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水稻碳氮吸收、分配与积累对施肥的响应

Effect of Fertilization on the Absorption,Partition and Accumulation of Carbon and Nitrogen of Rice Under the Equal N Conditions

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【作者】 冯蕾童成立石辉吴金水李勇黄铁平夏海鳌

【Author】 FENG Lei1,2,TONG Cheng-li2,SHI Hui1,WU Jin-shui2,LI Yong2,HUANG Tie-ping3,XIA Hai-ao3(1.School of Environment and Municipal Engineering,Xi’an University of Architecture and Technology,Xi’an 710055,China;2.Key Laboratory for Agro-Ecological Processes in Subtropical Regions,Institute of Subtropical Agriculture,Chinese Academy of Sciences,Changsha 410125,China;3.Hunan Extension Service for Soil and Fertilizer,Changsha 410005,China)

【机构】 西安建筑科技大学环境与市政工程学院中国科学院亚热带农业生态研究所农业生态系统过程重点实验室湖南省土壤肥料工作站

【摘要】 以亚热带典型稻田生态系统长期定位试验为对象,研究等氮条件下不同施肥方式对水稻植株碳氮吸收、分配与积累的影响,分析了水稻碳氮的积累关系.结果表明,低量有机肥结合化肥配施能有效促进碳素在水稻植株体内的分配.有机-无机肥配施处理下水稻茎叶和籽实中氮含量相对较高,分别为8.9~10.2 g.kg-1和11.9~14.8 g.kg-1,分别比单施化肥处理高13%~53%和9%~19%,比对照(不施肥)处理高12%~77%和23%~32%.水稻碳、氮储量大部分积累在植株的地上部分,其中,有机-无机肥配施处理下水稻籽实中碳、氮储量较大,分别为3467.8~4323.9 kg.hm-2和120.3~135.2 kg.hm-2,比单施化肥处理分别高13%~23%和26%~45%.研究表明,籽实是水稻植株主要的碳、氮汇,有机-无机肥料配施有利于水稻碳的积累和氮的吸收,其水稻碳氮的固定、吸收还具有一定的潜力.

【Abstract】 In this study,the assimilation,partition and accumulation of carbon(C) and nitrogen(N),as well as the relationship between C and N accumulation of rice,were studied from typical paddy ecosystems under long-term fertilizer applications with equal N inputs in subtropical China.The results showed that chemical fertilizer plus low organic manure(LOM) could promote effectively the distribution of C in the rice plant.The N content in the stem-leaf and grain of rice under organic-inorganic fertilization was 8.9-10.2 g.kg-1 and 11.9-14.8 g.kg-1 respectively.It was much higher than under other treatments,with about 13%-53% and 9%-19% higher than under the chemical fertilization(NPK),separately and 12%-77% and 23%-32% higher than under the control treatment(CK),respectively.The C and N storages of rice were mainly accumulated in the aboveground part.Organic-inorganic fertilization treatment possessed higher storages of C(3 467.8-4 323.9 kg.hm-2) and N(120.3-135.2 kg.hm-2) in the rice grain,which was about 13%-23% of C and 26%-45% of N higher than under NPK treatment.It indicated that rice grain was the main sink of C and N.The organic-inorganic fertilization was in favor of C accumulation and N absorption in the rice plant and it still possesses an obvious potential in C and N sequestration and absorption in subtropical paddy field.

【基金】 国家重点基础研究发展规划(973)项目(2010CB833501-01-20);国家科技支撑计划项目(2008BAD95B02);国家自然科学基金面上项目(40971180)
  • 【文献出处】 环境科学 ,Environmental Science , 编辑部邮箱 ,2011年02期
  • 【分类号】S511
  • 【被引频次】40
  • 【下载频次】806
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