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首页> 外文期刊>FEMS Microbiology Letters >Harvesting of novel polyhydroxyalkanaote (PHA) synthase encoding genes from a soil metagenome library using phenotypic screening
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Harvesting of novel polyhydroxyalkanaote (PHA) synthase encoding genes from a soil metagenome library using phenotypic screening

机译:使用表型筛选从土壤元基因组文库中收获新型多羟基链烷酸酯(PHA)合酶编码基因

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摘要

We previously reported the construction of metagenomic libraries in the IncP cosmid vector pRK7813, enabling heterologous expression of these broad-host-range libraries in multiple bacterial hosts. Expressing these libraries in Sinorhizobium meliloti, we have successfully complemented associated phenotypes of polyhydroxyalkanoate synthesis mutants. DNA sequence analysis of three clones indicates that the complementing genes are homologous to, but substantially different from, known polyhydroxyalkanaote synthase-encoding genes. Thus we have demonstrated the ability to isolate diverse genes for polyhydroxyalkanaote synthesis by functional complementation of defined mutants. Such genes might be of use in the engineering of more efficient systems for the industrial production of bioplastics. The use of functional complementation will also provide a vehicle to probe the genetics of polyhydroxyalkanaote metabolism and its relation to carbon availability in complex microbial assemblages.
机译:我们先前报道了在IncP粘粒载体pRK7813中构建宏基因组文库,从而能够在多个细菌宿主中异源表达这些宽宿主范围的文库。在苜蓿中华根瘤菌中表达这些文库,我们已经成功地补充了聚羟基链烷酸酯合成突变体的相关表型。对三个克隆的DNA序列分析表明,互补基因与已知的多羟基链烷酸合酶编码基因同源,但与之基本不同。因此,我们证明了通过定义的突变体的功能互补来分离用于聚羟基链烷酸酯合成的多种基因的能力。此类基因可能在工程设计上更有效地用于生物塑料工业化生产。功能互补的使用也将提供一种手段来探测多羟基链烷代谢的遗传学及其与复杂微生物组合中碳利用率的关系。

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