Effect of Blend-Pelleted Products Based on Carinata Meal or Canola Meal in Combination with Lignosulfonate on Ruminal Degradation and Fermentation Characteristics, Intestinal Digestion, and Feed Milk Value When Fed to Dairy Cows

Q2 Agricultural and Biological Sciences Dairy Science & Technology Pub Date : 2023-05-30 DOI:10.3390/dairy4020023
Aya Ismael, B. Refat, V. Guevara-Oquendo, YU Peng
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Abstract

The objectives of this study were to investigate the effect of newly developed blend-pelleted products based on carinata meal (BPPCR) or canola meal (BPPCN) in combination with peas and lignosulfonate on ruminal fermentation characteristics, degradation kinetics, intestinal digestion and feed milk values (FMV) when fed to high-producing dairy cows. Three dietary treatments were Control = control diet (common barley-based diet in western Canada); BPPCR = basal diet supplemented with 12.3%DM BPPCR (carinata meal 71.4% + pea 23.8% + lignosulfonate4.8%DM), and BPPCN = basal diet supplemented with 13.3%DM BPPCN (canola meal 71.4% + pea 23.8% + lignosulfonate 4.8%DM). In the whole project, nine mid-lactating Holstein cows (body weight, 679 ± 124 kg; days in milk, 96 ± 22) were used in a triplicated 3 × 3 Latin square study for an animal production performance study. For this fermentation and degradation kinetics study, the experiment was a 3 × 3 Latin square design with three different dietary treatments in three different periods with three available multiparous fistulated Holstein cows. The results showed that the control diet was higher (p < 0.05) in total VFA rumen concentration (138 mmol/L) than BPPCN. There was no dietary effect (p > 0.10) on the concentration of rumen ammonia and ruminal degradation kinetics of dietary nutrients. There was no significant differences (p > 0.10) among diets on the intestinal digestion of nutrients and metabolizable protein. Similarly, the feed milk values (FMV) were not affected (p > 0.10) by diets. In conclusion, the blend-pelleted products based on carinata meal for a new co-product from the bio-fuel processing industry was equal to the pelleted products based on conventional canola meal for high producing dairy cattle.
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以油菜籽粕或油菜籽粕为基础的混合颗粒制品与木质素磺酸盐对奶牛瘤胃降解发酵特性、肠道消化和料奶价值的影响
本试验旨在研究新开发的以油菜籽粕(BPPCR)或油菜籽粕(BPPCN)为基础的混合颗粒产品与豌豆和木质素磺酸混合饲喂对高产奶牛瘤胃发酵特性、降解动力学、肠道消化和料乳值(FMV)的影响。三种饮食处理是:对照组=对照饮食(加拿大西部常见的以大麦为基础的饮食);BPPCR =基础饲粮中添加12.3%DM的BPPCR(肉猪粕71.4% +豌豆23.8% +木素磺酸盐4.8%DM), BPPCN =基础饲粮中添加13.3%DM的BPPCN(油菜籽粕71.4% +豌豆23.8% +木素磺酸盐4.8%DM)。整个项目中,泌乳中期荷斯坦奶牛9头(体重679±124 kg;产奶天数为96±22),采用3 × 3拉丁方试验进行动物生产性能研究。本试验采用3 × 3拉丁方设计,在3个不同时期采用3种不同的饲粮处理,选取3头可产的泌乳荷斯坦奶牛进行发酵和降解动力学研究。结果表明:对照饲粮瘤胃总VFA浓度(138 mmol/L)高于BPPCN (p < 0.05);饲粮对瘤胃氨浓度和饲粮营养物质降解动力学无显著影响(p > 0.10)。不同饲粮对营养物质肠道消化和代谢蛋白的影响均无显著差异(p > 0.10)。同样,饲粮对料乳值(FMV)也没有影响(p > 0.10)。综上所述,作为生物燃料加工业的新型副产物,以油菜籽粕为基础的混合颗粒产品与以传统油菜籽粕为基础的高产奶牛颗粒产品相当。
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来源期刊
Dairy Science & Technology
Dairy Science & Technology 农林科学-食品科技
CiteScore
2.30
自引率
0.00%
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0
审稿时长
2 months
期刊介绍: Information not localized
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