Nollet L, Demeyer D, Verstraete W
Laboratory of Microbial Ecology, Faculty of Agricultural and Applied Biological Sciences, University of Ghent, Belgium.
Appl Environ Microbiol. 1997 Jan;63(1):194-200. doi: 10.1128/aem.63.1.194-200.1997.
Evidence is provided that reductive acetogenesis can be stimulated in ruminal samples during short-term (24-h) incubations when methanogenesis is inhibited selectively. While addition of the reductive acetogen Peptostreptococcus productus ATCC 35244 alone had no significant influence on CH4 and volatile fatty acid (VFA) production in ruminal samples, the addition of this strain together with 2-bromoethanesulfonic acid (BES) (final concentration, 0.01 or 0.03 mM) resulted in stimulation of acetic acid production and H2 consumption. Since acetate production exceeded amounts that could be attributed to reductive acetogenesis, as measured by H2 consumption, it was found that P. productus also fermented C6 units (glucose and fructose) heterotrophically to mainly acetate (> 99% of the total VFA). Using 14CH3COOH, we concluded that addition of BES and BES plus P. productus did not alter the consumption of acetate in ruminal samples. The addition of P. productus to BES-treated ruminal samples caused supplemental inhibition of CH4 production and stimulation of VFA production, representing a possible energy gain of about 13 to 15%.
有证据表明,当甲烷生成被选择性抑制时,在短期(24小时)培养过程中瘤胃样本中的还原性产乙酸作用可以被刺激。虽然单独添加还原性产乙酸菌产琥珀酸消化链球菌ATCC 35244对瘤胃样本中CH4和挥发性脂肪酸(VFA)的产生没有显著影响,但将该菌株与2-溴乙烷磺酸(BES)(终浓度,0.01或0.03 mM)一起添加会导致乙酸产生和H2消耗增加。由于通过H2消耗测定,乙酸产生量超过了可归因于还原性产乙酸作用的量,因此发现产琥珀酸消化链球菌也将C6单位(葡萄糖和果糖)异养发酵主要生成乙酸(占总VFA的> 99%)。使用14CH3COOH,我们得出结论,添加BES以及BES加产琥珀酸消化链球菌不会改变瘤胃样本中乙酸的消耗。将产琥珀酸消化链球菌添加到经BES处理的瘤胃样本中会额外抑制CH4产生并刺激VFA产生,这代表可能有大约13%至15%的能量增加。