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Screening exogenous fibrolytic enzyme preparations for improved in vitro digestibility of bermudagrass haylage

机译:筛选外源纤溶酶制剂以改善百慕大草的体外消化率

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摘要

Our objectives were to evaluate the effects of 12 exogenous fibrolytic enzyme products (EFE) on ruminal in vitro neutral detergent fiber digestibility (NDFD) and preingestive hydrolysis of a 4-wk regrowth of bermudagrass haylage (BH), to examine the accuracy of predicting NDFD with EFE activity measures, and to examine the protein composition of the most and least effective EFE at increasing NDFD. In experiment 1, effects of 12 EFE on NDFD of BH were tested. Enzymes were applied in quadruplicate to culture tubes containing ground BH. The suspension was incubated for 24 h at 25℃ before addition of rumen fluid media and further incubation for 24 h at 39℃. The experiment was repeated twice. In addition, regression relationships between EFE activity measures and NDFD were examined. Compared with the values for the control, 9 EFE-treated substrates had greater NDFD (37.8 to 40.4 vs. 35.6%), 6 had greater total VFA concentration (59.1 to 61.2 vs. 55.4 mM), and 4 had lower acetate-to-propionate ratios (3.03 to 3.16 vs. 3.24). In experiment 2, EFE effects on preingestive fiber hydrolysis were evaluated by incubating enzyme-treated and untreated bermudagrass suspensions in quadruplicate for 24 h at 25℃ and examining fiber hydrolysis measures. Compared with values for the control, 3 EFE reduced neutral detergent fiber concentration (62.8 to 63.7 vs. 67.3%), 10 increased release of water-soluble carbohydrates (26.8 to 58.5 vs. 22.8 mg/g), and 8 increased release of ferulic acid (210 to 391 vs. 198 μg/g). Regression analyses revealed that enzyme activities accurately [coefficient of determination (R~2) = 0.98] predicted preingestive hydrolysis measures (water-soluble carbohydrates, ferulic acid), moderately (R~2 = 0.47) predicted neutral detergent fiber hydrolysis, but poorly (R~2 ≤ 0.1) predicted dry matter and NDFD. In experiment 3, proteomic tools were used to examine the protein composition of the most and least effective EFE at improving NDFD. Relative to the least effective, the most effective EFE at increasing NDFD contained 10 times more endoglucanase Ⅲ, 17 times more acetylxylan esterase with a cellulose-binding domain 1, 33 times more xylanase Ⅲ, 25 times more β-xylosidase, and 7.7 times more polysaccharide monooxygenase with cellulose-binding domain 1 and 3 times more swollenin. The most effective EFE had a much greater quantity of fibrolytic enzymes and key proteins necessary for hemi-cellulose and lignocellulase deconstruction. This study identified several EFE that increased the NDFD and in vitro fermentation of 4-wk BH and revealed why some EFE are more effective than others.
机译:我们的目标是评估12种外源性纤溶酶产物(EFE)对瘤胃体外中性洗涤剂纤维消化率(NDFD)的影响以及4周草甘膦(BH)的再生再生,以检验预测NDFD的准确性用EFE活性测量,并检查在增加NDFD时最有效的EFE的蛋白质组成。在实验1中,测试了12种EFE对BH的NDFD的影响。将酶一式四份施加到含有地面BH的培养管中。将悬浮液在25℃下孵育24小时,然后添加瘤胃液培养基,并在39℃下进一步孵育24小时。重复实验两次。此外,还检查了EFE活动量度和NDFD之间的回归关系。与对照值相比,经EFE处理的9种底物的NDFD较高(37.8至40.4比35.6%),6种底物的总VFA浓度较高(59.1至61.2比55.4 mM),而4种底物的乙酸根丙酸酯比例(3.03至3.16与3.24)。在实验2中,通过将经酶处理和未经处理的百慕大草悬浮液在25℃下一式四份孵育24小时,并研究纤维水解措施,来评估EFE对食用纤维水解的影响。与对照值相比,有3种EFE降低了中性洗涤剂纤维的浓度(62.8至63.7对67.3%),增加了10种水溶性碳水化合物的释放(26.8至58.5对22.8 mg / g),以及8种增加了阿魏酸的释放酸(210至391对198μg/ g)。回归分析表明,酶活性准确[测定系数(R〜2)= 0.98]预测为预测性水解措施(水溶性碳水化合物,阿魏酸),中等(R〜2 = 0.47)预测为中性洗涤剂纤维水解,但较差( R〜2≤0.1)预测干物质和NDFD。在实验3中,使用蛋白质组学工具检查了最有效的EFE改善NDFD的蛋白质组成。与增加NDFD效果最差,最有效的EFE相比,内切葡聚糖酶Ⅲ的含量高10倍,具有纤维素结合域的乙酰木聚糖酯酶的含量高17倍,木聚糖酶Ⅲ的含量高33倍,β-木糖苷酶的含量高25倍,而7.7倍多糖单加氧酶,具有纤维素结合结构域1和3倍的溶胀素。最有效的EFE具有大量的半纤维素和木质纤维素酶解构所必需的纤溶酶和关键蛋白。这项研究确定了几种能增加NDFD和4-wk BH体外发酵的EFE,并揭示了为什么某些EFE比其他EFE更有效。

著录项

  • 来源
    《Journal of dairy science》 |2015年第4期|2555-2567|共13页
  • 作者单位

    Department of Animal Sciences, Interdisciplinary Center for Biotechnology Research, University of Florida, Gainesville 32608;

    Department of Animal Sciences, Interdisciplinary Center for Biotechnology Research, University of Florida, Gainesville 32608;

    Department of Animal Sciences, Interdisciplinary Center for Biotechnology Research, University of Florida, Gainesville 32608;

    Department of Microbiology and Cell Science, Interdisciplinary Center for Biotechnology Research, University of Florida, Gainesville 32608;

    Proteomics, Interdisciplinary Center for Biotechnology Research, University of Florida, Gainesville 32608;

    Department of Animal Sciences, Interdisciplinary Center for Biotechnology Research, University of Florida, Gainesville 32608;

    Department of Animal Sciences, Interdisciplinary Center for Biotechnology Research, University of Florida, Gainesville 32608;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    enzyme; digestibility; bermudagrass; fermentation;

    机译:酶消化率百慕大草发酵;

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