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微囊化香蕉花粉球在体外瘤胃发酵、消化率、微生物多样性和甲烷生成中的应用。

The use of microencapsulated banana flower powder pellet on in vitro ruminal fermentation, digestibility, microbial diversity, and methane production.

机构信息

Tropical Feed Resources Research and Development Center (TROFREC), Department of Animal Science, Faculty of Agriculture, Khon Kaen University, Khon Kaen, 40002, Thailand.

Department of Animal Science, Faculty of Agriculture, Khon Kaen University, Khon Kaen, 40002, Thailand.

出版信息

Trop Anim Health Prod. 2024 Sep 20;56(8):263. doi: 10.1007/s11250-024-04101-z.

Abstract

Ruminant animals constitute major contributors to greenhouse gas (GHG) emissions and play an important part in sustainable agricultural systems. A bioactive compound (BC) with antibacterial properties was utilized to inhibit rumen methanogens and decrease ruminant methane emissions. The bio efficacy of ruminant nutrition was frequently employed using a new technology through microencapsulation technique to produce stable products. The microencapsulated banana flower powder pellet (mBAFLOP) powder was used as a BC in the diets. Consequently, this study aimed to evaluate the effects of mBAFLOP supplementation on in vitro gas production kinetics, rumen fermentation, microbial population, and methane production. A completely randomized design (CRD) was used to randomly assign respective treatments at 0, 1, 2, and 3% of the total dry matter (DM) substrate. Ruminal pH, in vitro dry matter degradability and volatile fatty acid profile both at 12, and 24 h were not negatively affected by supplementation with mBAFLOP. The supplemented mBAFLOP (3% of total DM substrate) resulting in ruminal ammonia-nitrogen concentrations was linearly increased (P < 0.01) different among treatments, while methane production was reduced when compared with other treatment (quadratic effect, P < 0.05). Moreover, Ruminococcus flavefaciens was increased when the proportion of mBAFLOP supplement was increased. Furthermore, there was a linear effect (P < 0.05) of decreasing Methanobacteriales in the rumen with increased levels of mBAFLOP supplementation. Based on this study, the use of mBAFLOP at 3% could enhance NHN concentration and cellulolytic bacteria especially Ruminococcus flavefaciens was increased. Furthermore, supplementation with mBAFLOP decreased methane production. Therefore, a possible dietary plant-based bioactive compound, mBAFLOP supplementation cloud enhances rumen fermentation and mitigates methane production.

摘要

反刍动物是温室气体(GHG)排放的主要贡献者,在可持续农业系统中发挥着重要作用。一种具有抗菌特性的生物活性化合物(BC)被用于抑制瘤胃甲烷菌并减少反刍动物的甲烷排放。反刍动物营养的生物功效经常通过微胶囊技术等新技术来实现,以生产稳定的产品。微胶囊化的芭蕉花粉丸(mBAFLOP)被用作饮食中的 BC。因此,本研究旨在评估 mBAFLOP 补充对体外产气动力学、瘤胃发酵、微生物种群和甲烷生成的影响。采用完全随机设计(CRD)将各自的处理随机分配到总干物质(DM)底物的 0、1、2 和 3%。mBAFLOP 补充对瘤胃 pH、12 和 24 小时的体外干物质降解率和挥发性脂肪酸谱没有负面影响。补充 mBAFLOP(总 DM 底物的 3%)导致瘤胃氨氮浓度呈线性增加(P<0.01),与其他处理不同,甲烷生成量减少(二次效应,P<0.05)。此外,随着 mBAFLOP 补充比例的增加,瘤胃中的 Ruminococcus flavefaciens 增加。此外,随着 mBAFLOP 补充水平的增加,瘤胃中 Methanobacteriales 的数量呈线性下降(P<0.05)。基于这项研究,mBAFLOP 的使用量为 3%,可以提高 NHN 浓度和纤维素分解菌,特别是 Ruminococcus flavefaciens。此外,补充 mBAFLOP 可以减少甲烷的产生。因此,一种可能的基于植物的膳食生物活性化合物,mBAFLOP 补充剂可能会增强瘤胃发酵并减轻甲烷生成。

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