王利民, 王飞, 邢世和, 黄毅斌, 林国泰. 紫云英翻压还田对水稻土有机碳转化的影响机制研究进展[J]. 福建农业科技, 2019, 50(8): 66-70. DOI: 10.13651/j.cnki.fjnykj.2019.08.016
    引用本文: 王利民, 王飞, 邢世和, 黄毅斌, 林国泰. 紫云英翻压还田对水稻土有机碳转化的影响机制研究进展[J]. 福建农业科技, 2019, 50(8): 66-70. DOI: 10.13651/j.cnki.fjnykj.2019.08.016
    WANG Li-min, WANG Fei, XING Shi-he, HUANG Yi-bin, LIN Guo-tai. Research Progress on the Influence Mechanism of Continuous Return to Field of Astragalus Sinicus on Organic Carbon Conversion in Paddy Soil[J]. Fujian Agricultural Science and Technology, 2019, 50(8): 66-70. DOI: 10.13651/j.cnki.fjnykj.2019.08.016
    Citation: WANG Li-min, WANG Fei, XING Shi-he, HUANG Yi-bin, LIN Guo-tai. Research Progress on the Influence Mechanism of Continuous Return to Field of Astragalus Sinicus on Organic Carbon Conversion in Paddy Soil[J]. Fujian Agricultural Science and Technology, 2019, 50(8): 66-70. DOI: 10.13651/j.cnki.fjnykj.2019.08.016

    紫云英翻压还田对水稻土有机碳转化的影响机制研究进展

    Research Progress on the Influence Mechanism of Continuous Return to Field of Astragalus Sinicus on Organic Carbon Conversion in Paddy Soil

    • 摘要: 长期过量施用化肥,导致稻田土壤生产力下降,中低产田比重加大,已严重威胁粮食安全。近年来,水稻化肥绿色替代技术对农田土壤营养物质转化的影响已成为研究热点。然而,目前系统研究化肥减施处理下紫云英绿肥持续回田后稻田土壤有机碳转化的影响因子及机制还很缺乏。因此,综述了化肥减施处理下紫云英持续回田后土壤有机碳转化过程,并阐析了紫云英持续回田后土壤物理、化学和生物学性质对有机碳转化的影响及其机理,特别是阐述了与碳固定功能相关的微生物种类在有机碳转化过程中发挥的作用,为将来有效调控水稻土有机碳转化提供新的途径,实现土壤增碳和水稻增产。

       

      Abstract: The excessive application of fertilizers for a long time has led to the decrease of soil productivity in rice fields and the increase of the proportion of middle-and low-yield fields, which has seriously threatened the food security. In recent years, the effect of green replacement technology of rice fertilizer on soil nutrient conversion has become a research hotspot. However, at present, the influence factors and mechanism of soil organic carbon conversion after continuous return to the field of Astragalus sinicus green manure under the treatment of reduced fertilization were still lacking. Therefore, the process of soil organic carbon conversion after continuous return to the field of Astragalus sinicus under the treatment of reduced fertilization was reviewed, and then the effects of soil physical, chemical and biological properties on organic carbon conversion and its mechanism after continuous return to the field of Astragalus sinicus were analyzed. In particular, the role of microbial species related to carbon fixation in the organic carbon conversion was described, which provided a new way for effective regulation of organic carbon conversion in paddy soil in the future, so as to realize soil carbon increase and rice yield increase.

       

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