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Effects of a chemical additive on the fermentation microbial communities and aerobic stability of corn silage with or without air stress during storage

机译:化学添加剂对储存过程中玉米青贮饲养微生物群落和玉米青贮饲养的有氧稳定性的影响

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摘要

We evaluated the effects of a chemical additive on the microbial communities, fermentation profile, and aerobic stability of whole-plant corn silage with or without air stress during storage. Whole-plant corn was either untreated or treated with a chemical additive containing sodium benzoate, potassium sorbate, and sodium nitrite at 2 or 3 liters/t of fresh forage weight. Ten individually treated and replicated silos (7.5 liters) were made for each treatment. Half of the silos remained sealed throughout a 63-d storage period, and the other half was subjected to air stress for 2 h/wk. The composition of the bacterial and fungal communities of fresh forage and silages untreated or treated with 2 liters/t of fresh forage weight was analyzed by Illumina Miseq sequencing. Treated silage had greater (P < 0.05) aerobic stability than untreated, even when subjected to air stress during storage, but the numbers of yeasts culturable on selective agar were not affected. However, the additive reduced the relative abundance (RA) of the lactating-assimilating yeast Candida tropicalis (P < 0.01). In air-stressed silages, untreated silage had a greater (P < 0.05) RA of Pichia kudriavzevii (also a lactate assimilator) than treated silage, whereas treated silage was dominated by Candida humilis, which is usually unable to assimilate lactate or assimilates it slowly. The additive improved the aerobic stability by specifically preventing the dominance of yeast species that can consume lactate and initiate aerobic spoilage. To the best of our knowledge, this is the first work that identifies the specific action of this additive on shifting the microbial communities in corn silage.
机译:我们评估了化学添加剂对微生物群落,发酵型材和全植物玉米青贮饲料的有氧稳定性的影响,在储存期间有空气应力。全植物玉米未经治疗或用含有苯甲酸钠,山梨酸钾和亚硝酸钠的化学添加剂治疗,在2或3升/ t的新鲜饲料重量。为每种治疗制作十个单独处理和复制的筒仓(7.5升)。在整个63-D储存期间保持一半的筒仓,另一半进行空气应力2小时/红。通过Illumina MiSeq测序分析了未处理或用2升或处理的新鲜散热重量进行的细菌和真菌群落的组成。在储存期间经受空气应力的情况下,处理的青贮饲料比未经治疗的有氧稳定性更大(P <0.05),但是在选择性琼脂上培养的酵母的数量不受影响。然而,添加剂减少了乳酸同化酵母念珠菌热带的相对丰度(Ra)(P <0.01)。在空气压力的青贮血清中,未经处理的青贮饲料较大(P <0.05)的Pichia Kudriavzevii(也是乳酸同化器)的青贮饲料,而治疗的青贮饲料由Candida Humilis主导,这通常不能吸收乳酸或缓慢同化它。添加剂通过特异性地预防酵母物种的优势来改善有氧稳定性,这些酵母物种可以消耗乳酸和发起有氧腐败。据我们所知,这是第一个识别这种添加剂在玉米青贮饲料中的微生物社区的具体行动的工作。

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