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首页> 外文期刊>Euphytica >Exploitation of bacterial pectinolytic strains for improvement of hemp water retting
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Exploitation of bacterial pectinolytic strains for improvement of hemp water retting

机译:细菌溶菌酶菌株的开发,以改善大麻的水脱胶

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摘要

Retting is the major limitation to an efficient production of textile hemp fibres. Traditional retting has been carried out by autochthonous bacterial community. Aerobic and anaerobic pectinolytic strains were isolated from hemp or flax sources and characterised. Anaerobic pectinolytic strains had a wide range of acid polygalacturonase (PG) activity, whereas aerobic isolates did not produce any acid PG activity, but only an alkalophylic one, suggesting they could play a minor role in the retting process, except in the early stages. Analysis of 16S rDNA sequences assigned anaerobic strains to the Clostridium genus and aerobic isolates to the Bacillus and Paenibacillus genus. C. felsineum and C. acetobutylicum were confirmed as the main anaerobic agents. Nevertheless, a high proportion of anaerobic and aerobic pectinolytic strains was assigned to C. saccharobutylicum and B. pumilus, respectively, both species never being described as involved in water retting. Anaerobic and aerobic strains with high PG activity were selected and characterized. PG activity is well correlated with the strain retting efficiency and improvement of the process was obtained by inoculating the retting water with spores of selected aerobic and anaerobic bacteria. An advisable feature of retting strains is the absence of cellulosolytic activity. An aerobic strain with no cellulosolytic activity was identified. In contrast, all the anaerobic isolates showed cellulosolytic activity. Mutagenesis was ineffective for selection of Cel-Pec+ mutants. Localization of the C. felsineum L1/6 PG activity was investigated.
机译:脱胶是有效生产纺织大麻纤维的主要限制。传统的tting变是由本地细菌群落进行的。从大麻或亚麻中分离出好氧和厌氧的果胶分解菌株并进行鉴定。厌氧的果胶分解菌株具有广泛的酸性聚半乳糖醛酸酶(PG)活性,而好氧分离株则不产生任何酸性PG活性,而仅产生碱性的,这表明它们在脱胶过程中可能起较小的作用,除了早期阶段。分析16S rDNA序列,将厌氧菌株分配给梭状芽胞杆菌属,将好氧分离物分配给芽孢杆菌和芽孢杆菌属。确认C. felsineum和C. acetobutylicum是主要的厌氧剂。然而,分别将高比例的厌氧和好氧的果胶分解菌株分配给糖丁酸梭菌和短小芽孢杆菌,这两个物种从未被描述为与水脱胶有关。选择和表征具有高PG活性的厌氧和需氧菌株。 PG的活性与菌株的脱胶效率有很好的相关性,并且通过用选定的需氧和厌氧细菌的孢子接种脱胶水来改善工艺。脱胶菌株的可取特征是不存在纤维素分解活性。鉴定出没有纤维素分解活性的需氧菌株。相反,所有厌氧菌都显示出纤维素分解活性。诱变对选择Cel-Pec + 突变体无效。研究了C. felsineum L1 / 6 PG活性的定位。

著录项

  • 来源
    《Euphytica 》 |2004年第2期| 47-54| 共8页
  • 作者单位

    Dipartimento di Scienze e Tecnologie Biomediche Sezione di Microbiologia e Virologia Generale e Biotecnologie Microbiche University of Cagliari Cittadella universitaria;

    Department of Animal Biology and Genetics “Leo Pardi” University of Florence;

    Department of Animal Biology and Genetics “Leo Pardi” University of Florence;

    Istituto Sperimentale per le Colture Industriali;

    Department of Animal Biology and Genetics “Leo Pardi” University of Florence;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cellulase; flax; hemp; polygalacturonase; water retting;

    机译:纤维素酶;亚麻;大麻;聚半乳糖醛酸酶;水脱胶;

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