首页> 美国卫生研究院文献>Asian-Australasian Journal of Animal Sciences >Metabolisable Energy In situ Rumen Degradation and In vitro Fermentation Characteristics of Linted Cottonseed Hulls Delinted Cottonseed Hulls and Cottonseed Linter Residue
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Metabolisable Energy In situ Rumen Degradation and In vitro Fermentation Characteristics of Linted Cottonseed Hulls Delinted Cottonseed Hulls and Cottonseed Linter Residue

机译:棉绒壳去皮棉籽壳和棉籽短绒残留物的代谢能原位瘤胃降解和体外发酵特性

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摘要

Dietary supplementation with conventional linted cottonseed hulls (LCSH) is a common practice in livestock production all over the world. However, supplementation with mechanically delinted cottonseed hulls (DCSH) and cottonseed linter residue (CLR) is uncommon. Cottonseed by-products, including LCSH, DCSH and CLR, were assessed by chemical analysis, an in situ nylon bag technique, an in vitro cumulative gas production technique and in vitro enzyme procedure. The crude protein (CP) content of CLR (302 g/kg dry matter (DM)) was approximately 3 times that of LCSH and 5 times that of DCSH. The crude fat content was approximately 3 times higher in CLR (269 g/kg DM) than in LCSH and 4 times higher than in DCSH. Neutral detergent fibre (311 g/kg DM) and acid detergent fibre (243 g/kg DM) contents of CLR were less than half those of DCSH or LCSH. Metabolisable energy, estimated by in vitro gas production and chemical analyses, ranked as follows: CLR (12.69 kJ/kg DM)>LCSH (7.32 kJ/kg DM)>DCSH (5.82 kJ/kg DM). The in situ degradation trial showed that the highest values of effective degradability of DM and CP were obtained for CLR (p<0.05). The in vitro disappearance of ruminal DM ranked as follows: CLR>LCSH>DCSH (p<0.05). The lowest digestibility was observed for DCSH with a two-step in vitro digestion procedure (p<0.05). The potential gas production in the batch cultures did not differ for any of the three cottonseed by-product feeds. The highest concentration of total volatile fatty acids was observed in CLR after a 72 h incubation (p<0.05). The molar portions of methane were similar between all three treatments, with an average gas production of 22% (molar). The CLR contained a higher level of CP than did LCSH and DCSH, and CLR fermentation produced more propionate. The DCSH and LCSH had more NDF and ADF, which fermented into greater amounts of acetate.
机译:在全世界的畜牧生产中,常规棉绒壳(LCSH)的膳食补充是一种普遍做法。但是,很少添加机械脱绒的棉籽壳(DCSH)和棉籽绒残留物(CLR)。棉籽副产物,包括LCSH,DCSH和CLR,通过化学分析,原位尼龙袋技术,体外累积产气技术和体外酶法进行评估。 CLR的粗蛋白(CP)含量(302 g / kg干物质(DM))大约是LCSH的3倍和DCSH的5倍。 CLR(269 g / kg DM)中的粗脂肪含量比LCSH高约3倍,比DCSH高4倍。 CLR的中性洗涤剂纤维(311 g / kg DM)和酸性洗涤剂纤维(243 g / kg DM)的含量少于DCSH或LCSH的一半。通过体外气体产生和化学分析估算的可代谢能量排名如下:CLR(12.69 kJ / kg DM)> LCSH(7.32 kJ / kg DM)> DCSH(5.82 kJ / kg DM)。原位降解试验表明,CLR的DM和CP的有效降解率最高(p <0.05)。瘤胃DM的体外消失等级为:CLR>​​ LCSH> DCSH(p <0.05)。对于DCSH,采用两步体外消化程序可观察到最低的消化率(p <0.05)。对于三种棉籽副产物饲料中的任何一种,分批培养物中潜在的气体产量均没有差异。培养72小时后,在CLR中观察到最高的总挥发性脂肪酸浓度(p <0.05)。在所有三种处理之间,甲烷的摩尔部分相似,平均产气率为22%(摩尔)。 CLR比LCSH和DCSH含有更高的CP,CLR发酵产生更多的丙酸酯。 DCSH和LCSH具有更多的NDF和ADF,它们会发酵成更多的乙酸盐。

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