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瘤胃细菌纯培养物对完整草料中半纤维素的降解与利用

Degradation and utilization of hemicellulose from intact forages by pure cultures of rumen bacteria.

作者信息

Coen J A, Dehority B A

出版信息

Appl Microbiol. 1970 Sep;20(3):362-8. doi: 10.1128/am.20.3.362-368.1970.

Abstract

Several pure strains of rumen bacteria have previously been shown to degrade isolated hemicelluloses from a form insoluble in 80% acidified ethanol to a soluble form, regardless of the eventual ability of the organism to utilize the end products as energy sources. This study was undertaken to determine whether similar hemicellulose degradation or utilization, or both, occurs from intact forages. Fermentations by pure cultures were run to completion by using three maturity stages of alfalfa and two maturity stages of bromegrass as individual substrates. Organisms capable of utilizing xylan or isolated hemicelluloses could degrade and utilize intact forage hemicellulose, with the exception of two strains of Bacteroides ruminicola which were unable to degrade or utilize hemicellulose from grass hays. Intact forage hemicelluloses were extensively degraded by three cellulolytic strains that were unable to use the end products; in general, these strains degraded a considerably greater amount of hemicelluloses than the hemicellulolytic organisms. Hemicellulose degradation or utilization, or both, varied markedly with the different species and strains of bacteria, as well as with the type and maturity stage of the forage. Definite synergism was observed when a degrading nonutilizer was combined with either one of two hemicellulolytic strains on the bromegrass substrates. One hemicellulolytic strain, which could not degrade or utilize any of the intact bromegrass hemicellulose alone, almost completely utilized the end products solubilized by the nonutilizer. Similar synergism, although of lesser magnitude, was observed when alfalfa was used as a substrate.

摘要

此前已有研究表明,几种瘤胃细菌纯菌株能够将分离出的半纤维素从80%酸化乙醇中不溶性的形式降解为可溶性形式,无论该微生物最终是否有能力将终产物用作能源。本研究旨在确定完整草料中是否会发生类似的半纤维素降解或利用,或两者皆有。通过使用处于三个成熟阶段的苜蓿和两个成熟阶段的雀麦草作为单独底物,对纯培养物进行发酵直至结束。能够利用木聚糖或分离出的半纤维素的微生物可以降解并利用完整草料中的半纤维素,但两株反刍拟杆菌除外,它们无法降解或利用禾本科干草中的半纤维素。三种不能利用终产物的纤维素分解菌株大量降解了完整草料中的半纤维素;一般来说,这些菌株降解的半纤维素量比半纤维素分解微生物要多得多。半纤维素的降解或利用,或两者皆有,会因细菌的不同种类和菌株以及草料的类型和成熟阶段而有显著差异。当一种降解但不利用半纤维素的菌株与两种半纤维素分解菌株之一组合用于雀麦草底物时,观察到了明显的协同作用。一种半纤维素分解菌株单独无法降解或利用任何完整的雀麦草半纤维素,但几乎完全利用了由不利用半纤维素的菌株溶解的终产物。当以苜蓿为底物时,也观察到了类似的协同作用,尽管程度较小。

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