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Effect of glycerol in combination with alfalfa on in vitro gas production and microbial protein synthesis

机译:甘油与苜蓿联合使用对体外产气和微生物蛋白质合成的影响

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This study sought to determine the effect of added glycerol on microbial protein synthesis, ruminal degradation and utilization of alfalfa at different concentrations of nonstructural carbohydrates (NSC), using in vitro gas production. The 2 x 3 factorial plus one treatment consisted of oven-dried alfalfa with two NSC levels [high: 17.9 (HNSC) or low: 7.4% dry matter (DM) (LNSC)] and three glycerol treatments [control without glycerol, 15% crude glycerol (CG) and 15% pure glycerol (PG)], the additional treatment was LNSC + exogenous sugars (LNSC + ES: LNSC with 5% sucrose + 5% starch). Five pre-planned contrasts were evaluated from the seven treatments: (1) HNSC vs. LNSC alfalfa; (2) with glycerol vs. without; (3) interaction of alfalfa and glycerol; (4) CG vs. PG, and; (5) LNSC + ES vs. HNSC. Gas production over 24 h was higher for HNSC than LNSC (202 vs. 179 mL g(-1) DM) and with glycerol than without glycerol (202.2 vs. 168 mL g(-1) DM). A decrease in the acetate: propionate ratio was observed for HNSC compared with LNSC (2.87 vs. 3.27) and for the addition of glycerol vs. no glycerol (2.78 vs. 3.65). Reduced microbial mass (185.5 vs. 240.5 mg g(-1) DM) was observed for CG compared with PG. The LNSC + ES treatment had lower microbial protein synthesis and propionic acid production in relation to HNSC. No significant interaction was observed between the effect of NSC content of alfalfa and glycerol utilization. When effects were studied separately, results indicate that increasing NSC in alfalfa stimulates the synthesis of microbial protein. Also, the addition of glycerol promotes the synthesis of glucose precursors. Finally, the type of glycerol has an impact on results obtained suggesting caution when extrapolating results for PG to CG.
机译:这项研究试图利用体外产生的气体来确定添加甘油对不同浓度的非结构化碳水化合物(NSC)时苜蓿的微生物蛋白质合成,瘤胃降解和利用的影响。 2 x 3阶乘加1种处理包括烘干的苜蓿,具有两种NSC水平[高:17.9(HNSC)或低:7.4%干物质(DM)(LNSC)]和三种甘油处理[不含甘油的对照,为15%粗甘油(CG)和15%的纯甘油(PG)],另外的处理方法是LNSC +外源糖(LNSC + ES:含5%蔗糖+ 5%淀粉的LNSC)。从七种治疗方法中评估了五种预先计划的对比:(1)HNSC与LNSC苜蓿; (2)有甘油vs.无甘油(3)苜蓿与甘油的相互作用; (4)CG与PG,以及; (5)LNSC + ES与HNSC。 HNSC在24小时内的产气量高于LNSC(202 vs. 179 mL g(-1)DM)和含甘油的气体产量高于无甘油(202.2 vs. 168 mL g(-1)DM)。与LNSC相比,HNSC的乙酸盐:丙酸酯比率降低(2.87对3.27),甘油的添加对无甘油(2.78对3.65)进行了观察。与PG相比,CG的微生物量减少了(185.5对240.5 mg g(-1)DM)。与HNSC相比,LNSC + ES处理的微生物蛋白合成和丙酸生成量较低。紫花苜蓿的NSC含量和甘油利用率之间没有观察到明显的相互作用。当单独研究效果时,结果表明苜蓿中NSC的增加会刺激微生物蛋白的合成。同样,甘油的添加促进了葡萄糖前体的合成。最后,甘油的类型会对所得结果产生影响,提示将PG的结果外推至CG时应谨慎。

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