Relationship between dietary fiber physicochemical properties and feedstuff fermentation characteristics and their effects on nutrient utilization, energy metabolism, and gut microbiota in growing pigs

IF 7 1区 农林科学 Q1 Agricultural and Biological Sciences Journal of Animal Science and Biotechnology Pub Date : 2025-01-02 DOI:10.1186/s40104-024-01129-x
Feng Yong, Bo Liu, Huijuan Li, Houxu Hao, Yueli Fan, Osmond Datsomor, Rui Han, Hailong Jiang, Dongsheng Che
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Abstract

There is a growing focus on using various plant-derived agricultural by-products to increase the benefits of pig farming, but these feedstuffs are fibrous in nature. This study investigated the relationship between dietary fiber physicochemical properties and feedstuff fermentation characteristics and their effects on nutrient utilization, energy metabolism, and gut microbiota in growing pigs. Thirty-six growing barrows (47.2 ± 1.5 kg) were randomly allotted to 6 dietary treatments with 2 apparent viscosity levels and 3 β-glucan-to-arabinoxylan ratios. In the experiment, nutrient utilization, energy metabolism, fecal microbial community, and production and absorption of short-chain fatty acid (SCFA) of pigs were investigated. In vitro digestion and fermentation models were used to compare the fermentation characteristics of feedstuffs and ileal digesta in the pig’s hindgut. The production dynamics of SCFA and dry matter corrected gas production of different feedstuffs during in vitro fermentation were different and closely related to the physical properties and chemical structure of the fiber. In animal experiments, increasing the dietary apparent viscosity and the β-glucan-to-arabinoxylan ratios both increased the apparent ileal digestibility (AID), apparent total tract digestibility (ATTD), and hindgut digestibility of fiber components while decreasing the AID and ATTD of dry matter and organic matter (P < 0.05). In addition, increasing dietary apparent viscosity and β-glucan-to-arabinoxylan ratios both increased gas exchange, heat production, and protein oxidation, and decreased energy deposition (P < 0.05). The dietary apparent viscosity and β-glucan-to-arabinoxylan ratios had linear interaction effects on the digestible energy, metabolizable energy, retained energy (RE), and net energy (NE) of the diets (P < 0.05). At the same time, the increase of dietary apparent viscosity and β-glucan-to-arabinoxylan ratios both increased SCFA production and absorption (P < 0.05). Increasing the dietary apparent viscosity and β-glucan-to-arabinoxylan ratios increased the diversity and abundance of bacteria (P < 0.05) and the relative abundance of beneficial bacteria. Furthermore, increasing the dietary β-glucan-to-arabinoxylan ratios led to a linear increase in SCFA production during the in vitro fermentation of ileal digesta (P < 0.001). Finally, the prediction equations for RE and NE were established. Dietary fiber physicochemical properties alter dietary fermentation patterns and regulate nutrient utilization, energy metabolism, and pig gut microbiota composition and metabolites.
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饲粮纤维理化性质与饲料发酵特性的关系及其对生长猪养分利用、能量代谢和肠道菌群的影响
人们越来越关注使用各种植物衍生的农业副产品来增加养猪的效益,但这些饲料本质上是纤维性的。本试验旨在研究饲粮纤维理化性质与饲料发酵特性的关系及其对生长猪养分利用、能量代谢和肠道菌群的影响。试验选用36头体重(47.2±1.5 kg) kg的生长母猪,随机分为6个饲粮处理,分别设2个表观粘度水平和3个β-葡聚糖与阿拉伯木聚糖比例。本试验研究了猪的养分利用、能量代谢、粪便微生物群落以及短链脂肪酸(SCFA)的产生和吸收。采用体外消化和发酵模型,比较饲料和回肠食糜在猪后肠的发酵特性。不同饲料体外发酵过程中短链脂肪酸和干物质修正气的生产动态不同,且与纤维的物理性质和化学结构密切相关。动物试验中,提高饲粮表观粘度和β-葡聚糖/阿拉伯木聚糖比均可提高纤维组分的表观回肠消化率(AID)、表观全道消化率(ATTD)和后肠消化率,降低干物质和有机物的AID和ATTD (P < 0.05)。此外,饲粮表观粘度和β-葡聚糖与阿拉伯木聚糖之比的增加增加了气体交换、产热和蛋白质氧化,降低了能量沉积(P < 0.05)。饲粮表观粘度和β-葡聚糖与阿拉伯木聚糖之比对饲粮的消化能、代谢能、保留能和净能呈线性交互作用(P < 0.05)。同时,饲粮表观粘度和β-葡聚糖与阿拉伯木聚糖比值的增加均增加了短链脂肪酸的产量和吸收(P < 0.05)。饲粮表观粘度和β-葡聚糖与阿拉伯木聚糖比的增加增加了细菌的多样性和丰度(P < 0.05)以及有益菌的相对丰度。此外,增加饲粮β-葡聚糖与阿拉伯木聚糖的比例,可导致回肠食糜体外发酵过程中短链脂肪酸产量呈线性增加(P < 0.001)。最后,建立了RE和NE的预测方程。饲粮纤维的理化性质改变了饲粮发酵模式,调节了养分利用、能量代谢和猪肠道菌群组成和代谢物。
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来源期刊
Journal of Animal Science and Biotechnology
Journal of Animal Science and Biotechnology AGRICULTURE, DAIRY & ANIMAL SCIENCE-
CiteScore
9.90
自引率
2.90%
发文量
822
审稿时长
17 weeks
期刊介绍: Journal of Animal Science and Biotechnology is an open access, peer-reviewed journal that encompasses all aspects of animal science and biotechnology. That includes domestic animal production, animal genetics and breeding, animal reproduction and physiology, animal nutrition and biochemistry, feed processing technology and bioevaluation, animal biotechnology, and meat science.
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