首页> 外文期刊>Applied Microbiology >Involvement of Two Latex-Clearing Proteins during Rubber Degradation and Insights into the Subsequent Degradation Pathway Revealed by the Genome Sequence of Gordonia polyisoprenivorans Strain VH2
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Involvement of Two Latex-Clearing Proteins during Rubber Degradation and Insights into the Subsequent Degradation Pathway Revealed by the Genome Sequence of Gordonia polyisoprenivorans Strain VH2

机译:两种降解胶乳的蛋白质在橡胶降解过程中的参与以及对后来的降解途径的了解,该途径由Gordonia polyisoprenivorans菌株VH2的基因组序列揭示。

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The increasing production of synthetic and natural poly( cis -1,4-isoprene) rubber leads to huge challenges in waste management. Only a few bacteria are known to degrade rubber, and little is known about the mechanism of microbial rubber degradation. The genome of Gordonia polyisoprenivorans strain VH2, which is one of the most effective rubber-degrading bacteria, was sequenced and annotated to elucidate the degradation pathway and other features of this actinomycete. The genome consists of a circular chromosome of 5,669,805 bp and a circular plasmid of 174,494 bp with average GC contents of 67.0% and 65.7%, respectively. It contains 5,110 putative protein-coding sequences, including many candidate genes responsible for rubber degradation and other biotechnically relevant pathways. Furthermore, we detected two homologues of a latex-clearing protein, which is supposed to be a key enzyme in rubber degradation. The deletion of these two genes for the first time revealed clear evidence that latex-clearing protein is essential for the microbial utilization of rubber. Based on the genome sequence, we predict a pathway for the microbial degradation of rubber which is supported by previous and current data on transposon mutagenesis, deletion mutants, applied comparative genomics, and literature search.
机译:合成和天然聚(顺式-1,4-异戊二烯)橡胶的产量不断增加,这给废物管理带来了巨大挑战。已知只有少数细菌会降解橡胶,而对微生物橡胶降解的机理知之甚少。对最有效的橡胶降解细菌之一的Gordonia polyisoprenivorans菌株VH2的基因组进行了测序和注释,以阐明该放线菌的降解途径和其他特征。基因组由5,669,805 bp的环状染色体和174,494 bp的环状质粒组成,平均GC含量分别为67.0%和65.7%。它包含5110个推定的蛋白质编码序列,包括许多负责橡胶降解和其他生物技术相关途径的候选基因。此外,我们检测了乳胶清除蛋白的两个同源物,该蛋白被认为是橡胶降解的关键酶。这两个基因的首次删除揭示了清楚的证据,表明清除乳胶的蛋白质对于橡胶的微生物利用至关重要。根据基因组序列,我们预测橡胶的微生物降解途径,这由转座子诱变,缺失突变体,应用的比较基因组学和文献检索的先前和当前数据支持。

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