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Combinations of lactic acid bacteria and yeast suitable for preparation of marine silage

机译:乳酸菌和酵母菌的组合,适用于制备海洋青贮饲料

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摘要

Marine silage (MS) is a fish hatchery diet prepared by decomposing seaweed into cellular units and performing lactic acid fermentation. MS was first developed by using a wild-type consortium composed of a lactic acid bacterium (LAB) Lactobacillus brevis and yeasts Debaryomyces hansenii var. hansenii and Candida sp. as a fermentation starter. To further examine a suitable combination of starter microorganisms, MS was prepared with different compositions of LAB and yeasts from a substrate of Undaria pinnatifida. Production efficiency of algal single cell units was not different among the trials. Inoculation of LAB significantly retarded the growth of contaminant microorganisms while a single inoculation of yeasts could not retard the growth of halophilic contaminant microorganisms. Lactobacillus brevis showed the highest predominating ability in MS among the tested, while L. acidophilus (casei-type) I AM 10074 and L. plantarum IAM12477~T also showed predominating ability with relatively inferior scores when analyzed from the results of the identification with 16S rRNA-targeted species-specific primers. The present study demonstrated that a single use of LAB, including food industry-familiar species, is suitable for preparation of MS, while the superiority of L. brevis B5201 was suggested in predominating ability in marine silage.
机译:海洋青贮饲料(MS)是一种鱼类孵化场日粮,通过将海藻分解成细胞单位并进行乳酸发酵来制备。MS 最初是使用由乳酸菌 (LAB)、短乳杆菌和酵母 Debaryomyces hansenii var. hansenii 和 Candida sp. 组成的野生型联合体作为发酵剂开发的。为了进一步研究发酵微生物的合适组合,用不同成分的乳酸菌和来自松果底物的酵母制备了MS。藻类单细胞单元的生产效率在试验之间没有差异。乳酸菌的接种显著延缓了污染物微生物的生长,而酵母菌的单次接种不能延缓嗜盐性污染物微生物的生长。在测试对象中,短乳杆菌在MS中表现出最高的优势能力,而嗜酸乳杆菌(干酪型)I AM 10074和植物乳杆菌IAM12477~T在16S rRNA靶向物种特异性引物鉴定结果中也表现出优势能力,得分相对较低。本研究表明,单次使用乳酸菌(包括食品行业熟悉的菌种)适用于制备MS,而短乳酸乳杆菌B5201在海洋青贮饲料中的优势能力具有优势性。

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