Freezing preservation procedure of caecal inoculum for microbial fermentation studies in pigs

IF 0.8 4区 农林科学 Q3 AGRICULTURE, MULTIDISCIPLINARY Spanish Journal of Agricultural Research Pub Date : 2022-07-29 DOI:10.5424/sjar/2022203-19272
Z. Amanzougarene, E. Pérez-Calvo, M. Fondevila
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Abstract

Aim of study: To define freezing conditions that preserve fermentative capacity of microbial inoculum for in vitro studies in pigs. Material and methods: Caecal contents from three slaughtered pigs were obtained for being used as inoculum. Part of it was immediately frozen in liquid N and stored at -80ºC, whereas the rest was directly used as fermentation inocula. Incubation substrate was pre-digested in pepsin and pancreatin to simulate the processes occurring before the caecum. Pre-digested substrate was incubated alone or supplemented by three additives consisting of two commercial additives based on essential oils mixtures (CRINA-TEP and CRINA-TMEC) and riboflavin. Gas production at 2, 4, 6, 8, 10, and 12 h, and methane, short chain fatty acids (SCFA), and ammonia concentration at 6 h and 12 h were recorded. Main results: No differences (p>0.05) were recorded along the 12 h incubation between both preservation methods of inocula regarding gas production, methane or total SCFA or their molar proportions. Only a trend for a higher ammonia concentration was detected with frozen than fresh inocula (p=0.062). Although not a main objective of the paper, gas production from the substrate alone (control) was lower than with riboflavin from 8 h onwards, and with CRINA-TEP from 4 to 10 h incubation (p>0.05). Research highlights: Caecal inoculum from pigs for in vitro fermentation studies can be preserved by freezing, provided that freezing and thawing processes are carried out under favorable conditions, especially in terms of time and temperature.
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猪盲肠微生物发酵接种物的冷冻保存方法研究
研究目的:为猪体外研究确定保持微生物接种物发酵能力的冷冻条件。材料和方法:取3头屠宰猪的盲肠内容物作为接种物。部分立即用N液冷冻,-80℃保存,其余部分直接作为发酵接种剂。孵育底物在胃蛋白酶和胰蛋白酶中预消化,以模拟盲肠前发生的过程。预消化底物单独孵育或添加三种添加剂,由两种基于精油混合物的商业添加剂(CRINA-TEP和CRINA-TMEC)和核黄素组成。记录了2、4、6、8、10和12 h的产气量,以及6和12 h的甲烷、短链脂肪酸(SCFA)和氨浓度。主要结果:在培养12 h时,两种保存方法在产气量、甲烷量或总SCFA量及其摩尔比方面均无差异(p>0.05)。只有冷冻接种的氨氮浓度高于新鲜接种(p=0.062)。虽然不是本文的主要目的,但单独的底物(对照)的产气量从8 h开始低于核黄素,从4到10 h与CRINA-TEP孵育(p>0.05)。研究重点:用于体外发酵研究的猪盲肠接种物可以通过冷冻保存,前提是在有利的条件下进行冷冻和解冻过程,特别是在时间和温度方面。
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来源期刊
Spanish Journal of Agricultural Research
Spanish Journal of Agricultural Research 农林科学-农业综合
CiteScore
2.00
自引率
0.00%
发文量
60
审稿时长
6 months
期刊介绍: The Spanish Journal of Agricultural Research (SJAR) is a quarterly international journal that accepts research articles, reviews and short communications of content related to agriculture. Research articles and short communications must report original work not previously published in any language and not under consideration for publication elsewhere. The main aim of SJAR is to publish papers that report research findings on the following topics: agricultural economics; agricultural engineering; agricultural environment and ecology; animal breeding, genetics and reproduction; animal health and welfare; animal production; plant breeding, genetics and genetic resources; plant physiology; plant production (field and horticultural crops); plant protection; soil science; and water management.
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