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Effect of Nitrogen Sources on Microbial Biomass Nitrogen under Different Soil Types

机译:不同土壤类型下氮源对微生物生物量氮的影响

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Knowledge to increase the microbial biomass nitrogen (MBN) as a bulk of free-living microbes in paddy soil is limited. The potential benefit of these microorganisms was evaluated, in this study, under different nitrogen sources and two paddy soils. The results revealed that pots treated with organic matter recorded the maximum value of the total N uptake and MBN, followed by the Urea treated pots. Pots amended with sludge exhibited a higher microbial N forming ability than those amended with straw compost under both soils. But ammonium concentration in soil increased with straw compost application. Under fresh soil treatment, microbial N uptake rate and proportion of plant nitrogen derived from microbial nitrogen sources (???x) were higher than autoclaved soil. A positive correlation was found between the ???x and the total N in rice shoot in both soils. Finally, we can say that MBN was governed not only by the soil nitrogen content but also by the type of the nitrogen source. The addition of sludge to fresh soil increased total MBN and consequently could be indirectly beneficial to rice production especially in poor soils. Thus, soil microbes contribute to plant growth by serving the available nitrogen during the season.
机译:稻田土壤中增加微生物生物量氮(MBN)作为大量自由生存微生物的知识是有限的。在这项研究中,在不同的氮源和两种稻田土壤下,评估了这些微生物的潜在利益。结果表明,用有机物处理的花盆记录了总氮吸收和MBN的最大值,其次是尿素处理过的花盆。在两种土壤下,用污泥改良的花盆比用秸秆堆肥改良的花盆表现出更高的微生物氮形成能力。但是,随着秸秆堆肥的施用,土壤中铵盐的含量增加。在新鲜土壤处理下,微生物氮的吸收率和来自微生物氮源的植物氮的比例(△x)均高于高压灭菌的土壤。发现在两种土壤中,芽中的x和总氮之间呈正相关。最后,我们可以说,MBN不仅受土壤氮含量的影响,还受氮源类型的影响。在新鲜土壤中添加污泥会增加总MBN,因此可能间接有利于水稻生产,特别是在贫瘠的土壤中。因此,土壤微生物通过在季节中提供可用的氮来促进植物生长。

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