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Residue chemistry and microbial community structure during decomposition of eucalypt, wheat and vetch residues

微生物种群生物学 化学 残留物(化学) 微观世界 作物残渣 化学分解 分解 微生物联合体 微生物降解 环境化学 有机化学 细菌 微生物 生物 生态学 农业 遗传学
作者
Karen Baumann,Petra Marschner,Ronald J. Smernik,Jeff Baldock
出处
期刊:Soil Biology & Biochemistry [Elsevier BV]
卷期号:41 (9): 1966-1975 被引量:158
标识
DOI:10.1016/j.soilbio.2009.06.022
摘要

Previous studies have shown that residue chemistry and microbial community structure change during decomposition, however little is known about the relationship between C-chemistry and microbial community structure. To address this knowledge gap, we studied C-chemistry and microbial community structure during the decomposition of eucalypt, wheat and vetch residues with and without additional inorganic N. Bags containing ground residues of eucalypt, wheat, and vetch were buried in sand microcosms after inoculation with a diverse microbial community. Respiration was measured over an incubation period of 150 days. At different times during incubation, total C and N of the residues were analysed and residue carbon chemistry was determined by 13C-NMR (nuclear magnetic resonance) spectroscopy. Microbial communities were assessed by phospholipid fatty acid (PLFA) analyses. Results indicated that during decomposition, residue C-chemistry and microbial community composition changed over time and differed between residue types. Changes in microbial community structure were associated with changes in residue C-chemistry, mainly the relative content of aryl-C and O-alkyl-C. Addition of N increased cumulative respiration, altered C-chemistry during decomposition, particularly in high C/N residues (wheat and eucalypt), and changed microbial succession leading to an earlier establishment of a stable microbial community structure. N addition to eucalypt and wheat reduced the decomposition of aryl-C compounds.

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