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An Inhibitor-Based Method To Measure Initial Decomposition of Naturally Occurring Polysaccharides in Sediments

机译:一种基于抑制剂的方法来测量沉积物中天然存在的多糖的初始分解

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摘要

A method that can be used to measure the initial decomposition rates of polysaccharides in sediment samples was developed. It uses toluene to specifically inhibit microbial uptake of carbohydrates without affecting extracellular hydrolysis of polysaccharides. Accumulating carbohydrates were determined by high-performance liquid chromatography. Field-sampled litter from the common reed (Phragmites australis), which contains cellulose and arabinoxylan as its main polysaccharides, was used as a model system. Toluene concentrations of between 1 and 10% resulted in the accumulation of similar amounts of monomeric carbohydrates, which was linear over time for most neutral sugars. Toluene (3%) did not have an effect on extracellular enzyme activities, and microbial sugar uptake was completely inhibited, as demonstrated with (sup14)C-labelled xylose and glucose. Experiments with enhancement cultures and fixed reed litter suggested that enzymatic hydrolysis of polysaccharides in reed litter was the main source of glucose, xylose, arabinose, and galactose accumulation. In contrast, the accumulation of high amounts of the alditols mannitol and glucitol was probably caused by lysis of the microbial population in toluene-treated reed litter. Glucose accumulated at rates of 1.3 and 0.10 (mu)mol (middot) g of dry matter content(sup-1) (middot) h(sup-1) under aerobic and anaerobic conditions, respectively, whereas xylose accumulation rates were only 10% of the glucose accumulation rates.
机译:开发了一种可用于测量沉积物样品中多糖的初始分解速率的方法。它使用甲苯特异性抑制微生物对碳水化合物的摄取,而不会影响多糖的细胞外水解。通过高效液相色谱法测定积累的碳水化合物。将来自普通芦苇(芦苇)的野外取样垃圾作为模型系统,该杂草以纤维素和阿拉伯木聚糖为主要多糖。甲苯浓度在1%到10%之间会导致类似数量的单体碳水化合物积累,对于大多数中性糖而言,其随着时间呈线性变化。甲苯(3%)对细胞外酶的活性没有影响,微生物糖的摄取被完全抑制,如(sup14)C标记的木糖和葡萄糖所证明的。增强培养和固定芦苇垫料的实验表明,芦苇垫料中多糖的酶促水解是葡萄糖,木糖,阿拉伯糖和半乳糖积累的主要来源。相反,大量的糖醇,甘露醇和葡萄糖醇的积累可能是由甲苯处理过的芦苇凋落物中微生物种群的溶解引起的。在好氧和厌氧条件下,葡萄糖分别以干物质含量(sup-1)(mid)h(sup-1)为1.3和0.10μmol(middot)g的速率积累,而木糖的积累率仅为10%葡萄糖积累率。

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