数字农科院2.0

Beneficial effects of American ginseng (Panax quinquefolius L.) extract residue as a feed additive on production, health status, and gastrointestinal bacteria in sika deer (Cervus nippon)

文献类型: 外文期刊

作者: Yan Wu;Shuting Zhao;Peihe Zheng;Hanlu Liu;Zhengyi Qu;Wei Hou;Weitao Yuan;Tao Feng;Xiaofeng Zhan;Jinlong Shen;Kaiying Wang

作者机构:

关键词: American ginseng residue;antioxidant;gastrointestinal bacteria;rumen fermentation;sika deer

期刊名称: Frontiers in Microbiology

ISSN: 1664-302X

年卷期: 2024 年 15 卷

页码:

收录情况: SCIE(2024版)

摘要: American ginseng residue is an industrial by-product of ginseng saponin extraction, including polysaccharides and amino acids; however, it is often discarded into the natural environment, representing a waste of resources as well as an environmental issue. In this study, we examined the effects of adding American ginseng residue to the basal diet of sika deer. Twelve antler-bearing male sika deer were assigned randomly to groups fed a diet supplemented with 0% (CON), 1% (LGR), and 3% (HGR) American ginseng residue, respectively, (n = 4 per group) for 5 weeks. Supplementation with 3% American ginseng residue significantly increased antler production and feed utilization efficiency in antler-bearing sika deer (p < 0.05). There were no significant differences in serum biochemical indexes among the three groups, but serum immunoglobulin A and glutathione peroxidase levels were significantly increased in the LGR and HGR groups (p < 0.05). Supplementation with American ginseng residue affected rumen fermentation in sika deer, significantly increasing the rumen contents of acetic acid, propionic acid, and total volatile fatty acids, and decreasing rumen fluid pH (p < 0.05), but had no significant effect on microbial protein or ammoniacal nitrogen content. American ginseng residue also affected the rumen bacterial composition, with significant up-regulation of Bacteroidota abundance in the HGR group, significant increases in Fibrobacterota and Fibrobacter abundance in the LGR group, and a significant decrease in Oscillospiraceae_UCG-005. Supplementation with ginseng residue had no significant effect on volatile fatty acids in the feces of sika deer, but did affect the composition of fecal bacteria, with significant decreases in Desulfobacterota and Rikenellaceae_RC9_gut_group in the HGR group, and a significant increase in Ruminococcus in the LGR group (p < 0.05). In addition, the abundance of Paeniclostridium in the feces decreased linearly with increasing concentration of ginseng residue, with a significant difference among the groups (p < 0.05). This study comprehensively evaluated the effects of American ginseng residue as a potential feed additive on the production performance and gastrointestinal bacterial community in antler-bearing sika deer. The results indicated that ginseng residue was a suitable feed additive for improving production performance and health in sika deer.

分类号:

  • 相关文献

[1]Nutritional composition and antioxidant activity of twenty mung bean cultivars in China. Zhenxing Shi,Yang Yao,Yingying Zhu,GuixingRen. 2016

[2]Effect of feeding Bacillus subtilis natto fermentation product on milk production and composition, blood metabolites and rumen fermentation in early lactation dairy cows. Peng, H.,Wang, J. Q.,Kang, H. Y.,Dong, S. H.,Sun, P.,Bu, D. P.,Zhou, L. Y.,Kang, H. Y.,Dong, S. H.. 2012

[3]Effect of weaning time on growth performance and rumen development of Hu lambs. Chai, J. M.,Diao, Q. Y.,Wang, S. Q.,Wang, H. C.,Zhang, N. F..

[4]Effects of Bacillus subtilis natto on milk production, rumen fermentation and ruminal microbiome of dairy cows. Sun, P.,Wang, J. Q.,Deng, L. F.. 2013

[5]Effect of several supplemental Chinese herbs additives on rumen fermentation, antioxidant function and nutrient digestibility in sheep. Qiao, G. H.,Zhou, X. H.,Li, Y.,Zhang, H. S.,Li, J. H.,Wang, C. M.,Lu, Y.. 2012

[6]Relationship between thiamine and subacute ruminal acidosis induced by a high-grain diet in dairy cows. Pan, X. H.,Yang, L.,Xue, F. G.,Xin, H. R.,Xiong, B. H.,Pan, X. H.,Beckers, Y.,Jiang, L. S..

