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Effects of cellulolytic lactic acid bacteria on the lignocellulose degradation, sugar profile and lactic acid fermentation of high-moisture alfalfa ensiled in low-temperature seasons

机译:低温季节纤维素乳酸菌对木质纤维素降解,糖曲线和高水分苜蓿乳酸发酵的影响

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摘要

The objective of this study was to investigate the effects of cellulolytic lactic acid bacteria on the lignocellulose degradation, sugar profile and lactic acid fermentation of high-moisture alfalfa during anaerobic bioprocessing in low-temperature seasons. Last cut and low dry matter (DM) alfalfa was ensiled with five additives, commercial cellulase (EN), a combination ofLactobacillus plantarumand commercial cellulase (LPEN), a combination of engineeredLactococcus lactisstrains (HT2) containing cellulase gene,Enterococcus faeciumY83 (EF83), orEnterococcus faecalisJF85 (EF85), and without additives, as the control, with four replicates each. After anaerobic preservation in a silo from late fall through winter (3 to 20 degrees C) for 140 days, the ensiled alfalfa was sampled and analysed. Compared with the control, EF85 increased the relative contents of neutral detergent fibre (NDF), acid detergent fibre (ADF), and cellulose and decreased contents of water-soluble carbohydrates (WSCs) and lactic acid, and the conversion of WSCs into lactic acid. Consequently, lactic acid fermentation was decreased in EF85. Compared with the control, supplementation with EN, EF83, HT2, and LPEN decreased contents of NDF, ADF, cellulose, and hemicellulose and increased the contents of WSCs, disaccharide, xylose, and arabinose; interestingly, compared with EN, supplementation with EF83, HT2 and LPEN increased the lactic acid content and the ratio of lactic acid to acetic acid as indicated by strong homo-lactic acid fermentation. Furthermore, HT2 increased the lactic acid concentration to a maximum of 72.2 g/kg DM and had a higher conversion of WSCs into lactic acid than EF83 (36.3%) and LPEN (17.9%), indicating that HT2 had a greater ability to ferment lignocellulose of alfalfa into lactic acid. Therefore, HT2 could enhance the lactic acid production of alfalfa during ensiling in low-temperature seasons.
机译:本研究的目的是探讨纤维素乳酸菌对低温季节厌氧生物处理期间高水位苜蓿的木质纤维素降解,糖曲线和乳酸发酵的影响。最后的切割和低干物质(DM)苜蓿用五种添加剂,商业纤维素酶(Zh),左右毛茛属商业纤维素酶(LPEN)组合,含有纤维素酶基因的工程术治疗(HT2),肠球菌FAECIUMY83(EF83)的组合, Orenterococcus FaecalisJF85(EF85),没有添加剂,作为控制,每个都重复四个。在冬季秋季(3至20摄氏度)中的筒仓中厌氧保存140天后,被取样并分析了Ensiled Alfalfa。与对照相比,EF85增加了中性洗涤剂纤维(NDF),酸洗涤剂纤维(ADF)的相对含量,以及纤维素和降低水溶性碳水化合物(WSC)和乳酸的含量,以及WSCS转化为乳酸。因此,在EF85中降低了乳酸发酵。与对照相比,用EN,EF83,HT2和LPEN进行补充,降低NDF,ADF,纤维素和半纤维素的含量,并增加了WSCs,二糖,木糖和阿拉伯糖的含量;有趣的是,与EN,补充,用EF83,HT2和Lpen进行补充,提高乳酸含量和乳酸与乙酸的比例,如强均乳酸发酵所示。此外,HT2将乳酸浓度提高至最大值72.2g / kg DM,并将WSCs转化为乳酸,而不是EF83(36.3%)和LPEN(17.9%),表明HT2具有更高的干燥陶油系能力苜蓿含入乳酸。因此,HT2可以在低温季节中提高苜蓿的乳酸产生。

著录项

  • 来源
    《Cellulose》 |2020年第14期|共11页
  • 作者单位

    Nanjing Agr Univ Inst Ensiling &

    Proc Grass Coll Agrograssland Sci Weigang 1 Nanjing 210095 Peoples R China;

    Nanjing Agr Univ Inst Ensiling &

    Proc Grass Coll Agrograssland Sci Weigang 1 Nanjing 210095 Peoples R China;

    Nanjing Agr Univ Inst Ensiling &

    Proc Grass Coll Agrograssland Sci Weigang 1 Nanjing 210095 Peoples R China;

    Nanjing Agr Univ Inst Ensiling &

    Proc Grass Coll Agrograssland Sci Weigang 1 Nanjing 210095 Peoples R China;

    Nanjing Agr Univ Inst Ensiling &

    Proc Grass Coll Agrograssland Sci Weigang 1 Nanjing 210095 Peoples R China;

    Nanjing Agr Univ Inst Ensiling &

    Proc Grass Coll Agrograssland Sci Weigang 1 Nanjing 210095 Peoples R China;

    Chongqing Acad Anim Sci Inst Grass Sci Changlong Ave 51 Chongqing 402460 Rongchang Peoples R China;

    Nanjing Agr Univ Inst Ensiling &

    Proc Grass Coll Agrograssland Sci Weigang 1 Nanjing 210095 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

    Lignocellulose; Lactococcus lactis; Enterococcus faecium; Lactic acid; Fermentation;

    机译:木质纤维素;乳球菌乳酸;肠球菌粪便;乳酸;发酵;

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