Raza Ali, Razzaq Ali, Mehmood Sundas Saher, Zou Xiling, Zhang Xuekun, Lv Yan, Xu Jinsong
Key Laboratory of Biology and Genetic Improvement of Oil Crops, Oil Crops Research Institute, Chinese Academy of Agricultural Sciences (CAAS), Wuhan 430062, China.
Centre of Agricultural Biochemistry and Biotechnology (CABB), University of Agriculture, Faisalabad 38040, Pakistan.
Plants (Basel). 2019 Jan 30;8(2):34. doi: 10.3390/plants8020034.
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.
农业与气候变化在各个方面相互关联,因为气候变化是生物和非生物胁迫的主要原因,这些胁迫会对一个地区的农业产生不利影响。土地及其农业正以不同方式受到气候变化的影响,例如年降雨量变化、平均温度、热浪、杂草、害虫或微生物的变化、大气中二氧化碳或臭氧水平的全球变化以及海平面波动。全球气候变化的威胁极大地引起了科学家的关注,因为这些变化正在对全球作物生产产生负面影响并危及全球粮食安全。根据一些预测报告,农业被认为是受气候变化不利影响最严重的活动。迄今为止,粮食安全和生态系统恢复力是全球最受关注的问题。气候智能型农业是在气候变化可能对全球作物生产产生巨大影响之前,降低其对作物适应性负面影响的唯一途径。在这篇综述论文中,我们总结了气候变化的原因、气候变化产生的胁迫、对作物的影响、现代育种技术以及应对气候变化的生物技术策略,以便培育出适应气候变化的作物。基因工程技术的革新还可以通过培育转基因植物,帮助克服极端环境条件下的粮食安全问题。