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Moderate Coconut Oil Supplement Ameliorates Growth Performance and Ruminal Fermentation in Hainan Black Goat Kids

机译:适度的椰子油补充剂改善了海南黑山羊孩子的生长性能和瘤胃发酵

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The study investigated amelioration effects of coconut oil (CO) on growth performance, nutrient digestibility, ruminal fermentation, and blood metabolites in Hainan Black goat kids. Twenty-four Hainan Black goat kids (10 days of age) were assigned randomly to four treatments for 90 days, including pre-weaning (10-70d of age) and post-weaning (70-100 d of age) days. The treatment regimens were control (CON), low CO (LCO), medium CO (MCO) and high CO (HCO) with 0, 4, 6, 8 g CO per goat per day, respectively. During the pre-weaning period, the average daily gain (ADG) linearly and quadratically increased (P 0.05), whereas the average daily feed intake (ADFI) linearly decreased, and the feed conversion ratio (FCR) also decreased linearly and quadratically by increasing CO supplementation (P 0.05). During the post-weaning period, increasing CO supplementation linearly and quadratically increased the BW at 100 days and ADG (P 0.05), but quadratically decreased the ADFI and FCR (P 0.05). The digestibility of ether extract (EE) linearly and quadratically increased with increasing CO supplementation (P 0.05). Supplementation of CO linearly increased ruminal pH (P0.05), but linearly decreased (P0.05) ammonia-N, total VFAs, molar proportions of acetate, ruminal microbial enzyme activity of carboxymethyl-cellulase, cellobiase, xylanase, pectinase and α-amylase, and number of total protozoa, the abundance of R. albus, R. flavefaciens, F. succinogenes, B. fibrisolvens, P. ruminicola and R. amylophilus. The estimated methane emission decreased linearly and quadratically with increasing CO addition (P0.05). The serum concentration of triglycerides (TG), non-esterified fatty acids (NEFA) and growth hormone (GH) linearly (P 0.05) increased by raising the CO supplementation. The present results indicate that CO supplementation at 6 g/day per goats is optimum due to improved growth performance and decreased estimated methane emission. Supplementation CO up to 8 g/day depressed growth and feed conversion due to its suppression of growth performance, rumen protozoa, cellulolytic bacteria and microbial enzyme activity, and reduced ADF and ADF digestibility.
机译:该研究调查了椰子油(CO)对海南黑山羊儿童生长性能,营养消化率,瘤胃发酵和血代谢物的改善效应。二十四个海南黑山羊小孩(10天)随机分配到四个治疗方法90天,包括预断奶(10-70D岁)和断奶后(70-100天)天。治疗方案是对照(CON),低CO(LCO),中CO(MCO)和高CO(HCO)分别为每天0,4,6,8g CO /天。在断奶期间,平均每日增益(ADG)线性和二次增加(P <0.05),而平均每日进料摄入量(ADFI)线性降低,并且进料转换比(FCR)也通过线性和二次递增增加CO补充(P <0.05)。在断奶后期,在100天和ADG下,增加CO补充和二次增加BW(P <0.05),但直接降低了ADFI和FCR(P <0.05)。随着CO补充的增加(P <0.05),醚提取物(EE)线性和二次增加的消化率(P <0.05)。补充CO线性增加的瘤胃pH(P <0.05),但线性降低(P <0.05)氨-N,总VFA,醋酸甘露酸的瘤胃微生物酶活性,纤维素,木聚糖酶,果胶酶和α-的瘤胃微生物酶活性。淀粉酶和总原生动物的数量,R. albus,R.Flavefaciens,F.琥珀酰胺,B.Fibrisolvens,P.Ruminicola和R.淀粉菌属。估计的甲烷排放随着CO加(P <0.05)而线性和数次数下降(P <0.05)。通过提高CO补充,甘油三酯(Tg),非酯化脂肪酸(NEFA)和生长激素(GH)的血清浓度,非酯化脂肪酸(NEFA)和生长激素(P <0.05)增加。目前的结果表明,由于改善的生长性能和降低估计的甲烷排放,每只山羊6克/天的共同补充是最佳的。补充CO高达8克/天抑制的生长和饲料转化由于其抑制生长性能,瘤胃原生动物,纤维素溶解细菌和微生物酶活性,以及​​降低ADF和ADF消化率。

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