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Contrasting effects of exogenous phosphorus application on N2O emissions from two tropical forest soils with contrasting phosphorus availability

机译:外源施磷对两种热带森林土壤N2O排放的影响与磷的有效性对比

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摘要

An incubation study was conducted to test the effects of phosphorus (P) addition on nitrous oxide (N2O) emissions from the soils taken from two tropical rain forests established on different parent materials [meta-sedimentary (MS) and ultrabasic (UB) rock] on Mt. Kinabalu, Borneo. Earlier studies suggest that the forest on UB soils is more strongly limited by P than that on MS soils is. In MS soils, P addition significantly reduced N2O emissions. Since neither ammonium (NH4+) nor nitrate (NO3) contents were reduced by P addition, we assumed that the decrease in N2O emissions were not due to the previously-reported mechanism: P addition stimulated microbial nitrogen (N) immobilization and collateral inorganic N consumption, reducing resources for producing N2O. Since P addition enhanced the ratios of microbial biomass to CO2 and N2O emissions (indicators of nitrifying and/or denitrifying respiratory efficiency), it was suggested that the N required for the respiration of nitrifying and/or denitrifying bacteria was reduced, leading to reduced N2O emissions. On the other hand, P addition had no effects on N2O emissions in UB soils. The respiratory efficiency did not change significantly by P addition, possibly because the microbial community in the highly-P-depleted UB soils shifted by P addition, with which the enhancement of respiration efficiency did not co-vary. We concluded that (1) P addition may control N2O emissions through increasing respiratory efficiency, and (2) the effects may be different depending on the differences in P availability.
机译:进行了一项孵化研究,以测试添加的磷(P)对来自在不同母质[元沉积(MS)和超碱性(UB)岩石)上建立的两个热带雨林土壤中一氧化二氮(N2O)排放的影响。在山上婆罗洲京那巴鲁。较早的研究表明,UB土壤上的森林比MS土壤上的磷受限制更大。在MS土壤中,磷的添加显着减少了N2O的排放。由于添加P不会减少铵(NH4 + )和硝酸盐(NO3 -)的含量,因此我们假定N2O排放量的减少不是由于先前报告的机理:磷的添加刺激了微生物氮的固定化和无机氮的附带消耗,减少了生产N2O的资源。由于添加磷提高了微生物生物量与CO2和N2O排放的比例(硝化和/或反硝化呼吸效率的指标),因此建议减少硝化和/或反硝化细菌呼吸所需的氮,从而减少N2O排放。另一方面,磷的添加对UB土壤中的N2O排放没有影响。磷添加对呼吸效率的影响不显着,可能是因为磷含量高的贫瘠土壤中的微生物群落因磷添加而发生了变化,因此呼吸效率的提高并没有改变。我们得出的结论是:(1)P的添加可以通过提高呼吸效率来控制N2O的排放,(2)取决于P可用性的不同,其影响也可能不同。

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