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草业学报  2010 

体外研究反刍兽新月形单胞菌及与酵母联用对瘤胃微生物发酵的影响

, PP. 176-186

Keywords: 反刍兽新月形单胞菌,酵母培养物,瘤胃,体外发酵

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Abstract:

利用体外批次培养技术,分别以羊草、玉米和淀粉为底物,研究了反刍兽新月形单胞菌L9菌株及其与酵母联用对瘤胃微生物发酵的影响。结果显示,以羊草为底物时,添加酵母可显著提高乙酸、丙酸、丁酸、戊酸、异戊酸和TVFA浓度(P<0.05),降低乳酸浓度(P<0.05),有降低乙丙比值的趋势(P=0.082),但对异丁酸及pH值无显著影响(P>0.10),添加L9菌可显著提高pH值、乙酸、丙酸、丁酸、异戊酸和TVFA浓度(P<0.05),降低乳酸浓度和乙丙比值(P<0.05),但对异丁酸及戊酸浓度无显著影响(P>0.10),在影响pH值、丙酸、丁酸、异丁酸、异戊酸、TVFA浓度及乙丙比值方面,酵母与L9菌株间无显著的互作关系(P>0.10);在降低乳酸及戊酸浓度方面,酵母与L9菌株之间有显著的互作作用(P<0.05),在影响pH值及乙酸产量方面,酵母与L9菌之间有互作效应趋势。以玉米为底物时,添加酵母可显著提高pH值、乙酸、丙酸、丁酸、异戊酸和TVFA浓度(P<0.05),降低乳酸浓度和乙丙比值(P<0.05),有提高戊酸浓度的趋势(P=0.082),但对异丁酸无显著影响(P>0.10),添加L9菌可显著提高pH值、乙酸、丙酸、丁酸、戊酸、异戊酸和TVFA浓度(P<0.05),降低乳酸浓度和乙丙比值(P<0.05),但对异丁酸浓度无显著影响(P>0.10),在影响pH值、乳酸、乙酸、丙酸、丁酸、异戊酸、TVFA浓度及乙丙比值方面,酵母与L9菌株间有显著的互作关系(P<0.05);在影响异丁酸及戊酸浓度方面,酵母与L9菌株之间无显著的互作作用(P>0.10)。以淀粉为底物时,添加酵母可显著提高pH值、乙酸、丙酸、丁酸、异戊酸和TVFA浓度(P<0.05),降低乳酸浓度(P<0.05),但对戊酸、异丁酸浓度和乙丙比值无显著影响(P>0.10),添加L9菌可显著提高pH值、乙酸、丙酸、丁酸、戊酸和TVFA浓度(P<0.05),降低乳酸浓度和乙丙比值(P<0.05),但对异丁酸和异戊酸浓度无显著影响(P>0.10),在影响pH值、乳酸、乙酸、丙酸、丁酸、异戊酸、TVFA浓度及乙丙比值方面,酵母与L9菌株间有显著的互作关系(P<0.05);在影响异丁酸及戊酸浓度方面,酵母与L9菌株之间无显著的互作作用(P>0.10)。结果说明,添加酵母与L9菌株均可有效降低乳酸产量,且均可有效提高玉米及淀粉条件下发酵体系中的pH值,酵母与L9菌株联用更有助于发酵前期pH值的稳定。

References

[1]  Mutsvangwa T, EdwardsI E J, Topps H. The effect of dietary inclusion of yeast culture(Yea-Sacc)on patterns of rumen fermentation, food intake and growth of intensively fed bulls[J]. Animal Proceeding, 1992, 55: 35-40.
[2]  Wiedmeier R D, Rambel M, Walters J L. Effect of yeast culture and Aspergillus oryzae fermentation extract on ruminal characteristicsand nutrient digestibility[J]. Journal of Dairy Science, 1987, 70: 2063-2068.
[3]  Robinson J A, Smolenski W J, Greening R C, et al. Prevention of acute acidosis and enhancement of feed intake in the bovine by Megasphaera elsdenii 407A[J]. Journal of Animal Science, 1992, 70(1): 310.
[4]  Mackie R I, Suzette H. Enumeration and isolation of lactate-utilizing bacteria from the rumen of sheep[J]. Applied and Environmental Microbiology, 1979, 38(3): 416-421.
[5]  龙黎明, 毛胜勇, 苏勇, 等. 一株瘤胃源乳酸利用菌的分离鉴定及其体外代谢特性[J]. 微生物学报, 2008, 48(12): 1571-1577.
[6]  Longland A, Theodorou M K, Sanderson R, et al. Non-starch polysaccharide composition and in vitro fermentability of tropical forage legumes varying in phenolic content[J]. Animal Feed Science and Technology, 1994, 55: 161-177.
[7]  秦为琳. 应用气相色谱法测定挥发性脂肪酸的改进[J]. 南京农学院学报, 1982, 5: 110-116.
[8]  毛胜勇, 王新峰, 朱伟云. 体外法研究延胡索酸二钠对瘤胃微生物发酵活力及甲烷产量的影响[J]. 草业学报, 2010, 19(2): 69-75. 浏览
[9]  孙云章, 毛胜勇, 陈洁, 等. 瘤胃厌氧真菌对木质素含量不同底物附着及发酵特性研究[J]. 草业学报, 2005, 14(3): 56-61.
[10]  王聪, 刘强, 董群, 等. 日粮补充苹果酸对牛瘤胃发酵和养分消化代谢的影响[J]. 草业学报, 2009, 18(3): 224-231.
[11]  赵祥, 董宽虎, 王永新, 等. 不同精粗比全混合饲料在绵羊瘤胃内的降解动态[J]. 草业学报, 2005, 14(3): 62-66.
[12]  Desnoyers M, Giger-reverdin S, Bertin G, et al. Meta-analysis of the influence of Saccharomyces cerevisiae supplementation on ruminal parameters and milk production of ruminants[J]. Journal of Dairy Science, 2009, 92: 1620-1632.
[13]  Martin S A, Nisbet D J. Effect of direct-fed microbials on rumen microbial fermentation[J]. Journal of Dairy Science, 1992, 75(6): 1736-1744.
[14]  Brossard L, Chaucheyras-Durand F, Michalet-Doreau B, et al. Dose effect of live yeasts on rumen microbial communities and fermentations during butyric latent acidosis in sheep: Newtype of interaction[J]. Journal of Animal Science, 2006, 82: 1-11.
[15]  Newbold C J, Wallace R J, Mc-Intosh F M. Mode of action of the yeast Saccharomyces cerevisiae as a feed additive for ruminants[J]. British Journal of Nutrition, 1996, 76: 249-261.
[16]  Rossi F, Luccia A D, Vincenti D, et al. Effects of peptidic fractions from Saccharomyces cerevisiae culture on growth and metabolism of the ruminal bacteria Megasphaera elsdenii[J]. Animal Research, 2004, 53: 177-186.

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