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首页> 外文期刊>Soil Biology & Biochemistry >Combination of potential methanogenesis and microbial respiration as a scalar to determine the microbial biomass in submerged rice paddy soils.
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Combination of potential methanogenesis and microbial respiration as a scalar to determine the microbial biomass in submerged rice paddy soils.

机译:结合潜在的产甲烷作用和微生物呼吸作为标量,以确定淹没稻田土壤中的微生物生物量。

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摘要

Both aerobic and anaerobic microbes are responsible for the fertility of soils by mineralizing organic matter. In water-logged soils, like rice paddy soils, anaerobic microbes have a great importance in the mineralization. We developed a method to determine microbial biomass in rice paddy soils by combining of anaerobic and aerobic microbial processes as a scalar for the microbial biomass. Potential methanogenesis was used to describe the anaerobic microbial community, while substrate-induced respiration (SIR) is related to the aerobic microbes. The calibration of the method was based on the total microbial biomass determined by fumigation extraction (FE) method. Microbial biomass carbon (MBC) could be calculated using the following equation: MBC=kcf (1.956 MA+0.710 SIR+10.192), where kcf=2.142+or-0.337 (coefficient based on the calibration against FE), MA=potential methanogenesis and SIR=substrate induced respiration. The MBC had shown significantly positive correlation (r=0.830*) with the total C loss potential or C mineralization potential ( micro g C loss g-1 soil d-1) [={MA x (12/16)}+{SIR x (12/44)}] of rice paddy soils.
机译:有氧微生物和厌氧微生物都通过使有机物矿化来促进土壤肥力。在淹水的土壤中,例如稻田土壤中,厌氧微生物在矿化中具有重要意义。我们开发了一种方法,通过结合厌氧和好氧微生物过程作为微生物生物量的标量,来确定稻田土壤中的微生物生物量。潜在的甲烷生成用于描述厌氧微生物群落,而底物诱导的呼吸(SIR)与需氧微生物有关。该方法的校准基于通过熏蒸提取(FE)方法确定的总微生物量。可以使用以下公式计算微生物生物量碳(MBC):MBC = k cf (1.956 MA + 0.710 SIR + 10.192),其中k cf = 2.142 + or- 0.337(基于针对FE的校准的系数),MA =潜在的甲烷生成,SIR =基质诱导的呼吸。 MBC与总的C损失潜力或C矿化潜力(微克C损失g -1 土壤d -1 )呈显着正相关(r = 0.830 *)。 [= {MA x(12/16)} + {SIR x(12/44)}]。

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