[7]The effect of different doses of Astragalus root extract on in vitro rumen fermentation of steam-flaked maize grains used as an only substrate. Deng, D. J.,Ren, L. P.,Zhou, Z. M.,Meng, Q. X.,Deng, D. J.,Ren, L. P.,Zhou, Z. M.,Meng, Q. X.,Wang, J.. 2007

[8]Feeding different dietary protein to energy ratios to Holstein heifers: effects on growth performance, blood metabolites and rumen fermentation parameters. Dong, L. F.,Zhang, W. B.,Zhang, N. F.,Tu, Y.,Diao, Q. Y..

[9]Responses in Milk Yield, Milk Composition and Rumen Fermentation in Lactating Cows Receiving a Corn Straw or Mixed Forage Diet. Weng Xiuxiu,Li Fadi,Wang Dandan,Weng Xiuxiu,Bu Dengpan,Zhang Yangdong,Wang Dandan.

[10]Effects of essential oil combinations on sheep ruminal fermentation and digestibility of a diet with fumarate included. Lin, B.,Lu, Y.,Wang, J. H.,Liang, Q.,Liu, J. X.,Lin, B.,Salem, A. Z. M.,Salem, A. Z. M..

[11]Soybean oil and linseed oil supplementation affect profiles of ruminal microorganisms in dairy cows. Yang, S. L.,Bu, D. P.,Wang, J. Q.,Hu, Z. Y.,Li, D.,Wei, H. Y.,Zhou, L. Y.,Loor, J. J..

[12]Effect of zinc source on performance, zinc status, immune response, and rumen fermentation of lactating cows. Wang, Run L.,Liang, Jian G.,Lu, Lin,Zhang, Li Y.,Li, Su F.,Luo, Xu G.,Wang, Run L.,Li, Su F..

[13]Effects of various weaning times on growth performance, rumen fermentation and microbial population of yellow cattle calves. Mao, Huiling,Xia, Yuefeng,Wang, Chong,Tu, Yan,Diao, Qiyu.

[14]Rumen fermentation and bacterial communities in weaned Chahaer lambs on diets with different protein levels. Yang Chun-tao,Si Bing-wen,Diao Qi-yu,Zeng Shu-qin,Tu Yan,Jin Hai. 2016

[15]Effect of supplemental Fructus Ligustri Lucidi Extract on methane production and rumen fermentation in sheep. Qiao, Guohua,Li, Jinhua,Li, Yang. 2012

[16]Effects of Radix Bupleuri extract supplementation on lactation performance and rumen fermentation in heat-stressed lactating Holstein cows. Pan, L.,Bu, D. P.,Wang, J. Q.,Cheng, J. B.,Sun, X. Z.,Zhou, L. Y.,Qin, J. J.,Zhang, X. K.,Yuan, Y. M.. 2014

[17]Effects of Substituting Beer Lees and Cassava Residues Respectively for Buffalo Dietary Soybean Meal and Grassiness on Rumen Fermentation In Vitro. Xia, Zhongsheng,Huang, Yali,Zou, Caixia,Chen, Zhihui,Liang, Xianwei,Wei, Shengju,Liang, Xin,Li, Shulu,Huang, Yali. 2013

[18]Oral administration of Lactobacillus plantarum and Bacillus subtilis on rumen fermentation and the bacterial community in calves. Zhang, Rong,Dong, Xiaoli,Zhou, Meng,Tu, Yan,Zhang, Naifeng,Diao, Qiyu,Deng, Kaidong.

[19]Evaluation of Holstein cows with different tongue-rolling frequencies: stress immunity, rumen environment and general behavioural activity. Fuyu Sun,Xiaoyang Chen,Yongfeng Li,Guangyong Zhao,Xianhong Gu. 2023

[20]Glucogenic and lipogenic diets affect in vitro ruminal microbiota and metabolites differently. Hua D.,Hendriks W.H.,Zhao Y.,Xue F.,Wang Y.,Jiang L.,Xiong B.,Pellikaan W.F.. 2022

作者其他论文 更多>>