通过接种经过筛选的高产扁豆乳杆菌菌株,使玉米和苜蓿青贮饲料富含γ-氨基丁酸

IF 2.5 2区 农林科学 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE Animal Feed Science and Technology Pub Date : 2024-06-01 DOI:10.1016/j.anifeedsci.2024.116016
Samaila Usman , Jiayao Zhang , Jie Zhu , Yixin Zhang , Dongmei Xu , Peter Aniwe Dele , Tunde Adegoke Amole , Xusheng Guo
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引用次数: 0

摘要

本研究旨在通过利用高 GABA 产率的布氏扁豆乳杆菌(Lentilactobacillus buchneri)来增加玉米和苜蓿青贮饲料中的γ-氨基丁酸(GABA)含量。对 11 个菌株进行了筛选,L. Buchneri YM9 因其在 GABA 生产方面的优势而脱颖而出,随后被用作全作物玉米和苜蓿青贮的接种剂。青贮处理包括对照组(无接种剂)、AH35(不产生 GABA 的菌株)、YM9(产生 GABA 能力强的菌株)和 40788(产生 GABA 的商业菌株)。结果显示,玉米青贮的 pH 值在贮藏初期(3-7 天)明显下降,对照组在 90 天后 pH 值最低。对照组的乳酸含量最高,而布氏酵母菌处理组的醋酸含量较高。在苜蓿青贮饲料中也观察到类似的趋势,干物质(DM)含量为 30% 的青贮饲料 pH 值较低,有机酸含量较高。YM9 接种的玉米青贮的 DM 损失较高,水溶性碳水化合物 (WSC) 减少,但粗蛋白 (CP) 含量增加。全株玉米青贮中的 YM9 和 40788 处理在青贮后谷氨酸(Glu)含量较低,这表明 GABA 的有效产生。YM9 处理可保持稳定且较高的谷氨酸脱羧酶(GAD)活性,从而使玉米青贮中的 GABA 累积量最高(1.97 克/千克 DM)。同样,YM9 和 40788 在 30 %(7.6 和 6.51 克/千克 DM)和 40 %(5.23 和 5.32 克/千克 DM)DM 紫花苜蓿青贮中的 GABA 含量也明显较高。除了提高发酵和养分保存效果外,YM9 菌株还有望为全作物玉米和苜蓿提供充足的 GABA 浓度,从而在动物食用时发挥预期的生物功能。
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Enrichment of corn and alfalfa silage with γ-aminobutyric acid through inoculation with a screened high producing Lentilactobacillus buchneri strain

This study aimed to enrich corn and alfalfa silages with γ-aminobutyric acid (GABA) by utilizing high GABA-producing Lentilactobacillus buchneri. Eleven strains were screened and L. Buchneri YM9 was distinguished for its superiority in GABA production, and it was subsequently applied as an inoculant on whole-crop corn and alfalfa silage. The silage treatments were control (without inoculant), AH35 (non-GABA producing strain), YM9 (high-GABA producing strain), and 40788 (commercial GABA producing strain). The results revealed that in corn silage, pH significantly declined at the initial ensiling stage (3–7 days), with the control having the lowest pH after 90 days. The control also exhibited the highest lactic acid, while L. buchneri treatments had elevated acetic acid. Similar trends were observed in alfalfa silage, with 30 % dry matter (DM) showing lower pH and higher organic acids. YM9-inoculated corn silage had higher DM loss, reduced water-soluble carbohydrates (WSC), but increased crude protein (CP) content. YM9 and 40788 treatments in whole-crop corn silage had lower glutamate (Glu) content post-ensiling, signifying effective GABA production. YM9 treatment maintained stable and higher glutamate decarboxylase (GAD) activity, resulting in the highest GABA accumulation in corn silage (1.97 g/kg DM). Likewise, YM9 and 40788 demonstrated significantly higher GABA content in 30 % (7.6 and 6.51 g/kg DM) and 40 % (5.23 and 5.32 g/kg DM) DM alfalfa silage. Beyond enhancing fermentation and nutrient preservation, YM9 strain shows promise in enriching whole-crop corn and alfalfa with ample GABA concentration, potentially exerting anticipated biological functions when consumed by animals.

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来源期刊
Animal Feed Science and Technology
Animal Feed Science and Technology 农林科学-奶制品与动物科学
CiteScore
6.00
自引率
6.20%
发文量
266
审稿时长
3 months
期刊介绍: Animal Feed Science and Technology is a unique journal publishing scientific papers of international interest focusing on animal feeds and their feeding. Papers describing research on feed for ruminants and non-ruminants, including poultry, horses, companion animals and aquatic animals, are welcome. The journal covers the following areas: Nutritive value of feeds (e.g., assessment, improvement) Methods of conserving and processing feeds that affect their nutritional value Agronomic and climatic factors influencing the nutritive value of feeds Utilization of feeds and the improvement of such Metabolic, production, reproduction and health responses, as well as potential environmental impacts, of diet inputs and feed technologies (e.g., feeds, feed additives, feed components, mycotoxins) Mathematical models relating directly to animal-feed interactions Analytical and experimental methods for feed evaluation Environmental impacts of feed technologies in animal production.
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