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使用犬类粪便接种物对刺槐纤维进行体外发酵特性研究。

In vitro fermentation characteristics of acacia fiber using canine fecal inoculum.

作者信息

De La Guardia-Hidrogo Vanessa M, Geary Elizabeth L, Wilson Sofia M, Bauer Laura L, Menton John F, Vinay Elena, Millette Mathieu, Kelly Melissa R, Dilger Ryan N, Swanson Kelly S

机构信息

Department of Animal Sciences, University of Illinois Urbana-Champaign, Urbana, IL 61801, USA.

Kerry Group, Beloit, WI 53511, USA.

出版信息

J Anim Sci. 2025 Jan 4;103. doi: 10.1093/jas/skaf152.

Abstract

Acacia fiber is a highly concentrated source of soluble fiber extracted from the natural resin of acacia trees. This fiber is frequently utilized in the pet food industry as a processing aid to improve texture and stability. The objective of this study was to evaluate the fermentation characteristics of acacia fiber, inulin, pectin (positive control), and cellulose (negative control) using an in vitro fermentation system and canine fecal inoculum. Triplicate samples of each fiber were fermented for 0, 6, 12, and 18 h. Blank-corrected data were analyzed using PROC GLIMMIX of SAS to evaluate the effects of fiber, time, and fiber × time interactions; significance was declared at P ≤ 0.05. Significant fiber × time interactions were observed for pH change, gas and short-chain fatty acid (SCFA) production, and microbiota populations. Pectin and inulin had greater (P < 0.01) gas production than acacia fiber and cellulose. Inulin had the greatest (P < 0.01) pH reduction, followed closely by pectin. Acacia fiber had a small reduction in pH, being lower (P < 0.01) than cellulose after 18 h. Pectin and inulin had greater (P < 0.01) acetate, propionate, butyrate, and total SCFA production than acacia fiber and cellulose. Acetate and total SCFA production were also greater (P < 0.01) in acacia fiber than in cellulose. Bacterial alpha diversity increased (P < 0.01) during acacia fiber fermentation but decreased (P < 0.01) during inulin fermentation. Beta diversity shifted over time and showed separate clustering of bacterial communities among the different fiber sources. The relative abundances of approximately 40 bacterial genera were affected by fiber × time interactions. Specifically, acacia fiber had a greater (P < 0.01) increase in Bacteroides, Faecalibacterium, and Ruminococcus torques group abundance than other fibers. Inulin had a greater (P < 0.01) increase in Prevotella, while pectin tubes had a greater (P < 0.01) increase in Bifidobacterium than other fibers. Overall, the results of this study suggest that acacia fiber is a moderately fermentable fiber, producing low levels of gas and SCFA, increasing bacterial richness and diversity, and modifying several bacterial taxa. Although these data suggest beneficial responses in vitro, research in live animals is needed to confirm potential benefits in dogs.

摘要

刺槐纤维是从刺槐树的天然树脂中提取的高浓缩可溶性纤维来源。这种纤维常用于宠物食品工业,作为一种加工助剂来改善质地和稳定性。本研究的目的是使用体外发酵系统和犬类粪便接种物,评估刺槐纤维、菊粉、果胶(阳性对照)和纤维素(阴性对照)的发酵特性。每种纤维的三份重复样品分别发酵0、6、12和18小时。使用SAS的PROC GLIMMIX对空白校正后的数据进行分析,以评估纤维、时间以及纤维×时间相互作用的影响;P≤0.05时判定具有显著性。在pH变化、气体和短链脂肪酸(SCFA)产生以及微生物群数量方面,观察到了显著的纤维×时间相互作用。果胶和菊粉的产气量比刺槐纤维和纤维素更高(P<0.01)。菊粉的pH降低幅度最大(P<0.01),其次是果胶。刺槐纤维的pH略有降低,在18小时后低于纤维素(P<0.01)。果胶和菊粉产生的乙酸、丙酸、丁酸和总SCFA比刺槐纤维和纤维素更多(P<0.01)。刺槐纤维中的乙酸和总SCFA产量也高于纤维素(P<0.01)。在刺槐纤维发酵过程中,细菌α多样性增加(P<0.01),而在菊粉发酵过程中降低(P<0.01)。β多样性随时间变化,不同纤维来源的细菌群落呈现出单独的聚类。约40个细菌属的相对丰度受到纤维×时间相互作用的影响。具体而言,刺槐纤维中拟杆菌属、粪杆菌属和扭链瘤胃球菌组的丰度增加幅度比其他纤维更大(P<0.01)。菊粉中普雷沃菌属的增加幅度更大(P<0.01),而果胶管中双歧杆菌属的增加幅度比其他纤维更大(P<0.01)。总体而言,本研究结果表明刺槐纤维是一种适度可发酵的纤维,产生低水平的气体和SCFA,增加细菌丰富度和多样性,并改变多个细菌分类群。尽管这些数据表明在体外有有益反应,但仍需要在活体动物中进行研究,以确认对犬类的潜在益处。

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