes, i.e., drought, heat waves, erratic and intense rainfall patterns, storms, floods, and emerging insect pests have adversely affected the livelihood of the farmers. Future climatic predictions showed a significant increase in temperature, and erratic rainfall with higher intensity while variability exists in climatic patterns for climate extremes prediction. For mid-century (2040-2069), it is projected that there will be a rise of 2.8°C in maximum temperature and a 2.2°C in minimum temperature in Pakistan. To respond to the adverse effects of climate change scenarios, there is a need to optimize the climate-smart and resilient agricultural practices and technology for sustainable productivity. Therefore, a case study was carried out to quantify climate change effects on rice and wheat crops and to develop adaptation strategies for the rice-wheat cropping system during the mid-century (2040-2069) as these two crops have significant contributions to food production. For the quantification of adverse impacts of climate change in farmer fields, a multidisciplinary approach consisted of five climate models (GCMs), two crop models (DSSAT and APSIM) and an economic model Trade-off Analysis, Minimum Data Model Approach (TOAMD) was used in this case study. DSSAT predicted that there would be a yield reduction of 15.2% in rice and 14.1% in wheat and APSIM showed that there would be a yield reduction of 17.2% in rice and 12% in wheat. Adaptation technology, by modification in crop management like sowing time and density, nitrogen, and irrigation application have the potential to enhance the overall productivity and profitability of the rice-wheat cropping system under climate change scenarios. Moreover, this paper reviews current literature regarding adverse climate change impacts on agricultural productivity, associated main issues, challenges, and opportunities for sustainable productivity of agriculture to ensure food security in Asia. Flowing opportunities such as altering sowing time and planting density of crops, crop rotation with legumes, agroforestry, mixed livestock systems, climate resilient plants, livestock and fish breeds, farming of monogastric livestock, early warning systems and decision support systems, carbon sequestration, climate, water, energy, and soil smart technologies, and promotion of biodiversity have the potential to reduce the negative effects of climate change.

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Cite This Study

Rahman et al. (2022) studied this question.

synapsesocial.com/papers/69db2caf0d8d6ef495a3d365https://doi.org/10.3389/fpls.2022.925548
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