巴氏灭菌前的好氧发酵为培养肺侧耳菌提供了一种选择性底物

R. C. Llarena-Hernández, A. Alonso-López, F. Hernández-Rosas, Catalino J. López, Joaquín Murguía González, J. Savoie, G. Mata
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引用次数: 2

摘要

主题描述。侧耳菌种是在木质纤维素基质上培养的,其中污染真菌如木霉是常见的。侧耳菇的选择性底物为其抗污染提供了必要条件。研究表明,多粘类芽孢杆菌和其他嗜热细菌受益于侧耳菌培养底物的选择性,但对这些细菌群落知之甚少。目标。探讨多粘拟芽孢杆菌底物接种对肺侧耳菌产量的影响及其对木霉病的保护作用。方法。在发酵0、3、5天后进行热处理,用接种了多黏菌的大麦秸秆和未接种的秸秆(对照)生产培养底物。对热处理前后的微生物含量、竞争条件下肺双歧杆菌和绿色木霉的菌丝定植以及肺双歧杆菌的产率进行了评价。结果。结果表明,接种多粘假单胞菌增加了可培养菌的数量,改变了群落的组成。接种菌丝可降低菌丝的定殖能力,有利于菌丝的生长,但对蘑菇产量有影响。在没有观察到木霉污染的对照基质中,肺孢假单胞菌的产量较高。结论。在大麦秸秆发酵5 d的过程中,多粘假单胞菌的添加改变了天然微生物序列,有利于肺假单胞菌与绿芽孢杆菌的竞争。大麦秸秆发酵3 d后进行热处理,有利于提高产量和对绿木霉的保护作用。
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Aerobic fermentation prior to pasteurization produces a selective substrate for cultivation of the mushroom Pleurotus pulmonarius
Description of the subject. Pleurotus species are cultivated on lignocellulosic substrates, in which contaminant fungi such as Trichoderma spp. are common. A selective substrate for Pleurotus provides the necessary conditions for protection against contaminants. Studies show that Paenibacillus polymyxa and other thermophilic bacteria benefit from the selectivity of Pleurotus cultivation substrate, however, little is known regarding these bacterial communities. Objectives. To evaluate the effect of substrate inoculation with Paenibacillus polymyxa on the productivity of Pleurotus pulmonarius and its protection against Trichoderma. Method. Barley straw inoculated with P. polymyxa and non-inoculated straw (control) was used following 0, 3 or 5 days of fermentation prior to heat treatment in order to produce the cultivation substrate. The microbiological content before and after the heat treatment, the mycelial colonization by P. pulmonarius and Trichoderma viride in competition and the yield of P. pulmonarius were all evaluated. Results. We observed that inoculation with P. polymyxa increased the number of cultivable bacteria and changed the composition of the community. The inoculation decreased the colonization ability of T. viride and favored the mycelial growth, although the yield of mushrooms was affected. Higher yields of P. pulmomarius were obtained in the control substrate where no contamination of Trichoderma spp. was observed. Conclusions. Addition of P. polymyxa modified the natural microbiological succession in a fermentation of barley straw for 5 days, favoring the competitiveness of P. pulmonarius against T. viride. Fermentation of barley straw for 3 days, followed by heat treatment, benefits the yield and protection of P. pulmonarius against Trichoderma viride.
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