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Effects of Yeast Culture Supplementation on Rice Straw Digestibility and Cellulolytic Bacterial Community in the Rumen

机译:酵母菌培养对瘤胃稻草消化率和纤维素分解菌群落的影响

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In vitro and in situ incubation studies were conducted to determine effects of yeast culture supplements (Saccharomyces cerevisiae) on cellulolytic bacterial function and fiber digestion in rice straw. In vitro dry matter digestibility of rice straw gradually increased according to supplemental levels of yeast culture (0.0, 0.2, 0.4, 0.6, 0.8 and 1.0%). Digestibility of rice straw started to increase apparently when yeast culture was added more than 0.6% level (p<0.05). Also, we reconfirmed that in vitro dry matter digestibility was significantly increased by 0.6% of yeast culture addition in 4% NaOH treated and non-treated rice straws (p<0.05). When in situ dry matter digestibility was tested in Korean native goats fed basal diet or experimental diet which contained 1.0% of yeast culture, the yeast culture feeding improved in situ dry matter digestibility in both 4% NaOH treated and non-treated rice straws (p<0.05). In case of real-time PCR monitoring cellulolytic bacterial function, the bacterialpopulation attached on rice straw showed the increasing trends with higher level of yeast culture spraying on rice straw. F. succinogenes and R. flavefaciens were significantly increased in accordance to spraying levels of yeast culture (0.0, 0.1 and 0.3%) at both 12 and 24 hrs of in situ incubation (p<0.05). R. albus was significantly higher population in yeast culture spraying than non-soraying at 12 hrs of in situ incubation (p<0.05). These bacterial populations were showed the increasing trends with digestibility enhancement of rice straw according to the higher levels of yeast culture supplement. Overall, these results clearly suggest that the presence of yeast culture result in noticeable increase of rice straw digestion, which is modulated viagood effect on cellulolytic bacterial attachment to fiber substrates.
机译:进行了体外和原位温育研究,以确定酵母培养添加物(酿酒酵母)对稻草中纤维素分解细菌功能和纤维消化的影响。稻草的体外干物质消化率根据酵母培养物的补充水平(0.0、0.2、0.4、0.6、0.8和1.0%)逐渐增加。当酵母培养物添加量超过0.6%时,稻草的消化率开始明显增加(p <0.05)。此外,我们确认在4%NaOH处理和未处理的稻草中,添加0.6%的酵母培养物可显着提高体外干物质的消化率(p <0.05)。当在韩国基础山羊饲喂基础饮食或实验性饮食(含1.0%酵母培养物)中测试原位干物质消化率时,在4%NaOH处理和未处理的稻草中,酵母培养物饲喂均改善了原位干物质消化率(p <0.05)。在实时PCR监测纤维素分解细菌功能的情况下,随着稻草上喷洒酵母培养物水平的增加,附着在稻草上的细菌种群显示出增加的趋势。在原位孵育的第12和24小时,根据酵母培养物的喷洒水平(分别为0.0%,0.1%和0.3%),琥珀酸杆菌和黄曲霉的含量显着增加(p <0.05)。在原位培养的12小时内,酵母培养物喷雾中的白色念珠菌种群明显高于未喷雾的种群(p <0.05)。随着酵母培养补品含量的提高,这些细菌群体显示出随着稻草消化率提高而增加的趋势。总的来说,这些结果清楚地表明,酵母培养物的存在导致稻草消化的显着增加,这是通过对纤维素分解细菌附着在纤维基质上的良好作用来调节的。

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