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首页> 外文期刊>Soil Biology & Biochemistry >Substrate utilisation profiles of microbial communities in peat are depth dependent and correlate with whole soil FTIR profiles.
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Substrate utilisation profiles of microbial communities in peat are depth dependent and correlate with whole soil FTIR profiles.

机译:泥炭中微生物群落的底物利用状况与深度有关,并且与整个土壤FTIR状况相关。

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摘要

A multiple substrate induced respiration (SIR) assay, using 14C-labelled carbon sources, was used to evaluate community level physiological profiles (CLPP) of the microbial community in peat horizons of differing degrees of humification. The separation and grouping of the peat horizons by CLPP was similar to the pattern produced by analysis of the organic carbon chemistry of the peat horizons by Fourier Transform Infrared (FTIR) spectroscopy and therefore reflected the level of decomposition. Partial redundancy analysis showed that a large proportion (68.7%) of the variability in the CLPP data could be attributed to the ratio of polysaccharide to 'carboxylate' FTIR bands alone. The multiple substrate SIR technique may, therefore, be a powerful technique to further elucidate the influence of the microbial constituent of peat on the potential activity and patterns of cycling of labile carbon in peatlands..
机译:使用14 C标记的碳源进行的多底物诱导呼吸(SIR)分析用于评估不同腐殖化程度的泥炭视野中微生物群落的群落水平生理概况(CLPP)。 CLPP对泥炭地层的分离和分组与通过傅立叶变换红外(FTIR)光谱分析泥炭地层的有机碳化学产生的模式相似,因此反映了分解程度。部分冗余分析表明,CLPP数据中很大一部分(68.7%)的变异性可归因于多糖与“羧基化” FTIR谱带的比率。因此,多底物SIR技术可能是一种强大的技术,可以进一步阐明泥炭的微生物成分对泥炭地中不稳定碳的潜在活性和循环模式的影响。

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