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脲酶抑制剂/硝化抑制剂对植稻土壤中尿素N行为的影响

Effect of urease/nitrification inhibitors on the behavior of urea-N in the soil planted to rice

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【作者】 徐星凯周礼恺Oswald Van Cleemput

【Author】 XU Xing-Kai 1 ,ZHOU Li-Kai 2,Oswald Van Cleemput 3 (1.State Key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry, Institute of Atmospheric Physics,Chinese Academy of Sciences,Beijing 100029,China;2.Institute of Applied Eco

【机构】 中国科学院大气物理研究所大气边界层物理和大气化学国家重点实验室中国科学院沈阳应用生态研究所比利时根特大学农业和应用生物科学院 北京100029沈阳110015GhentB-9000

【摘要】 采用自制根盒试验 ,主要研究了脲酶抑制剂氢醌 (HQ)、硝化抑制剂双氰胺 (DCD)及二者组合对离水稻根际不同距离处 NH+ 4-N和 NO- 3 -N分布的影响。结果表明 ,DCD及其与 HQ组合均能显著促进稻株地上部分生长 ,始终显著降低水稻根际与近根际土中 NH+ 4-N含量直至施肥后 60 d。施肥后 2 0 d时 ,DCD及其与 HQ组合可使非根际土中 NH+ 4-N含量显著增加。随后 ,却出现相反现象。施肥后 2 0 d时 ,距根际不同距离的土壤中 ,配施 DCD或 DCD+HQ处理均能显著降低NO- 3 -N含量。随后 ,近根际和非根际仍保持上述现象直至施肥后 40 d;同未施 DCD处理相比 ,根际土壤却较早出现NO- 3 -N含量高峰 ,正好与水稻 N营养需求时期相一致。因此 ,DCD及其与 HQ组合可减少水稻根际环境下尿素 N损失潜势。通过不种稻土壤和距根际 3 cm处的土壤中尿素无机氮形态分布的差异 ,充分显示了研究水稻根际土壤氮素转化及相关抑制剂对其影响时 ,以取离根际 3 cm外的土壤作为非根际明显优于不种稻土壤。

【Abstract】 The influences of urease/nitrification inhibitors on urea-derived ammonium and nitrate contents in the soils at increasing distances from rice root rhizosphere were studied by a self-made rhizobox.The results showed that dicyandiamide (DCD) with or without hydroquinone (HQ) significantly improved the growth of rice during the period of cultivation, and decreased the urea-derived ammonium contents in rhizosphere and near rhizosphere soil until 60 days after fertilization.Treatments with DCD and with DCD plus HQ,could remain a much higher ammonium levels in rice non-rhizosphere soil at day 20 after fertilization than the control,but a contrary phenomenon was found afterwards.These two treatments significantly decreased nitrate contents in the soils at some distances from rice root rhizosphere at day 20 after fertilization,and later on,the soil out of the rhizobox remained the similar phenomenon until 40 days.In the presence of DCD,nitrate contents in rice root rhizosphere soil appeared much higher levels during an earlier period than the control.This period was just N utilization peak by rice.Hence,DCD and DCD plus HQ could,to some extent,eliminate the potential for urea-derived N loss in rice root rhizosphere soil.The plant-free soil is apparently not a satisfactory control treatment to study the dynamics of ammonium and nitrate in the rhizosphere soil compared to the non-rhizosphere soil(>3 cm from rice rhizosphere).

【基金】 国家自然科学基金 (批准号 :2 990 70 0 4);中国-比利时合作课题资助项目
  • 【文献出处】 生态学报 ,Acta Ecologica Sinica , 编辑部邮箱 ,2001年10期
  • 【分类号】S145.9
  • 【被引频次】53
  • 【下载频次】536
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