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Long‐term changes in paddy soil fertility in tropical Asia after 50 years of the Green Revolution

作者:Junta Yanai, Sota Tanaka, Atsushi Nakao, Susumu S. Abe, Mina Hirose, Keita Sakamoto, Fukiko Masai, Haruyoshi Saito, Nao Kajiwara, Ketsuda Dejbhimon, Anongnat Sriprachote, Porntiva Kanyawongha, Thanakorn Lattirasuvan, Nicola Timbas, Simplicio M. Medina, Tan Ngai Paing, Khairul Hafiz Mohd Yusoff, Toshiyuki Wakatsuki, Kazutake Kyuma · 发表于:European Journal of Soil Science · 年份:2021 · DOI:10.1111/ejss.13193 · 被引用次数:18 · 研究领域:Soil Carbon and Nitrogen Dynamics、Soil and Water Nutrient Dynamics、Rice Cultivation and Yield Improvement

Abstract Over 50 years of the Green Revolution since the 1960s, the global population has increased by 2.5 times, cereal production by 3.3 times and the use of N, P and K fertilisers by 9.4, 4.2 and 4.3 times, respectively. Information is still limited, however, on the influence of these impacts on the fertility status of agricultural soils. Here we investigated the influence of the Green Revolution on 142 paddy soils in three tropical Asian countries, that is, Thailand, the Philippines and Malaysia, during the given period by repeated soil sampling in the 1960s and 2010s at or near the same locations. We revealed that the phytoavailablility indices of three macronutrients – N, P and K, that is, available P, exchangeable K and total N, showed 743% ( p < 0.01), 12% and 1% increase on average, respectively, while total C showed 9% decline. Comprehensive investigation of overall fertility status by factor analysis using 11 soil parameters suggested that only the factor scores associated with ‘available P status’ increased drastically in all the three countries ( p < 0.01) whereas those associated with ‘organic matter and N contents’ and ‘inherent potentiality’ did not exhibit any consistent changes among the countries. In conclusion, intensive soil/fertiliser management systems under the Green Revolution have successfully improved the nutrient status, especially P status, of paddy soils with slight decrease of soil organic matter over the last 50 years, while a large amoun...