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机构地区:[1]Institute of Agriculture and Life Sciences,Gyeongsang National University,Jinju 660-701,South Korea [2]Division of Applied Life Science,Gyeongsang National University,Jinju 660-701,South Korea
出 处:《Plant Communications》2024年第5期94-96,共3页植物通讯(英文)
基 金:support of the Cooperative Research Program for Agriculture Science and Technology Development (project no.PJ016990)of the Rural Development Administration,Republic of Korea.
摘 要:Rice is the staple food for more than half of the world’s population,and the demand for rice is expected to increase by 28%by 2050(Jiang et al.,2017).However,rice production is one of the largest anthropogenic sources of the potent greenhouse gas methane(CH4),accounting for 22%of total agricultural CH4 emissions(Qian et al.,2023).Therefore,to achieve sustainable intensification of rice cultivation,it is necessary to increase yields while reducing CH4 emissions.Field management techniques to reduce CH4 emissions while maintaining high yields have been studied extensively over the past few decades,but crop breeding to reduce CH4 emissions without compromising yields has received less attention(Kwon et al.,2023).
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