首页> 外文期刊>Polymer Degradation and Stability >Isolation of poly[D-lactate (LA)-co-3-hydroxybutyrate)]-degrading bacteria from soil and characterization of D-LA homo-oligomer degradation by the isolated strains
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Isolation of poly[D-lactate (LA)-co-3-hydroxybutyrate)]-degrading bacteria from soil and characterization of D-LA homo-oligomer degradation by the isolated strains

机译:分离土壤(D-乳酸盐) - 降解细菌的分离及分离菌株D-LA均外低聚物降解的菌

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摘要

P[D-lactate (LA)-co-3-hydroxybutyrate (3HB)] is an artificial polyhydroxyalkanoate (PHA) containing unusual D-LA units. In this study, the P(D-LA-co-3HB)-degrading bacterial group in the soil was analyzed and the bacterial degradation of the D-LA clustering structure in the copolymer were evaluated by using chemically synthetic D-LA homo-oligomers. A total of 216 soil samples were screened on the basis of clear zone formation on agar plates containing emulsified P(64 mol% D-LA-co-3HB). The 16S rRNA analysis of the isolated bacteria resulted in the identification of eight Variovorax, three Acidovorax, and one Bur-kholderia strains, which are closely related to previously identified natural PHA-degrading bacteria. These bacteria nearly consumed the P(D-LA-co-3HB) emulsion in the liquid culture; however, a small amount of the D-LA fraction remained unconsumed, which should be attributable to the D-LA-clustering structure in the copolymer. Cultivation of the isolated bacteria with the D-LA homo-oligomers revealed that the oligomers with a degree of polymerization (DP) ranging from 10 to 30 were partly consumed by six Variovorax and one Acidovorax strains. In contrast, the oligomers with DP ranging from 20 to 60 were not consumed by the isolated bacteria. These results indicate that D-LA homo-oligomers with DP higher than approximately 20 are hardly degraded by the soil bacteria. Molecular dynamic simulation of the D-LA homo-oligomers indicated that the upper limit of DP is likely to be determined by the conformational structure of the oligomers in water. The information obtained in this study will be useful for the molecular design of biodegradable D-LA-containing polymers.
机译:P [D-乳酸盐(LA)-CO-3-羟基丁酸(3HB)]是一种含有异常D-LA单元的人造多羟基烷烃(PHA)。在该研究中,分析了土壤中的P(D-La-Co-3HB) - 凸膜细菌基团,通过使用化学合成的D-LA同源 - 低聚物评估共聚物中的D-LA聚类结构的细菌降解。在含有乳化P(64mol%D-La-Co-3HB)的琼脂平板上的透明区形成,共筛选总共216个土壤样品。孤立的细菌的16S rRNA分析导致鉴定八种毒素,三种屠体和一个Bur-Khowderia菌株,其与先前鉴定的天然pHA降解细菌密切相关。这些细菌几乎消耗了液体培养中的p(d-la-co-3hb)乳液;然而,少量的D-La级分仍然不掺杂,其应归因于共聚物中的D-La聚类结构。用D-LA同源寡聚体培养分离的细菌显示,具有10至30的聚合程度(DP)的低聚物部分被六种Variovorax和一种酰毒菌株分配。相反,具有20至60的DP的低聚物不会被分离的细菌消耗。这些结果表明,具有高于约20的DP的D-LA同源聚合物几乎不会被土壤细菌降解。 D-LA同源寡聚体的分子动态模拟表明DP的上限可能通过水中低聚物的构象结构来确定。本研究中获得的信息对于可生物降解的D-LA聚合物的分子设计将是有用的。

著录项

  • 来源
    《Polymer Degradation and Stability》 |2020年第9期|109231.1-109231.8|共8页
  • 作者单位

    Division of Applied Chemistry Faculty of Engineering Hokkaido University N13W8 Kitaku Sapporo 060-8628 Japan;

    Graduate School of Chemical Sciences and Engineering Hokkaido University N13W8 Kitaku Sapporo 060-8628 Japan;

    Graduate School of Chemical Sciences and Engineering Hokkaido University N13W8 Kitaku Sapporo 060-8628 Japan;

    Graduate School of Chemical Sciences and Engineering Hokkaido University N13W8 Kitaku Sapporo 060-8628 Japan;

    Graduate School of Chemical Sciences and Engineering Hokkaido University N13W8 Kitaku Sapporo 060-8628 Japan;

    Division of Applied Chemistry Faculty of Engineering Hokkaido University N13W8 Kitaku Sapporo 060-8628 Japan;

    Division of Applied Chemistry Faculty of Engineering Hokkaido University N13W8 Kitaku Sapporo 060-8628 Japan;

    Division of Applied Chemistry Faculty of Engineering Hokkaido University N13W8 Kitaku Sapporo 060-8628 Japan;

    Division of Applied Chemistry Faculty of Engineering Hokkaido University N13W8 Kitaku Sapporo 060-8628 Japan;

    Division of Applied Chemistry Faculty of Engineering Hokkaido University N13W8 Kitaku Sapporo 060-8628 Japan Department of Chemistry for Life Sciences and Agriculture Faculty of Life Sciences Tokyo University of Agriculture 1-1-1 Sakuragaoka Setagaya-ku Tokyo 156-8502 Japan;

    Division of Applied Chemistry Faculty of Engineering Hokkaido University N13W8 Kitaku Sapporo 060-8628 Japan;

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

    Polyhydroxyalkanoate; Bioplastic; Biodegradable plastic; PDLA;

    机译:聚羟基烷烷;生物塑料;可生物降解的塑料;PDLA;

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