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Criteria for lactic acid bacteria screening to enhance silage quality

机译:乳酸菌筛选标准提高青贮养殖品质

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The main challenge of ensiling is conserving the feed through a fermentative process that results in high nutritional and microbiological quality while minimizing fermentative losses. This challenge is of growing interest to farmers, industry and research and involves the use of additives to improve the fermentation process and preserve the ensiled material. Most studies involved microbial additives; lactic acid bacteria (LAB) have been the focus of much research and have been widely used. Currently, LABs are used in modern and sustainable agriculture because of their considerable potential for enhancing human and animal health. Although the number of studies evaluating LABs in silages has increased, the potential use of these micro-organisms in association with silage has not been adequately studied. Fermentation processes using the same strain produce very different results depending on the unique characteristics of the substrate, so the choice of silage inoculant for different starting substrates is of extreme importance to maximize the nutritional quality of the final product. This review describes the current scenario of the bioprospecting and selection process for choosing the best LAB strain as an inoculant for ensiling. In addition, we analyse developments in the fermentation process and strategies and methods that will assist future studies on the selection of new strains of LAB as a starter culture or inoculant.
机译:青贮的主要挑战是通过发酵过程来保存饲料,从而在最大限度地减少发酵损失的同时获得高营养和微生物质量。农民、工业界和研究界对这一挑战越来越感兴趣,涉及使用添加剂来改善发酵过程和保存青贮材料。大多数研究涉及微生物添加剂;乳酸菌(LAB)一直是众多研究的焦点,并得到了广泛的应用。目前,实验室被用于现代和可持续农业,因为它们在增进人类和动物健康方面具有相当大的潜力。尽管评估青贮饲料实验室的研究数量有所增加,但这些微生物与青贮饲料相关的潜在用途尚未得到充分研究。根据基质的独特特性,使用同一菌株的发酵过程会产生非常不同的结果,因此为不同的起始基质选择青贮接种剂对于最大限度地提高最终产品的营养质量至关重要。这篇综述描述了当前的生物勘探和选择过程,以选择最佳实验室菌株作为青贮接种剂。此外,我们还分析了发酵过程的发展以及策略和方法,这将有助于未来选择新的乳酸菌菌株作为发酵剂或接种剂的研究。

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