首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Alterations in structure chemistry and biodegradability of grass lignocellulose treated with the white rot fungi Ceriporiopsis subvermispora and Cyathus stercoreus.
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Alterations in structure chemistry and biodegradability of grass lignocellulose treated with the white rot fungi Ceriporiopsis subvermispora and Cyathus stercoreus.

机译:用白腐真菌Ceriporiopsis subvermispora和Cyathus stercoreus处理的草木质纤维素的结构化学和生物降解性的变化。

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摘要

The white rot fungi Ceriporiopsis subvermispora FP-90031-sp and Cyathus stercoreus ATCC 36910 were evaluated for their ability to delignify Bermuda grass (Cynodon dactylon) stems and improve biodegradability. Compositional and structural alterations in plant cell walls effected by the fungi were determined by nuclear magnetic resonance spectroscopy, gas chromatography of alkali-treated residues, microspectrophotometry, and electron microscopy. Contaminating bacteria and fungi, which grew from unsterilized Bermuda grass stems, did not alter the improvement in grass biodegradability by either of the fungi from that of gas-sterilized stems. The biodegradation of stems by ruminal microorganisms, after treatment for 6 weeks with C. subvermispora or C. stercoreus, was improved by 29 to 32% and by 63 to 77%, respectively; dry weight losses caused by pretreatment with the fungi were about 20% over that in untreated, control stems. Both fungi preferentially removed aromatics to carbohydrates, and C. subvermispora removed proportionately more guaiacyl units than did C. stercoreus. Substantial amounts of ester-linked p-coumaric and ferulic acids were removed by both fungi, and about 23 and 41% of total aromatics (determined after 4 M NaOH direct treatment) were removed from the plant biomass after incubation with C. subvermispora and C. stercoreus, respectively. UV absorption microspectrophotometry indicated that ester-linked phenolic acids were totally removed from the parenchyma cell walls, and these cells were readily and completely degraded by both fungi. However, aromatic constituents were only partially removed from the more recalcitrant sclerenchyma cell walls, resulting in variation in electron density and random digestion pits after incubation with fiber-degrading bacteria.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:对白腐真菌Ceriporiopsis subvermispora FP-90031-sp和Cyathus stercoreus ATCC 36910的脱木质百慕大草(Cynodon dactylon)茎和改善生物降解能力进行了评估。通过核磁共振波谱,碱处理残留物的气相色谱法,显微分光光度法和电子显微镜确定真菌对植物细胞壁的组成和结构的影响。来自未经灭菌的百慕大草茎的细菌和真菌污染,并没有改变由气体灭菌茎产生的真菌对草的生物降解性的改善。瘤胃微生物对茎生微生物的降解,经C. subvermispora或C. stercoreus处理6周后,分别提高了29%至32%和63%至77%。与未处理的对照茎相比,用真菌预处理引起的干重损失约为20%。与真菌相比,两种真菌都优先将芳香族化合物去除为碳水化合物,而银白隐孢子菌按比例去除了更多的愈创木基单位。与C. subvermispora和C.一起温育后,两种真菌均去除了大量的酯连接的对香豆酸和阿魏酸,并且从植物生物质中去除了约23%和41%的总芳香剂(在4 M NaOH直接处理后确定)。 stercoreus,分别。紫外吸收分光光度法表明,酯连接的酚酸已从薄壁细胞壁中完全除去,并且这些细胞容易被两种真菌完全降解。然而,在与难降解的巩膜瘤细胞壁中仅去除了芳香族成分,与纤维降解细菌一起孵育后导致电子密度变化和随机消化坑。(摘要截短为250字)

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