Effects of fibrolytic and amylolytic compound enzyme preparation on rumen fermentation, serum parameters and production performance in primiparous early-lactation dairy cows.

IF 1.6 3区 农林科学 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE Journal of Dairy Research Pub Date : 2024-10-14 DOI:10.1017/S0022029924000475
Zhaokun Liu, Wen Li, Congcong Zhao, Yuanjie Zhang, Yong Li, Lamei Wang, XiaoYong Li, Junhu Yao, Wilbert F Pellikaan, Yangchun Cao
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Abstract

This research communication reports the effects of a compound enzyme preparation consisting of fibrolytic (cellulase 3500 CU/g, xylanase 2000 XU/g, β-glucanase 17 500 GU/g) and amylolytic (amylase 37 000 AU/g) enzymes on nutrient intake, rumen fermentation, serum parameters and production performance in primiparous early-lactation (47 ± 2 d) dairy cows. Twenty Holstein-Friesian cows in similar body condition scores were randomly divided into control (CON, n = 10) and experimental (EXP, n = 10) groups in a completely randomized single-factor design. CON was fed a basal total mixed ration diet and EXP was dietary supplemented with compound enzyme preparation at 70 g/cow/d. The experiment lasted 4 weeks, with 3 weeks for adaptation and then 1 week for measurement. Enzyme supplementation significantly increased diet non-fibrous carbohydrates (NFC) content as well as dry matter intake (DMI) and NFC intake (P < 0.05). EXP had increased ruminal butyrate and isobutyrate percentages (P < 0.01) but decreased propionate and valerate percentages (P < 0.05), as well as increased serum alkaline phosphatase activity and albumin concentration (P ≤ 0.01). Additionally, EXP had increased milk yield (0.97 kg/d), 4% fat corrected milk yield and energy corrected milk yield, as well as milk fat and protein yield (P < 0.01). In conclusion, dietary supplementation with a fibrolytic and amylolytic compound enzyme preparation increased diet NFC content, DMI and NFC intake, affected rumen fermentation by increasing butyrate proportion at the expense of propionate, and enhanced milk performance in primiparous early-lactation dairy cows.

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纤维分解和淀粉分解复合酶制剂对初产早产奶牛瘤胃发酵、血清参数和生产性能的影响
本研究通讯报告了由纤维分解酶(纤维素酶 3500 CU/g、木聚糖酶 2000 XU/g、β-葡聚糖酶 17 500 GU/g)和淀粉分解酶(淀粉酶 37 000 AU/g)组成的复合酶制剂对初产早期泌乳期(47 ± 2 d)奶牛的营养摄入、瘤胃发酵、血清参数和生产性能的影响。在完全随机单因素设计中,将 20 头体况评分相似的荷斯坦-弗里斯兰奶牛随机分为对照组(CON,n = 10)和实验组(EXP,n = 10)。对照组饲喂基础全混合日粮,实验组饲喂添加复合酶制剂的日粮,添加量为 70 克/头牛/天。实验持续 4 周,其中 3 周为适应期,1 周为测量期。补充酶制剂后,日粮中的非纤维碳水化合物(NFC)含量、干物质摄入量(DMI)和非纤维碳水化合物摄入量均有明显增加(P < 0.05)。EXP提高了瘤胃丁酸盐和异丁酸盐的百分比(P < 0.01),但降低了丙酸盐和戊酸盐的百分比(P < 0.05),还提高了血清碱性磷酸酶活性和白蛋白浓度(P ≤ 0.01)。此外,EXP的产奶量(0.97 kg/d)、4%脂肪校正产奶量和能量校正产奶量以及乳脂和蛋白质产量均有所增加(P < 0.01)。总之,日粮中添加纤维溶解和淀粉溶解复合酶制剂可提高日粮中NFC的含量、DMI和NFC的摄入量,通过增加丁酸盐比例(以丙酸盐为代价)影响瘤胃发酵,并提高初产早产奶牛的产奶性能。
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来源期刊
Journal of Dairy Research
Journal of Dairy Research 农林科学-奶制品与动物科学
CiteScore
3.80
自引率
4.80%
发文量
117
审稿时长
12-24 weeks
期刊介绍: The Journal of Dairy Research is an international Journal of high-standing that publishes original scientific research on all aspects of the biology, wellbeing and technology of lactating animals and the foods they produce. The Journal’s ability to cover the entire dairy foods chain is a major strength. Cross-disciplinary research is particularly welcomed, as is comparative lactation research in different dairy and non-dairy species and research dealing with consumer health aspects of dairy products. Journal of Dairy Research: an international Journal of the lactation sciences.
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