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A glimpse into the genetic basis of symbiosis between Hydrogenophaga and their helper strains in the biodegradation of 4-aminobenzenesulfonate

机译:4-羟基苯磺酸盐的生物降解过程中oph虫与其辅助菌共生的遗传基础

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摘要

We report the whole genome sequences of Hydrogenophaga intermedia S1 and Agrobacterium radiobacter S2, the first reported bacterial co-culture capable of degrading 4-aminobenzenesulfonate (4-ABS), a recalcitrant industrial waste product. To gain insights into the genetic basis for the syntrophic interaction between this symbiotic pair and also another recently reported Hydrogenophaga associated co-culture, Hydrogenophaga sp. PBC and Ralstonia sp. PBA, we performed detailed genetic analysis of these four strains focusing on the metabolic pathways associated with biotin, para-aminobenzoic acid (pABA), and protocatechuate metabolism. Both assembled Hydrogenophaga draft genomes are missing a majority of the genetic components associated in the biosynthetic pathway of pABA and biotin. Interestingly, a fused pABA synthase was found in R. sp PBA but not in A. radiobacter S2. Furthermore, using whole genome data, the taxonomic classification of R. sp. PBA and A. radiobacter S2 (both previously inferred from 16S rRNA gene) was re-investigated, providing new evidence to propose for their re-classification at the genus and species level, respectively
机译:我们报告了中间氢加氢菌S1和农杆菌S2的整个基因组序列,这是第一个报道的能够降解4-氨基苯磺酸盐(4-ABS)的顽固性工业废物的细菌共培养物。为了深入了解这种共生对与最近报道的另一种与Hydrogenophaga相关的共培养物Hydrogenophaga sp之间的营养相互作用的遗传基础。 PBC和Ralstonia sp。 PBA,我们对这四个菌株进行了详细的遗传分析,重点是与生物素,对氨基苯甲酸(pABA)和原儿茶酸代谢有关的代谢途径。两个已组装的Hydrogenophaga草稿基因组都缺少与pABA和生物素的生物合成途径相关的大多数遗传成分。有趣的是,在R. sp PBA中发现了融合的pABA合酶,但在放射线杆菌S2中却没有。此外,使用全基因组数据,对R. sp。进行分类学分类。对PBA和A.radiobacter S2(先前都从16S rRNA基因推断出)进行了重新研究,为分别在属和物种水平上进行分类提供了新的证据。

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