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首页> 外文期刊>Iranian Journal of Applied Animal Science >Use of an in vitro Rumen Gas Production Technique to Evaluate the Nutritive Value of Five Forage to Concentrate Ratios
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Use of an in vitro Rumen Gas Production Technique to Evaluate the Nutritive Value of Five Forage to Concentrate Ratios

机译:使用体外瘤胃气体生产技术评估五种精料与精料的营养价值

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This study presents the chemical composition and in vitro fermentation of five diets with different forage (alfalfa) to concentrate (faba bean) (F:C) ratios, F0:C100, F25:C75, F50:C50, F75:C25, F100:C0 on a dry matter (DM) basis. Results indicate that the chemical composition in term of organic matter (OM), ether extract (EE), crude protein (CP), acid detergent fiber (ADF), neutral detergent fiber (NDF), neutral detergent insoluble protein (NDIP), acid detergent insoluble protein (ADIP) and total phenols (TPh), tannin (TT) and condensed tannin (TCT) were varies among five diets (P<0.05). After an initial gas test to evaluate 96 h gas production profiles of diets, the time to half maximal gas production was calculated and a second incubation was conducted with fermentation stopped at substrate specific half-time (t1/2) and 24 h for each substrate. In vitro true DM degradability (ivTDDM), OM degradability (ivOMD) were increased (P<0.01) by addition proportions of concentrate in diets. Microbial mass (g/kg DM), metabolizable energy (ME) (MJ/kg DM), were greater in diets which those had been higher degradability. The efficiency of microbial production (PF) (mg/mL) were calculated for both substrate specific t1/2 and 24 h and was not shown differences between experimental diets at 24 h but F100:C0 was lesser (1.17 mg/mL) at substrate specific t1/2 (P<0.01). Gas produced from fermentable fraction (B) and the rate of gas production (c) were (P<0.01) greater in diets with grater concentrate ratio. Increasing the F:C ratio increased ruminal pH and N ammonia and affected concentrations of short-chain fatty acid (SCFA) (P<0.01). Amount of CH4 emission from 13 to 17.16 g/kg DM and the great value was related to F100:C0.
机译:这项研究介绍了五种不同草料(苜蓿)与浓缩豆(F:C)(F:C100,F25:C75,F50:C50,F75:C25,F100)的日粮的化学成分和体外发酵以干物质(DM)为基础的C0。结果表明,化学成分包括有机物(OM),醚提取物(EE),粗蛋白(CP),酸性洗涤剂纤维(ADF),中性洗涤剂纤维(NDF),中性洗涤剂不溶性蛋白质(NDIP),酸五种饮食之间的去污剂不溶性蛋白质(ADIP)和总酚(TPh),单宁(TT)和浓缩单宁(TCT)均存在差异(P <0.05)。经过初步的气体测试以评估日粮的96 h产气量后,计算出达到最大产气量一半的时间,并进行第二次温育,并在底物特定的半衰期(t1 / 2)和每个底物的24 h停止发酵。饲料中精矿的添加比例可提高体外真DM降解度(ivTDDM),OM降解度(ivOMD)(P <0.01)。日粮中的微生物量(g / kg DM),代谢能(ME)(MJ / kg DM)较大,而那些具有较高的可降解性。计算了底物特异性的t1 / 2和24 h的微生物产生效率(PF)(mg / mL),没有显示实验饮食在24 h时的差异,但是底物的F100:C0较小(1.17 mg / mL)特异性t1 / 2(P <0.01)。磨碎浓缩物日粮中,可发酵部分(B)产生的气体和气体产生率(c)较高(P <0.01)。 F:C比值的增加会提高瘤胃的pH和N氨含量,并影响短链脂肪酸(SCFA)的浓度(P <0.01)。 CH4的排放量从13到17.16 g / kg DM,很大的价值与F100:C0有关。

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