有无产甲烷的混合微生物瘤胃发酵纤维素的研究

B. Ahring, N. Murali, K. Srinivas
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引用次数: 11

摘要

瘤胃发酵已经得到了很好的研究,包括纤维素水解微生物将纤维素水解为单体,产酸微生物包括纤维素水解微生物将单体转化为挥发性脂肪酸(VFA)、氢和二氧化碳,以及产甲烷菌将乙酸、氢和二氧化碳转化为甲烷。值得注意的是,反刍动物产生的甲烷会导致动物的能量损失,排放的甲烷对大气中的温室气体有很大的贡献。在厌氧瘤胃生物反应器模型系统中,研究了2 -溴乙磺酸盐(BES)对产甲烷菌的选择性抑制及其对瘤胃发酵的影响。结果表明,BES对甲烷产量有99.7%的抑制作用,使总VFA产量从3 g/L/d降至1.3 g/L/d。我们的研究还发现,BES的添加不仅抑制了产甲烷菌,而且对非产甲烷菌也有影响,导致乙酸产率从未添加BES的1.8 g/L/d下降到添加BES的0.8 g/L/d。内切葡聚糖酶实验表明,添加BES进一步抑制了纤维素分解微生物,导致添加BES的反应器内切葡聚糖酶浓度降低。使用BES的反应器中氢气分压显著增加(从1.7%增加到29.8%)。
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Fermentation of Cellulose with a Mixed Microbial Rumen Culture with and without Methanogenesis
Ruminal fermentation has been well studied and includes cellulolytic microorganisms to hydrolyze cellulose to monomers, acidogenic microbes including cellulolytic microorganism to convert the monomers to volatile fatty acids (VFA), hydrogen and carbon dioxide and methanogens to convert the acetic acid, hydrogen and carbon dioxide to methane. Notably, methane production in ruminants causes energy loss for the animal and emitted methane contributes significantly to greenhouse gases in the atmosphere. The present study focuses on selectively inhibiting of the methanogens using 2–bromoethanesulfonate (BES) and its effect on ruminal fermentation in an anaerobic rumen bioreactor model system. It was found that BES inhibited methane production (99.7%) and that addition of BES decreased the total VFA productivity from 3 g/L/day to 1.3 g/L/day. Our study also found that addition of BES not only inhibited the methanogens, but also had an impact on the non-methanogenic bacteria as well, resulting in a decrease in the acetic acid productivity from 1.8 g/L/day, in a reactor without BES to 0.8 g/L/day in reactor with BES added. Endoglucanase assay revealed that addition of BES further inhibits cellulolytic microbes, resulting in a decrease in endoglucanase concentration in the reactor supplemented with BES. A notable increase in hydrogen partial pressure was seen in the reactor with BES (from 1.7% to 29.8%).
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