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初始pH值作为体外瘤胃混合微生物纤维素消化率的一个决定因素。

Initial pH as a determinant of cellulose digestion rate by mixed ruminal microorganisms in vitro.

作者信息

Mouriño F, Akkarawongsa R, Weimer P J

机构信息

Universidad Catolica Argentina, Buenos Aires.

出版信息

J Dairy Sci. 2001 Apr;84(4):848-59. doi: 10.3168/jds.S0022-0302(01)74543-2.

Abstract

In vitro fermentations of pure cellulose by mixed ruminal microorganisms were conducted under conditions in which pH declined within ranges similar to those observed in the rumen. At low cellulose concentrations (12.5 g/L), the first-order rate constants (k) of cellulose disappearance were successively lower at initial pH values of 6.86, 6.56, and 6.02, but in each case the value of k was maintained over a pH range of 0.3 to 1.2 units, as the fermentation progressed. Plots of k versus initial pH were linear, and k displayed a relative decrease of approximately 7% per 0.1 unit decrease in pH. At high cellulose concentration (50 g/L) and an initial pH of 6.8, cellulose digestion was initially zero order, the absolute rate of digestion declined with pH and digestion essentially ceased at pH 5.3 after only 30% of the added cellulose was digested. Further incubation resulted in a loss of bound N and P, suggesting that at low pH cells lysed or detached from the undigested fibers. Pure cultures of ruminal cellulolytic bacteria also were able to ferment cellulose to a minimum pH of 5.1 to 5.3, but the extent of fermentation was increased by coculture with noncellulolytic bacteria. A model is proposed in which the first-order rate constant of cellulose digestion is determined by the pH at which the fermentation is initiated, and end product ratios reflect greater activity of the noncellulolytic population as pH declines.

摘要

利用瘤胃混合微生物对纯纤维素进行体外发酵,发酵条件下pH值下降的范围与瘤胃中观察到的范围相似。在低纤维素浓度(12.5 g/L)下,当初始pH值分别为6.86、6.56和6.02时,纤维素消失的一级速率常数(k)依次降低,但在每种情况下,随着发酵的进行,k值在0.3至1.2个单位的pH范围内保持稳定。k与初始pH的关系图呈线性,pH每降低0.1个单位,k相对降低约7%。在高纤维素浓度(50 g/L)和初始pH为6.8的情况下,纤维素消化最初为零级,消化的绝对速率随pH下降,仅30%的添加纤维素被消化后,在pH 5.3时消化基本停止。进一步培养导致结合态氮和磷的损失,这表明在低pH值下,细胞从未消化的纤维上裂解或脱离。瘤胃纤维素分解菌的纯培养物也能够将纤维素发酵至最低pH值5.1至5.3,但与非纤维素分解菌共培养可提高发酵程度。提出了一个模型,其中纤维素消化的一级速率常数由发酵开始时的pH决定,并且随着pH下降,终产物比例反映出非纤维素分解菌群的活性更高。

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