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有氧条件下贮藏于隔氧膜或聚乙烯膜中的青贮玉米微生物动态变化。

Microbial dynamics during aerobic exposure of corn silage stored under oxygen barrier or polyethylene films.

机构信息

Dipartimento di Agronomia, Selvicoltura e Gestione del Territorio, University of Torino, Via L. da Vinci 44, 10095 Grugliasco-Torino, Italy.

出版信息

Appl Environ Microbiol. 2011 Nov;77(21):7499-507. doi: 10.1128/AEM.05050-11. Epub 2011 Aug 5.

Abstract

The aims of this study were to compare the effects of sealing forage corn with a new oxygen barrier film with those obtained by using a conventional polyethylene film. This comparison was made during both ensilage and subsequent exposure of silage to air and included chemical, microbiological, and molecular (DNA and RNA) assessments. The forage was inoculated with a mixture of Lactobacillus buchneri, Lactobacillus plantarum, and Enterococcus faecium and ensiled in polyethylene (PE) and oxygen barrier (OB) plastic bags. The oxygen permeability of the PE and OB films was 1,480 and 70 cm³ m⁻² per 24 h at 23°C, respectively. The silages were sampled after 110 days of ensilage and after 2, 5, 7, 9, and 14 days of air exposure and analyzed for fermentation characteristics, conventional microbial enumeration, and bacterial and fungal community fingerprinting via PCR-denaturing gradient gel electrophoresis (DGGE) and reverse transcription (RT)-PCR-DGGE. The yeast counts in the PE and OB silages were 3.12 and 1.17 log₁₀ CFU g⁻¹, respectively, with corresponding aerobic stabilities of 65 and 152 h. Acetobacter pasteurianus was present at both the DNA and RNA levels in the PE silage samples after 2 days of air exposure, whereas it was found only after 7 days in the OB silages. RT-PCR-DGGE revealed the activity of Aspergillus fumigatus in the PE samples from the day 7 of air exposure, whereas it appeared only after 14 days in the OB silages. It has been shown that the use of an oxygen barrier film can ensure a longer shelf life of silage after aerobic exposure.

摘要

本研究的目的是比较用新型氧气阻隔膜密封青贮玉米与传统聚乙烯膜密封的效果。青贮过程中及暴露于空气后,通过化学、微生物和分子(DNA 和 RNA)评估对这两种方法进行了比较。青贮饲料接种了混合的布氏乳杆菌、植物乳杆菌和粪肠球菌,然后装在聚乙烯(PE)和氧气阻隔(OB)塑料袋中。PE 和 OB 薄膜在 23°C 下的氧气透过率分别为 1,480 和 70 cm³ m⁻²每 24 小时。青贮饲料在青贮 110 天后以及在暴露于空气 2、5、7、9 和 14 天后进行采样,并分析发酵特性、常规微生物计数以及通过聚合酶链式反应-变性梯度凝胶电泳(PCR-DGGE)和反转录(RT)-PCR-DGGE 进行细菌和真菌群落指纹图谱分析。PE 和 OB 青贮饲料中的酵母菌数分别为 3.12 和 1.17 log₁₀ CFU g⁻¹,相应的好氧稳定性分别为 65 和 152 h。在暴露于空气 2 天后,PE 青贮饲料的 DNA 和 RNA 水平均存在巴氏醋杆菌,而在 OB 青贮饲料中仅在 7 天后才发现。RT-PCR-DGGE 显示,在暴露于空气 7 天后,PE 样品中存在烟曲霉的活性,而在 OB 青贮饲料中仅在 14 天后才出现。研究表明,使用氧气阻隔膜可以确保青贮饲料在有氧暴露后有更长的保质期。

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