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外源性纤维分解酶和重组细菌扩张素协同提高了百慕大草青贮料的水解和体外消化率。

Exogenous fibrolytic enzymes and recombinant bacterial expansins synergistically improve hydrolysis and in vitro digestibility of bermudagrass haylage.

机构信息

Department of Animal Sciences, University of Florida, Gainesville 32611.

Department of Microbiology and Cell Science, Institute of Food and Agricultural Sciences, University of Florida, Gainesville 32603.

出版信息

J Dairy Sci. 2019 Sep;102(9):8059-8073. doi: 10.3168/jds.2019-16339. Epub 2019 Jul 17.

DOI:10.3168/jds.2019-16339
PMID:31326164
Abstract

Four experiments were conducted to examine the effects of a recombinant bacterial expansin-like protein (BsEXLX1) from Bacillus subtilis and a commercial exogenous fibrolytic enzyme (EFE) preparation for ruminants on hydrolysis of pure substrates (cellulose and xylan) and in vitro digestibility of bermudagrass haylage (BMH). Recombinant Escherichia coli BL21 strain was used to express BsEXLX1; the protein was purified using an affinity column. In experiment 1, carboxymethylcellulose, Whatman #1 filter paper (General Electric, Boston, MA) and oat-spelt xylan substrates were subjected to 4 treatments (1) sodium citrate buffer (control), (2) BsEXLX1 (162 µg/g of substrate), (3) EFE (2.3 mg/g of substrate), and (4) EFE + BsELX1 in 3 independent runs. Samples were incubated at optimal conditions for both additives (pH 5 and 50°C) or at ruminal (pH 6 and 39°C) or ambient (pH 6 and 25°C) conditions for 24 h and sugar release was measured. In experiment 2, digestibility in vitro of BMH was examined after treatment with the following: (1) control (buffer only), (2) BsEXLX1 (162 µg/g of dry matter), (3) EFE (2.2 mg/g of dry matter), and (4) EFE + BsEXLX1 in 3 independent runs at 39°C for 24 h. Experiment 3 examined effects of EFE and BsEXLX1 on simulated preingestive hydrolysis and profile of released sugars from BMH after samples were suspended in deionized water with sodium azide at 25°C for 24 h in 2 independent runs. In experiment 4, the sequence of the BsEXLX1 purified protein was compared with 447 ruminal bacterial genomes to identify similar proteins from the rumen. In experiment 1, compared with EFE alone, EFE and BsEXLX1 synergistically increased sugar release from carboxymethylcellulose and Whatman #1 filter paper under all simulated conditions; however, hydrolysis of xylan was not improved. In experiment 2, compared with EFE alone, treatment with EFE and BsEXLX1 increased neutral detergent fiber and acid detergent fiber digestibility of bermudagrass haylage (by 5.5 and 15%, respectively) and total volatile fatty acid concentrations, and decreased acetate-propionate ratio. In experiment 3, compared with EFE alone. The EFE and BsEXLX1 synergistically reduced concentrations of neutral detergent fiber and acid detergent fiber and increased release of sugars by 9.3%, particularly cellobiose (72.5%). In experiment 4, a similar sequence to that of BsEXLX1 was identified in Bacillus licheniformis, and similar hypothetical protein sequences were identified in Ruminococcus flavefaciens strains along with different protein structures in E. xylanophilum and Lachnospiraceae. This study showed that an expansin-like protein synergistically increased the hydrolysis of pure cellulose substrates and the hydrolysis and digestibility in vitro of BMH.

摘要

进行了四项实验,以研究来自枯草芽孢杆菌的重组细菌扩展蛋白(BsEXLX1)和一种商业外源纤维分解酶(EFE)制剂对纯底物(纤维素和木聚糖)水解以及百慕大草青贮(BMH)体外消化率的影响。使用重组大肠杆菌 BL21 菌株表达 BsEXLX1;使用亲和柱纯化蛋白质。在实验 1 中,羧甲基纤维素、Whatman #1 滤纸(通用电气,波士顿,MA)和燕麦-斯佩尔特木聚糖底物接受了 4 种处理(1)柠檬酸钠缓冲液(对照),(2)BsEXLX1(底物 162μg/g),(3)EFE(底物 2.3mg/g),和(4)EFE+BsELX1 在 3 个独立运行中。将样品在添加剂的最佳条件下(pH5 和 50°C)或在瘤胃(pH6 和 39°C)或环境(pH6 和 25°C)条件下孵育 24 小时,并测量糖的释放量。在实验 2 中,在以下处理后检查了 BMH 的体外消化率:(1)对照(仅缓冲液),(2)BsEXLX1(干物质 162μg/g),(3)EFE(干物质 2.2mg/g),和(4)EFE+BsEXLX1 在 39°C 下进行 24 小时的 3 个独立运行。实验 3 检查了 EFE 和 BsEXLX1 对 BMH 模拟预消化水解和释放糖谱的影响,方法是将样品在 25°C 下用叠氮化钠悬浮在去离子水中 24 小时,在 2 个独立运行中进行。在实验 4 中,将纯化的 BsEXLX1 蛋白序列与 447 个瘤胃细菌基因组进行比较,以鉴定来自瘤胃的相似蛋白。在实验 1 中,与单独的 EFE 相比,EFE 和 BsEXLX1 在所有模拟条件下协同增加了羧甲基纤维素和 Whatman #1 滤纸的糖释放;然而,木聚糖的水解没有得到改善。在实验 2 中,与单独的 EFE 相比,用 EFE 和 BsEXLX1 处理增加了百慕大草青贮的中性洗涤剂纤维和酸性洗涤剂纤维消化率(分别增加了 5.5%和 15%)和总挥发性脂肪酸浓度,并降低了乙酸-丙酸比。在实验 3 中,与单独的 EFE 相比,EFE 和 BsEXLX1 协同降低了中性洗涤剂纤维和酸性洗涤剂纤维的浓度,并增加了糖的释放量 9.3%,特别是纤维二糖(72.5%)。在实验 4 中,在地衣芽孢杆菌中鉴定到与 BsEXLX1 相似的序列,在 Ruminococcus flavefaciens 菌株中鉴定到类似的假设蛋白序列,以及在 E. xylanophilum 和 Lachnospiraceae 中不同的蛋白结构。本研究表明,一种扩展蛋白协同增加了纯纤维素底物的水解以及 BMH 的水解和体外消化率。

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