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首页> 外文期刊>Journal of Animal Science >Effect of live yeast culture supplementation on hindgut microbial communities and their polysaccharidase and glycoside hydrolase activities in horses fed a high-fiber or high-starch diet1
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Effect of live yeast culture supplementation on hindgut microbial communities and their polysaccharidase and glycoside hydrolase activities in horses fed a high-fiber or high-starch diet1

机译:补充高纤维或高淀粉饮食的活酵母培养物对后肠微生物群落及其多糖酶和糖苷水解酶活性的影响1

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摘要

Four cecum and right ventral colon-fistulated horses were assigned in a 4 x 4 Latin square design and fed a high-fiber (HF) or a high-starch (HS) diet with or without 10 g of Saccharomyces cerevisiae (SC; CBS 493.94) containing 4.5 x 10sup9 cfu/g. The HF and HS diets consisted of pelleted feeds and long wheat straw (18.0 and 3.5 g of DM.kgsup(-1) of BW.dsup(-1), respectively) given in 2 equal meals to provide an NDF:starch ratio of 3.5 and 1.0, respectively. After a 21-d adaptation period intestinal contents were collected 4 h after the morning meal on d 23 and 25 to determine bacterial and SC concentrations. Polysaccharidase activities (CMCase, xylanase, amylase) and activities of glycoside hydrolases (α-L-arabinosidase, β-D-cellobiosidase, β-D-glucosidase, β-D-xylosidase) were determined in liquid-associated bacteria (LAB) and solid-adherent bacteria (SAB) isolated from both compartments. Lactobacilli were increased in the cecum (P = 0.012) and colon (P = 0.086) when starch intake increased, whereas total anaerobes, cellulolytics, and streptococci did not change in either compartment. In yeast-supplemented horses, SC concentrations were greater in cecum (4.4 x 10sup6 cfu/mL) than in right-ventral colon (5.6 x 10sup4 cfu/mL) and did no change with diet. Concentrations of lactobacilli and lactic-acid utilizers were greater (P = 0.099 and 0.067, respectively) in the cecum but remained similar in the colon of SC-supplemented horses. The CMCase activities of SAB were not affected by diet. Colonic xylanase activities of SAB were reduced (P = 0.046) by starch addition, but no change was seen in the cecum. All SAB glucoside hydrolase activities in the cecum and colon, except β-D-xylosidase in the cecum, were decreased when starch intake was increased. The LAB CMCase (P = 0.049 in the colon) and xylanase (P = 0.021 in the cecum; P < 0.001 in the colon) activities decreased with starch intake. No effect of starch on LAB or SAB amylase activity was observed. Addition of SC improved SAB CMCase in the cecum (P = 0.019) and colon (P = 0.037) as well as β-D-cellobiosidase (P = 0.002) and β-D-glucosidase (P = 0.041) in the cecum. Only xylanase in the cecum (P = 0.015) and β-D-xylosidase in the cecum (P = 0.028) were improved with SC, whereas colonic LAB α-amylase activity was significantly decreased (P = 0.046). Most enzymes involved in plant cell wall digestion were increased after SC addition. This fact may contribute to explain a better digestion of fiber that has been previously reported in SC-supplemented horses. [PUBLICATION ABSTRACT]
机译:四只盲肠和右腹结肠瘘马被分配为4 x 4拉丁方形设计,并饲喂高纤维(HF)或高淀粉(HS)饮食,含或不含10 g酿酒酵母(SC; CBS 493.94) ),含4.5 x 10sup9 cfu / g。 HF和HS饮食由颗粒饲料和长麦草(分别为18.0和3.5 g DM.kgsup(-1)的BW.dsup(-1))组成,均分两餐,以提供NDF:淀粉比为分别为3.5和1.0。经过21天的适应期后,在第23天和第25天早上进餐后4小时收集肠道内容物,以确定细菌和SC的浓度。在液体相关细菌(LAB)中测定多糖酶活性(CMCase,木聚糖酶,淀粉酶)和糖苷水解酶的活性(α-L-阿拉伯糖苷酶,β-D-纤维二糖苷酶,β-D-葡萄糖苷酶,β-D-木糖苷酶)和从两个隔室中分离出的固体粘附细菌(SAB)。当淀粉摄入量增加时,盲肠(P = 0.012)和结肠(P = 0.086)中的乳酸杆菌增加,而任一隔室中的总厌氧菌,纤维素分解酶和链球菌均未改变。在补充酵母的马中,盲肠中的SC浓度(4.4 x 10sup6 cfu / mL)比右腹结肠中的SC浓度(5.6 x 10sup4 cfu / mL)高,并且饮食也没有变化。盲肠中乳酸菌和乳酸利用者的浓度较高(分别为P = 0.099和0.067),但在补充SC的马的结肠中,乳酸菌和乳酸利用者的浓度仍然相似。饮食不影响SAB的CMCase活性。添加淀粉可降低SAB的结肠木聚糖酶活性(P = 0.046),但盲肠未见变化。当淀粉摄入量增加时,除盲肠中的β-D-木糖苷酶外,盲肠和结肠中的所有SAB葡糖苷水解酶活性均降低。 LAB CMCase(结肠中P = 0.049)和木聚糖酶(盲肠中P = 0.021;结肠中P <0.001)活性随淀粉摄入量的减少而降低。没有观察到淀粉对LAB或SAB淀粉酶活性的影响。在盲肠中添加SC改善SAB CMCase(P = 0.019)和结肠(P = 0.037),在盲肠中添加β-D-纤维二糖苷酶(P = 0.002)和β-D-葡萄糖苷酶(P = 0.041)。盲肠仅改善盲肠中的木聚糖酶(P = 0.015)和盲肠中的β-D-木糖苷酶(P = 0.028),而结肠LABα-淀粉酶活性则明显降低(P = 0.046)。添加SC后,大多数参与植物细胞壁消化的酶均增加。这个事实可能有助于解释更好的消化纤维的方法,先前在补充SC的马中已有报道。 [出版物摘要]

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