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首页> 外文期刊>Soil Use and Management >Carbon addition reduces labile soil phosphorus by increasing microbial biomass phosphorus in intensive agricultural systems
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Carbon addition reduces labile soil phosphorus by increasing microbial biomass phosphorus in intensive agricultural systems

机译:碳添加通过增加密集农业系统中的微生物生物量磷来减少不稳定的土壤磷

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Accumulation of inorganic and labile organic phosphorus (P) in intensive agricultural systems leads to P loss from soil which can cause serious environmental problems. Soil microbes are important in mobilizing soil non-available P, however, little is known about the role of soil microbes in immobilizing P to reduce P loss. Here, we test whether stimulating microbial biomass to immobilize P could reduce the amount of labile P available for leaching. The distribution characteristics of Olsen P, organic P and microbial biomass P were determined in three intensive agricultural systems. In addition, we conducted a pot experiment with three P and four carbon (C) levels. CaCl2 extractable P was measured and used to indicate the risk of P leaching. We found that there was a positive relationship between soil organic C and microbial biomass P. Carbon addition drove the process of P immobilization and reduced CaCl2 extractable P. Microbial biomass P increased by 64% (p < .05) with the addition of C, and Olsen P and CaCl2 extractable P decreased by 28% and 17%, respectively. Our results show that C addition increased microbial immobilization of P and reduced forms of labile P susceptible to leaching. Stimulating microbes to immobilize P by adding C to soils may have the potential to reduce P loss from intensive agricultural systems, reducing their environmental impact.
机译:密集农业系统中无机和不稳定有机磷(P)的积累导致土壤中的P损失,这可能导致严重的环境问题。然而,土壤微生物在动员土壤不可用的p中很重要,但是关于土壤微生物在固定P的角度,以降低P损失很少。在这里,我们测试是否刺激微生物生物质以固定P可以减少可用于浸出的不稳定性能。在三个集约农业系统中确定了Olsen P,有机P和微生物生物量P的分布特征。此外,我们进行了一种盆栽试验,具有三种p和四种碳(c)水平。测量CaCl2可提取的p并用于表示P浸出的风险。我们发现土壤有机C和微生物生物量P.碳加成之间存在阳性关系,推动了P的固定化和减少的CaCl2可提取的P.微生物生物量P增加了64%(P <.05),加入C,和蛋白P和CaCl2可提取的P分别降低28%和17%。我们的研究结果表明,C添加增加的微生物固定,并减少了易浸出的不稳定形式的形式。刺激微生物以通过向土壤加入碳来固定P可能有可能降低密集的农业系统的P损失,从而降低它们的环境影响。

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