Laboratory of Environmental Microbiology, Institute of Microbiology of the ASCR, v.v.i., Prague, Czech Republic.
FEMS Microbiol Ecol. 2011 Feb;75(2):291-303. doi: 10.1111/j.1574-6941.2010.00999.x. Epub 2010 Nov 26.
The links among the changes in litter chemistry, the activity of extracellular enzymes and the microbial community composition were observed in Quercus petraea litter. Three phases of decomposition could be distinguished. In the early 4-month stage, with high activities of β-glucosidase, β-xylosidase and cellobiohydrolase, 16.4% of litter was decomposed. Hemicelluloses were rapidly removed while cellulose and lignin degradation was slow. In months 4-12, with high endocellulase and endoxylanase activities, decomposition of cellulose prevailed and 31.8% of litter mass was lost. After the third phase of decomposition until month 24 with high activity of ligninolytic enzymes, the litter mass loss reached 67.9%. After 2 years of decay, cellulose decomposition was almost complete and most of the remaining polysaccharides were in the form of hemicelluloses. Fungi largely dominated over bacteria as leaf endophytes and also in the litter immediately before contact with soil, and this fungal dominance lasted until month 4. Bacterial biomass (measured as phospholipid fatty acid content) in litter increased with time but also changed qualitatively, showing an increasing number of Actinobacteria. This paper shows that the dynamics of decomposition of individual litter components changes with time in accordance with the changes in the microbial community composition and its production of extracellular enzymes.
在栓皮栎凋落叶中观察到了凋落叶化学性质的变化、胞外酶活性和微生物群落组成之间的联系。可以区分三个分解阶段。在最初的 4 个月阶段,β-葡萄糖苷酶、β-木糖苷酶和纤维二糖水解酶活性很高,有 16.4%的凋落叶被分解。半纤维素迅速被去除,而纤维素和木质素的降解较慢。在 4-12 个月期间,内纤维素酶和内切木聚糖酶活性很高,纤维素分解占主导地位,有 31.8%的凋落叶质量损失。在第三个分解阶段之后,直到第 24 个月,木质素分解酶活性很高,凋落叶质量损失达到 67.9%。经过 2 年的腐烂,纤维素分解几乎完全,大部分剩余的多糖以半纤维素的形式存在。真菌作为叶内真菌在落叶中大量占主导地位,并且在与土壤接触之前的凋落叶中也是如此,这种真菌优势一直持续到第 4 个月。随着时间的推移,凋落叶中的细菌生物量(以磷脂脂肪酸含量衡量)增加,但也发生了定性变化,放线菌的数量增加。本文表明,个别凋落物成分的分解动力学随时间而变化,这与微生物群落组成及其产生的胞外酶有关。