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木聚糖酶的影响超出性能:蛋鸡中的微生物组方法。

Xylanase impact beyond performance: A microbiome approach in laying hens.

机构信息

Animal Nutrition and Health, Kemin Europa N.V., Herentals, Antwerp, Belgium.

Department of Animal Production, The University of Jordan, Amman, Jordan.

出版信息

PLoS One. 2021 Sep 20;16(9):e0257681. doi: 10.1371/journal.pone.0257681. eCollection 2021.

Abstract

Anti-nutritional compounds such as non-starch polysaccharides (NSP) are present in viscous cereals used in feed for poultry. Therefore, exogenous carbohydrases are commonly added to monogastric feed to degrade these NSP. Our hypothesis is that xylanase not only improves laying hen performance and digestibility, but also induces a significant shift in microbial composition within the intestinal tract and thereby might exert a prebiotic effect. In this context, a better understanding on whether and how the chicken gut microbial population can be modulated by xylanase is required. To do so, the effects of dietary supplementation of xylanase on performance, apparent total tract digestibility (ATTD) and cecal microbiome in laying hens were evaluated in the present study. A total of 96 HiSex laying hens were used in this experiment (3 diets and 16 replicates of 2 hens). Xylanase was added to the diets at concentrations of 0, 45,000 (15 g/t XygestTM HT) and 90,000 U/kg (30 g/t Xygest HT). The diets were based on wheat (~55%), soybean and sunflower meal. The lowest dosage, 45,000 U/kg, significantly increased average egg weight and improved feed efficiency compared to the control treatment (P<0.05). Egg quality parameters were significantly improved in the experiment in response to the xylanase addition. For example, during the last 28 days of the trial, birds receiving the 45,000 U/kg and the 90,000 U/kg treatments exhibited an increase in Haugh units and albumin heights (P<0.05). Compared with the control, the ATTD of organic matter and crude protein were drastically improved in the 45,000 U/kg treatment group (P<0.05). Furthermore, gross energy and the ATTD of crude fat were improved significantly for birds fed 90,000 U/kg group compared to the control. Importantly, 16S rRNA gene analysis revealed that xylanase at 45,000 U/kg dosage can exert a change in the cecal microbiome. A significant increase in beneficial bacteria (Bacilli class; Enterococcaceae and Lactobacillales orders; Merdibacter, Enterococcus and Nocardiopsis genera; Enterococcus casseliflavus species) was documented when adding 45,000 U/kg xylanase to the diet of laying hens. In conclusion, dietary supplementation of xylanase 45,000 U/kg significantly improved laying hen performance and digestibility. Furthermore, microbiome data suggest that xylanase modulates the laying hen bacterial population beneficially, thus potentially exerting a prebiotic effect.

摘要

抗营养化合物,如非淀粉多糖(NSP),存在于用于家禽饲料的粘性谷物中。因此,通常在外源碳水化合物酶添加到单胃动物饲料中以降解这些 NSP。我们的假设是,木聚糖酶不仅可以改善蛋鸡的性能和消化率,还可以诱导肠道内微生物组成的显著变化,从而可能发挥益生元的作用。在这种情况下,需要更好地了解鸡肠道微生物群是否以及如何可以通过木聚糖酶进行调节。为此,本研究评估了日粮中添加木聚糖酶对蛋鸡的性能、表观全肠道消化率(ATTD)和盲肠微生物组的影响。本实验共使用了 96 只 HiSex 蛋鸡(3 种日粮,16 个重复,每个重复 2 只鸡)。木聚糖酶添加到日粮中,浓度分别为 0、45000(15 g/t XygestTM HT)和 90000 U/kg(30 g/t Xygest HT)。日粮以小麦(~55%)、大豆和葵花籽粉为基础。最低剂量 45000 U/kg 与对照组相比,显著提高了平均蛋重和饲料效率(P<0.05)。试验中,蛋鸡的蛋品质参数也因木聚糖酶的添加而得到显著改善。例如,在试验的最后 28 天,接受 45000 U/kg 和 90000 U/kg 处理的鸟类的哈夫单位和白蛋白高度增加(P<0.05)。与对照组相比,45000 U/kg 处理组的有机物和粗蛋白的 ATTD 大大提高(P<0.05)。此外,90000 U/kg 组的鸟类的总能和粗脂肪 ATTD 与对照组相比显著提高。重要的是,16S rRNA 基因分析表明,添加 45000 U/kg 木聚糖酶可以改变盲肠微生物组。添加 45000 U/kg 木聚糖酶可显著增加有益细菌(芽孢杆菌纲;肠球菌科和乳杆菌目;Merdibacter、肠球菌和诺卡氏菌属;肠球菌 casseliflavus 种)。总之,日粮补充 45000 U/kg 木聚糖酶可显著提高蛋鸡的生产性能和消化率。此外,微生物组数据表明,木聚糖酶有益地调节蛋鸡的细菌种群,从而可能发挥益生元的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f0c/8452031/d09f2c151762/pone.0257681.g002.jpg

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