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啤酒糟蛋白水解物对以高谷物日粮饲喂的人工瘤胃中气体产生、瘤胃发酵特性、微生物蛋白合成及微生物群落的影响

Effects of brewers' spent grain protein hydrolysates on gas production, ruminal fermentation characteristics, microbial protein synthesis and microbial community in an artificial rumen fed a high grain diet.

作者信息

Ran Tao, Jin Long, Abeynayake Ranithri, Saleem Atef Mohamed, Zhang Xiumin, Niu Dongyan, Chen Lingyun, Yang Wenzhu

机构信息

Agriculture and Agri-Food of Canada, Lethbridge Research and Development Centre, Lethbridge, AB, T1J 4B1, Canada.

Key Laboratory for Agro-Ecological Processes in Subtropical Region, Institute of Subtropical Agriculture, Chinese Academy of Sciences, Changsha, 410125, Hunan, China.

出版信息

J Anim Sci Biotechnol. 2021 Jan 4;12(1):1. doi: 10.1186/s40104-020-00531-5.

Abstract

BACKGROUND

Brewers' spent grain (BSG) typically contains 20% - 29% crude protein (CP) with high concentrations of glutamine, proline and hydrophobic and non-polar amino acid, making it an ideal material for producing value-added products like bioactive peptides which have antioxidant properties. For this study, protein was extracted from BSG, hydrolyzed with 1% alcalase and flavourzyme, with the generated protein hydrolysates (AlcH and FlaH) showing antioxidant activities. This study evaluated the effects of AlcH and FlaH on gas production, ruminal fermentation characteristics, nutrient disappearance, microbial protein synthesis and microbial community using an artificial rumen system (RUSITEC) fed a high-grain diet.

RESULTS

As compared to the control of grain only, supplementation of FlaH decreased (P < 0.01) disappearances of dry matter (DM), organic matter (OM), CP and starch, without affecting fibre disappearances; while AlcH had no effect on nutrient disappearance. Neither AlcH nor FlaH affected gas production or VFA profiles, however they increased (P < 0.01) NH-N and decreased (P < 0.01) H production. Supplementation of FlaH decreased (P < 0.01) the percentage of CH in total gas and dissolved-CH (dCH) in dissolved gas. Addition of monensin reduced (P < 0.01) disappearance of nutrients, improved fermentation efficiency and reduced CH and H emissions. Total microbial nitrogen production was decreased (P < 0.05) but the proportion of feed particle associated (FPA) bacteria was increased with FlaH and monensin supplementation. Numbers of OTUs and Shannon diversity indices of FPA microbial community were unaffected by AlcH and FlaH; whereas both indices were reduced (P < 0.05) by monensin. Taxonomic analysis revealed no effect of AlcH and FlaH on the relative abundance (RA) of bacteria at phylum level, whereas monensin reduced (P < 0.05) the RA of Firmicutes and Bacteroidetes and enhanced Proteobacteria. Supplementation of FlaH enhanced (P < 0.05) the RA of genus Prevotella, reduced Selenomonas, Shuttleworthia, Bifidobacterium and Dialister as compared to control; monensin reduced (P < 0.05) RA of genus Prevotella but enhaced Succinivibrio.

CONCLUSIONS

The supplementation of FlaH in high-grain diets may potentially protect CP and starch from ruminal degradation, without adversely affecting fibre degradation and VFA profiles. It also showed promising effects on reducing CH production by suppressing H production. Protein enzymatic hydrolysates from BSG using flavourzyme showed potential application to high value-added bio-products.

摘要

背景

啤酒糟通常含有20%-29%的粗蛋白(CP),富含谷氨酰胺、脯氨酸以及疏水和非极性氨基酸,使其成为生产具有抗氧化特性的生物活性肽等增值产品的理想原料。在本研究中,从啤酒糟中提取蛋白质,用1%的碱性蛋白酶和风味酶进行水解,所产生的蛋白质水解物(AlcH和FlaH)具有抗氧化活性。本研究使用人工瘤胃系统(RUSITEC),以高谷物日粮为食,评估了AlcH和FlaH对气体产生、瘤胃发酵特性、养分消失、微生物蛋白质合成和微生物群落的影响。

结果

与仅饲喂谷物的对照组相比,添加FlaH降低了(P<0.01)干物质(DM)、有机物(OM)、CP和淀粉的消失量,但不影响纤维的消失量;而AlcH对养分消失没有影响。AlcH和FlaH均不影响气体产生或挥发性脂肪酸(VFA)谱,但它们增加了(P<0.01)氨氮(NH-N)并降低了(P<0.01)氢气(H)的产生。添加FlaH降低了(P<0.01)总气体中甲烷(CH)的百分比以及溶解气体中溶解甲烷(dCH)的含量。添加莫能菌素降低了(P<0.01)养分的消失量,提高了发酵效率,并减少了CH和H的排放。添加FlaH和莫能菌素后,总微生物氮产量降低(P<0.05),但与饲料颗粒相关(FPA)细菌的比例增加。AlcH和FlaH对FPA微生物群落的操作分类单元(OTU)数量和香农多样性指数没有影响;而莫能菌素使这两个指数均降低(P<0.05)。分类学分析表明,AlcH和FlaH对门水平细菌的相对丰度(RA)没有影响,而莫能菌素降低了(P<0.05)厚壁菌门和拟杆菌门的RA,并增强了变形菌门。与对照组相比,添加FlaH增加了(P<0.05)普雷沃氏菌属的RA,降低了硒单胞菌属、沙氏菌属、双歧杆菌属和 Dialister属的RA;莫能菌素降低了(P<0.05)普雷沃氏菌属的RA,但增加了琥珀酸弧菌属的RA。

结论

在高谷物日粮中添加FlaH可能会保护CP和淀粉不被瘤胃降解,而不会对纤维降解和VFA谱产生不利影响。它还显示出通过抑制H的产生来减少CH产生的良好效果。使用风味酶从啤酒糟中获得的蛋白质酶解物在高附加值生物产品中具有潜在应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d22c/7780661/fb3884ba1405/40104_2020_531_Fig1_HTML.jpg

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