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硝酸钠和包被蛋氨酸对泌乳水牛泌乳性能、瘤胃发酵特性、氨基酸代谢及微生物群落的影响

Effects of Sodium Nitrate and Coated Methionine on Lactation Performance, Rumen Fermentation Characteristics, Amino Acid Metabolism, and Microbial Communities in Lactating Buffaloes.

作者信息

Guo Yanxia, Fan Zexiang, Li Mengwei, Xie Huade, Peng Lijuan, Yang Chengjian

机构信息

Key Laboratory of Buffalo Genetics, Breeding and Reproduction Technology, Ministry of Agriculture and Guangxi, Buffalo Research Institute, Chinese Academy of Agricultural Sciences, Nanning 530001, China.

出版信息

Microorganisms. 2023 Mar 7;11(3):675. doi: 10.3390/microorganisms11030675.

Abstract

Sodium nitrate is used as a non-protein nitrogen supplement while methionine is considered as a common methionine additive for ruminants. This study investigated the effects of sodium nitrate and coated methionine supplementation on milk yield, milk composition, rumen fermentation parameters, amino acid composition, and rumen microbial communities in lactating buffaloes. Forty mid-lactation multiparous Murrah buffaloes within the initial days in milk (DIM) = 180.83 ± 56.78 d, milk yield = 7.63 ± 0.19 kg, body weight = 645 ± 25 kg were selected and randomly allocated into four groups (N = 10). All of animals received the same total mixed ratio (TMR) diet. Furthermore, the groups were divided into the control group (CON), 70 g/d sodium nitrate group (SN), 15 g/d palmitate coated L-methionine group (MET), and 70 g/d sodium nitrate +15 g/d palmitate coated L-methionine group (SN+MET). The experiment lasted for six weeks, including two weeks of adaption. The results showed that most rumen-free amino acids, total essential amino acids, and total amino acids in Group SN increased ( < 0.05), while the dry matter intake (DMI) and rumen acetate, propionate, valerate, and total volatile fatty acids (TVFA) in Group MET decreased ( < 0.05). However, there was no significant difference in milk yield, milk protein, milk fat, lactose, total solid content, and sodium nitrate residue in milk among groups ( > 0.05). Group SN+MET had a decreased rumen propionate and valerate ( < 0.05), while increasing the Ace, Chao, and Simpson indices of alpha diversity of rumen bacteria. Proteobacteria and Actinobacteriota were significantly increased ( < 0.05) in Group SN+MET, but Bacteroidota, and Spirochaetota were decreased ( < 0.05). In addition, Group SN+MET also increased the relative abundance of , , , , and , which were positively correlated with cysteine and negatively correlated with rumen acetate, propionate, valerate, and TVFA. Rikenellaceae_RC9_gut_group was identified as a biomarker in Group SN. Norank_f__UCG-011 was identified as a biomarker in Group MET. , , , and were identified as biomarkers in Group SN+MET. In conclusion, sodium nitrate increased rumen free amino acids, while methionine decreased dry matter intake (DMI) and rumen volatile fatty acids. The combined use of sodium nitrate and methionine enriched the species abundance of microorganisms in the rumen and affected the composition of microorganisms in the rumen. However, sodium nitrate, methionine, and their combination had no significant effect on the milk yield and milk composition. It was suggested that the combined use of sodium nitrate and methionine in buffalo production was more beneficial.

摘要

硝酸钠用作非蛋白氮补充剂,而蛋氨酸被视为反刍动物常用的蛋氨酸添加剂。本研究调查了添加硝酸钠和包膜蛋氨酸对泌乳水牛产奶量、乳成分、瘤胃发酵参数、氨基酸组成和瘤胃微生物群落的影响。选择40头处于泌乳中期的经产穆拉水牛,初始泌乳天数(DIM)=180.83±56.78天,产奶量=7.63±0.19千克,体重=645±25千克,并随机分为四组(每组10头)。所有动物均接受相同的全混合日粮(TMR)。此外,将各组分为对照组(CON)、70克/天硝酸钠组(SN)、15克/天棕榈酸包膜L-蛋氨酸组(MET)和70克/天硝酸钠+15克/天棕榈酸包膜L-蛋氨酸组(SN+MET)。试验持续六周,包括两周的适应期。结果表明,SN组瘤胃中大多数游离氨基酸、总必需氨基酸和总氨基酸增加(P<0.05),而MET组干物质采食量(DMI)以及瘤胃乙酸、丙酸、戊酸和总挥发性脂肪酸(TVFA)降低(P<0.05)。然而,各组间产奶量、乳蛋白、乳脂肪、乳糖、总固体含量和乳中硝酸钠残留量无显著差异(P>0.05)。SN+MET组瘤胃丙酸和戊酸降低(P<0.05),同时瘤胃细菌α多样性的Ace、Chao和Simpson指数增加。SN+MET组变形菌门和放线菌门显著增加(P<0.05),但拟杆菌门和螺旋体门减少(P<0.05)。此外,SN+MET组还增加了与半胱氨酸呈正相关、与瘤胃乙酸、丙酸、戊酸和TVFA呈负相关的 、 、 、 和 的相对丰度。Rikenellaceae_RC9_gut_group被鉴定为SN组的生物标志物。Norank_f__UCG-011被鉴定为MET组的生物标志物。 、 、 和 被鉴定为SN+MET组的生物标志物。总之,硝酸钠增加瘤胃游离氨基酸,而蛋氨酸降低干物质采食量(DMI)和瘤胃挥发性脂肪酸。硝酸钠和蛋氨酸联合使用丰富了瘤胃微生物的物种丰度并影响瘤胃微生物组成。然而,硝酸钠、蛋氨酸及其组合对产奶量和乳成分无显著影响。建议在水牛生产中联合使用硝酸钠和蛋氨酸更有益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/333a/10057408/9e78d1ce5954/microorganisms-11-00675-g001.jpg

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