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焦亚硫酸钠与一种基于苯甲酸钠、山梨酸钾和亚硝酸钠的化学混合物的新型组合,用于水果和蔬菜废弃物的有氧保存以及反刍动物全混合日粮中的乳酸发酵。

A novel combination of sodium metabisulfite and a chemical mixture based on sodium benzoate, potassium sorbate, and sodium nitrite for aerobic preservation of fruit and vegetable discards and lactic acid fermentation in a total mixed ration for ruminants.

作者信息

Ahmadi Farhad, Lee Won Hee, Kwak Wan Sup

机构信息

Food Bio-science Major, College of Medical Life Sciences, Konkuk University, Chungju 27478, Korea.

出版信息

Anim Biosci. 2021 Sep;34(9):1479-1490. doi: 10.5713/ab.20.0871. Epub 2021 Mar 2.

Abstract

OBJECTIVE

Our recent findings confirmed the effectiveness of sodium metabisulfite (SMB) in controlling the growth of undesirable microorganisms in fruit and vegetable discards (FVD); however, lactic acid bacteria (LAB) are susceptible to its antibacterial effects. Two series of experiments were conducted to enable the survivability of LAB during silage fermentation of a total mixed ration (TMR) containing SMB-treated FVD.

METHODS

In Exp. 1, the objective was to isolate a strain of LAB tolerable to the toxic effect of SMB. In Exp. 2, the SMB load was minimized through its partial replacement with a chemical mixture (CM) based on sodium benzoate (57%), potassium sorbate (29%), and sodium nitrite (14%). FVD was treated with SMB + CM (2 g each/kg biomass) and added to the TMR at varying levels (0%, 10%, or 20%), with or without KU18 inoculation.

RESULTS

The KU18 was screened as a presumptive LAB strain showing superior tolerance to SMB in broth medium, and was identified at the molecular level using 16S rRNA gene sequence analysis as Lactobacillus plantarum. Inoculation of KU18 in TMR containing SMB was not successful for the LAB development, biomass acidification, and organoleptic properties of the resultant silage. In Exp. 2, based on the effectiveness and economic considerations, an equal proportion of SMB and CM (2 g each/kg FVD) was selected as the optimal loads for the subsequent silage fermentation experiment. Slight differences were determined in LAB development, biomass acidification, and sensorial characteristics among the experimental silages, suggesting the low toxicity of the preservatives on LAB growth.

CONCLUSION

Although KU18 strain was not able to efficiently develop in silage mass containing SMB-treated FVD, the partial substitution of SMB load with the CM effectively alleviated the toxic effect of SMB and allowed LAB development during the fermentation of SMB + CM-treated FVD in TMR.

摘要

目的

我们最近的研究结果证实了焦亚硫酸钠(SMB)在控制果蔬废弃物(FVD)中有害微生物生长方面的有效性;然而,乳酸菌(LAB)对其抗菌作用敏感。进行了两个系列的实验,以确保在含有经SMB处理的FVD的全混合日粮(TMR)青贮发酵过程中乳酸菌的生存能力。

方法

在实验1中,目的是分离出一株对焦亚硫酸钠毒性作用具有耐受性的乳酸菌菌株。在实验2中,通过用基于苯甲酸钠(57%)、山梨酸钾(29%)和亚硝酸钠(14%)的化学混合物(CM)部分替代焦亚硫酸钠,将其用量降至最低。FVD用SMB + CM(每千克生物质各2克)处理,并以不同水平(0%、10%或20%)添加到TMR中,添加或不添加KU18接种物。

结果

KU18被筛选为在肉汤培养基中对焦亚硫酸钠显示出卓越耐受性的推定乳酸菌菌株,并通过16S rRNA基因序列分析在分子水平上鉴定为植物乳杆菌。在含有焦亚硫酸钠的TMR中接种KU18,对于所得青贮饲料的乳酸菌生长、生物质酸化和感官特性而言并不成功。在实验2中,基于有效性和经济考虑,选择等量的焦亚硫酸钠和CM(每千克FVD各2克)作为后续青贮发酵实验的最佳用量。实验青贮饲料之间在乳酸菌生长、生物质酸化和感官特性方面存在细微差异,表明防腐剂对乳酸菌生长的毒性较低。

结论

尽管KU18菌株在含有经SMB处理的FVD的青贮料中无法有效生长,但用CM部分替代焦亚硫酸钠用量有效地减轻了焦亚硫酸钠的毒性作用,并允许在TMR中经SMB + CM处理的FVD发酵过程中乳酸菌生长。

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