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Effects of Inoculants Producing Antifungal and Carboxylesterase Activities on Corn Silage and Its Shelf Life against Mold Contamination at Feed-Out Phase

机译:抗真菌和羧基酯酶活性对玉米青贮饲料的影响及其对饲料阶段模具污染的保质期

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摘要

The present study aimed to investigate effects of dual-purpose inoculants (antifungal and carboxylesterase activities) not only on corn silage quality, but also its shelf life against mold contamination at feed-out phase. Corn forage was ensiled for 252 d with different inoculants of the following: control (CON), Lactobacillus brevis 5M2 (5M), Lactobacillus buchneri 6M1 (6M), and mixture of 5M and 6M at 1:1 ratio (MIX). After ensiling, corn silage was contaminated with Fusarium graminearum. Silages applied inoculants had positive effects by increased organic acid and lactic acid bacteria, and decreased undesirable microbes. At feed-out phase, contamination of F. graminearum into corn silage had a negative effect on aerobic stability caused by increased growth of undesirable microbes. However, silages applied inoculants had positive effects by decreased undesirable microbes and extended lactic acid bacteria and aerobic stability. Generally, MIX silage presented better effects on organic acid production, rumen degradation, inhibition of undesirable microbes, and aerobic stability than 5M silage and 6M silage. The present study concluded that application of inoculants into corn silage had positive effects on fermentation characteristics and extended shelf life against mold contamination at feed-out phase. A mixed inoculant appeared to have better effects of antifungal and carboxylesterase than a single inoculant.
机译:本研究旨在调查两用粉碎剂(抗真菌和羧酸酶活性)的影响不仅对玉米青贮饲料质量,而且对饲料阶段的霉菌污染的保质期。玉米饲料被氧饲料为252天,具有以下不同的涂膜:控制(CON),乳酸杆菌BEVEVIS 5M2(5M),乳杆菌BUCHNERI 6M1(6M),和5m和6m的混合物,1:1的比例(混合物)。在艾琳尼术后,玉米青贮饲喂镰刀菌麦子麦子。混合物施用的接种剂通过增加的有机酸和乳酸菌产生阳性作用,并降低不希望的微生物。在进料阶段时,F. Graminearum污染到玉米青贮饲料对由于不希望的微生物的增长而导致的有氧稳定性的负面影响。然而,通过减少不希望的微生物和延长的乳酸菌和有氧稳定性,混合物施用的抗截损性具有阳性作用。通常,混合青贮饲料对有机酸生产,瘤胃降解,对不良微生物的抑制,以及比5m青贮和6m青贮组成的有氧稳定性均呈现出更好的影响。本研究得出结论,将涂膜施用于玉米青贮饲料对发酵特性的阳性作用,并在进料阶段对模具污染的延长保质期。混合的接种剂似乎具有更好的抗真菌和羧酸酯酶的影响而不是单个孕育酶。

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