首页> 美国政府科技报告 >Nitrogen Fixation by Free-Living Microorganisms in Tropical Rice Soils Using Labelled Fertilizer. Part of a Coordinated Programme on Isotope Techniques in Studies of Biological Nitrogen Fixation for the Dual Purpose of Increasing
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Nitrogen Fixation by Free-Living Microorganisms in Tropical Rice Soils Using Labelled Fertilizer. Part of a Coordinated Programme on Isotope Techniques in Studies of Biological Nitrogen Fixation for the Dual Purpose of Increasing

机译:用标记肥料固定热带水稻土中自由微生物的固氮作用。生物固氮研究同位素技术协调计划的一部分,旨在提高生物固氮的双重目的

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Both acetylene-reduction and exp 15 N techniques were used to study heterotrophic N fixation in the rhizosphere of rice plants. Soils subjected to flooding in 4 soil types in both greenhouse and the field were found to stimulate greater heterotrophic nitrogen fixation than moist soils. The addition of organic materials, in particular, cellulose and rice straw, in general, enhanced nitrogen fixed by heterotrophic organisms living in the rhizosphere of rice plants. The highest amount of N fixed was 38 kg N/ha, and was obtained in a flooded lateritic soil to which had been added cellulose. Heterotrophic nitrogen fixation was influenced by soil type. In this study, the lowest value for fixed N was recorded in an acid sulphate soil of low pH. The addition of increasing amounts of inorganic nitrogen fertilizer in the form of ammonium sulphate suppressed rhizospheric nitrogen fixation in all soils, but the extent of suppression differed in the different soils. Benomyl fungicide and methyl carbamate insecticide had a stimulatory effect on heterotrophic nitrogen fixation in soils under rice roots. Different rice cultivars stimulated strains of Azospirillum to varying extent, and thus did not fix nitrogen to the same extent. It is thus possible that varieties of rice could be selected on the basis of their ability to support non-symbiotic N fixation in their rhizosphere. (Atomindex citation 14:742006)

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