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首页> 外文期刊>Applied and Environmental Microbiology >Degradation of Perennial Ryegrass Leaf and Stem Cell Walls by the Anaerobic Fungus Neocallimastix sp. Strain CS3b.
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Degradation of Perennial Ryegrass Leaf and Stem Cell Walls by the Anaerobic Fungus Neocallimastix sp. Strain CS3b.

机译:厌氧真菌Neocallimastix sp对多年生黑麦草叶和干细胞壁的降解。菌株CS3b。

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The degradation of cell walls isolated from stems and leaves of perennial ryegrass by the anaerobic fungus Neocallimastix sp. strain CS3b was studied in a defined medium. The combined cellulose and hemicellulose fraction represented 53.1 (wt/wt) and 63.3% (wt/wt) of the dry weight of control grass leaf and stem cell walls, respectively. In both leaf and stem cell walls, glucose was the major neutral monosaccharide, followed by xylose, arabinose, and galactose. After 2 days of fermentation with Neocallimastix sp. strain CS3b, treated cell walls contained smaller amounts of neutral sugars compared with those of undigested cell walls. These results were more evident for glucose, xylose, and arabinose than for galactose. Furthermore, the sugar content of leaf cell walls decreased before a decline in the sugar content of stem cell walls was observed. Data from formate and hydrogen production indicated that the growth of Neocallimastix sp. strain CS3b was completed in 4 days in the culture system used. During this period, the fungus liberated about 95% of the fermentable sugars in untreated material. On a percentage basis, no significant differences were found in final extent of degradation of glucose, xylose, and arabinose. Galactose, however, was degraded to a lesser extent.
机译:厌氧真菌Neocallimastix sp。对多年生黑麦草茎和叶分离的细胞壁的降解作用。在确定的培养基中研究了菌株CS3b。组合的纤维素和半纤维素部分分别占对照草叶和干细胞壁干重的53.1(wt / wt)和63.3%(wt / wt)。在叶和干细胞壁中,葡萄糖是主要的中性单糖,其次是木糖,阿拉伯糖和半乳糖。用Neocallimastix sp。发酵2天后。菌株CS3b,与未消化的细胞壁相比,处理过的细胞壁含有较少量的中性糖。这些结果对于葡萄糖,木糖和阿拉伯糖比对半乳糖更明显。此外,在观察到干细胞壁的糖含量下降之前,叶细胞壁的糖含量下降。来自甲酸盐和氢气生产的数据表明,新callimastix sp。 CS3b菌株在使用的培养系统中在4天内完成。在此期间,真菌释放了未经处理的材料中约95%的可发酵糖。以百分比计,在葡萄糖,木糖和阿拉伯糖的最终降解程度上没有发现显着差异。然而,半乳糖降解程度较小。

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