利用体外产气和发酵特性评估块茎黑藻生物降解玉米芯的营养价值

I. K., Jiwuba, P.D.C., Ekanem, N.J., Ahamefule, F.O., O. U.
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摘要

本研究利用体外产气和发酵特性研究了块茎灰霉病生物降解玉米芯的营养价值。研究采用完全随机设计法,将块茎菇降解玉米芯(PTRMC)用于配制四种实验日粮(D1、D2、D3 和 D4),添加量分别为 0%、15%、30% 和 45%。对日粮的化学成分、矿物质成分和植物化学成分进行了分析。为确定日粮的体外气体生成和发酵特性,将日粮培养 24 小时(0、3、6、9......至 24 小时),每个处理设三个重复,重复两次,共设六个重复。研究结果表明,提高日粮中 PTRMC 的含量可显著(p<0.05)改善饲料的营养成分。粗蛋白含量随着 PTRMC 的增加而明显增加(p<0.05),D3 和 D4 明显高于 D1 和 D2(p<0.05)。相反,随着日粮中 PTRMC 含量的增加,中性洗涤纤维和酸性洗涤纤维含量明显下降(p<0.05)。矿物质含量随着 PTRMC 的增加而明显提高(p<0.05)。随着日粮中 PTRMC 含量的增加,植物化学物质含量明显下降(p<0.05)。随着日粮中 PTRMC 的增加,日粮 D3 和 D4 的体外消化率明显提高(p<0.05),甲烷产量明显降低(p<0.05)。随着日粮中 PTRMC 含量的增加,体外产气量、短链脂肪酸、有机物消化率和体外干物质消化率也显著增加(p<0.05),这表明瘤胃发酵和能量供应得到加强。总之,本研究强调了 PTRMC 作为替代饲料改善反刍动物饲料质量和消化率的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of Nutritive Value of Pleurotus tuber-regium Biodegraded Maize Cob using in Vitro Gas Production and Fermentation Characteristics
This study investigated the nutritive value of Pleurotus tuber-regium biodegraded maize cob using in vitro gas production and fermentation characteristics. Pleurotus tuber-regium degraded maize cob (PTRMC) was used to formulate four experimental diets (D1, D2, D3, and D4) at 0%, 15%, 30%, and 45% inclusion levels in a completely randomized design. The chemical, mineral, and phytochemical compositions of the diets were analyzed. To determine the in vitro gas generation and fermentation characteristics of the diets, they were incubated for 24 hours (0, 3, 6, 9,... to 24 h) in three replicates, with incubations repeated twice to make six replicates per treatment. The results of the study revealed that increasing PTRMC levels in the diets significantly (p<0.05) improved the feed's nutritional profile. Crude protein content significantly (p<0.05) increased with an increase in PTRMC, with D3 and D4 being significantly (p<0.05) higher than D1 and D2. Conversely, neutral detergent fibre and acid detergent fibre decreased (p<0.05) significantly with an increase PTRMC levels in the diets. Mineral content significantly (p<0.05) improved with increasing PTRMC. The phytochemical contents were observed to significantly (p<0.05) decrease with an increase in PTRMC in the diets. The in vitro digestibility results of diets D3 and D4 were significantly (p<0.05) improved, and the methane production was reduced (p<0.05) significantly with the increase in PTRMC in the diets. In vitro gas production, short-chain fatty acids, organic matter digestibility, and in vitro dry matter digestibility increased (p<0.05) significantly with higher PTRMC levels in the diets, suggesting enhanced rumen fermentation and energy availability. Overall, this study highlights the potential of PTRMC as alternative feedstuff to improve ruminant animal feed quality and digestibility.
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