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Dietary dragon fruit (Hylocereus undatus) peel powder improved in vitro rumen fermentation and gas production kinetics

机译:膳食龙果(Hylocereus Undatus)皮粉在体外瘤胃发酵和天然气生产动力学中改善

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摘要

Plant phytophenols especially condensed tannins (CT) and saponins (SP) have been demonstrated to impact on rumen fermentation. Dragon fruit (Hylocereus undatus) peel powder (DFPP) contains both CT and SP. The current study aimed to investigate the influence of DFPP and varying levels of concentrate and roughage ratios on gas production kinetics, nutrient degradability, and methane production using in vitro gas production technique. The dietary treatments were arranged according to a 3x5 Factorial arrangement in a completely randomized design. The two experimental factors consisted of the roughage to concentrate (R:C) ratio (100:0, 70:30, and 30:70) and the levels of DFPP supplementation (0, 1, 2, 3, and 4% of the substrate) on DM basis. The results revealed that the R:C ratio at 30:70 had the highest cumulative gas production when compared to other ratios (P0.01). The in vitro true dry matter degradability at 12 and 24h was affected by R:C ratio (P0.01). Furthermore, volatile fatty acids (VFA) and propionate (C3) were significantly increased by the levels of DFPP, while acetate (C2) and C2:C3 ratios were decreased (P0.05). The rumen protozoal population was significantly decreased by DFPP supplementation (P0.05). Rumen methane production was significantly impacted by R:C ratios and decreased when the level of DFPP increased (P0.01), while NH3-N and ruminal pH were not influenced by the DFPP supplement. It could be summarized that supplementation of DFPP resulted in improved rumen fermentation kinetics and could be used as a dietary source to mitigate rumen methane production, hence reducing greenhouse gas production.
机译:植物植物植物植物尤其凝结的单宁(CT)和Saponins(SP)已经证明影响瘤胃发酵。 Dragon Fruit(Hylocereus Undatus)剥离粉末(DFPP)含有CT和SP。目前的研究旨在探讨DFPP和不同浓缩水平和粗饲料比在气体生产动力学,营养降解性和甲烷生产中使用体外气体生产技术的影响。根据完全随机设计的3x5因子布置,饮食处理。两种实验因素由粗饲料(R:c)比率(100:0,70:30和30:70)组成,以及DFPP补充的水平(0,1,2,3和4%基质)在DM的基础上。结果表明,与其他比率相比,30:70的R:C比率最高的累积气体产生(P <0.01)。在12和24h的体外真正的干物质降解性受R:C比(P <0.01)的影响。此外,通过DFPP的水平显着增加挥发性脂肪酸(VFA)和丙酸盐(C3),而乙酸盐(C2)和C2:C3比率降低(P <0.05)。 DFPP补充剂(P <0.05)显着降低瘤胃原生动物群。 Rumen甲烷产量因R:C比率而显着影响,并且当DFPP水平增加时(P <0.01)的水平降低,而NH3-N和瘤胃pH没有受DFPP补充的影响。可以总结一下,补充DFPP导致瘤胃发酵动力学改善,可用作减轻瘤胃甲烷的膳食来源,从而减少温室气体生产。

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