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Gene probing reveals the widespread distribution, diversity and abundance of isoprene-degrading bacteria in the environment

机译:基因探测揭示了环境中异戊二烯降解细菌的广泛分布,多样性和丰富性

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Abstract BackgroundApproximately 500?Tg of isoprene are emitted to the atmosphere annually, an amount similar to that of methane, and despite its significant effects on the climate, very little is known about the biological degradation of isoprene in the environment. Isolation and characterisation of isoprene degraders at the molecular level has allowed the development of probes targeting isoA encoding the α-subunit of the isoprene monooxygenase. This enzyme belongs to the soluble diiron centre monooxygenase family and catalyses the first step in the isoprene degradation pathway. The use of probes targeting key metabolic genes is a successful approach in molecular ecology to study specific groups of bacteria in complex environments. Here, we developed and tested a novel isoA PCR primer set to study the distribution, abundance, and diversity of isoprene degraders in a wide range of environments.ResultsThe new isoA probes specifically amplified isoA genes from taxonomically diverse isoprene-degrading bacteria including members of the genera Rhodococcus , Variovorax , and Sphingopyxis . There was no cross-reactivity with genes encoding related oxygenases from non-isoprene degraders. Sequencing of isoA amplicons from DNA extracted from environmental samples enriched with isoprene revealed that most environments tested harboured a considerable variety of isoA sequences, with poplar leaf enrichments containing more phylogenetically diverse isoA genes. Quantification by qPCR using these isoA probes revealed that isoprene degraders are widespread in the phyllosphere, terrestrial, freshwater and marine environments. Specifically, soils in the vicinity of high isoprene-emitting trees contained the highest number of isoprene-degrading bacteria.ConclusionThis study provides the molecular ecology tools to broaden our knowledge of the distribution, abundance and diversity of isoprene degraders in the environment, which is a fundamental step necessary to assess the impact that microbes have in mitigating the effects of this important climate-active gas.
机译:摘要背景每年大约有500?Tg的异戊二烯排放到大气中,与甲烷的排放量相似,尽管它对气候有显着影响,但对环境中异戊二烯的生物降解知之甚少。在分子水平上异戊二烯降解物的分离和表征已经允许开发靶向编码异戊二烯单加氧酶的α-亚基的isoA的探针。该酶属于可溶性二铁中心单加氧酶家族,可催化​​异戊二烯降解途径中的第一步。使用靶向关键代谢基因的探针是分子生态学研究复杂环境中特定细菌群体的成功方法。在这里,我们开发并测试了一种新型的isoA PCR引物组,以研究在各种环境中异戊二烯降解物的分布,丰度和多样性。 Rhodococcus属,Variovorax和Sphingopyxis属。与编码来自异戊二烯降解物的相关加氧酶的基因没有交叉反应。从富含异戊二烯的环境样品中提取的DNA的isoA扩增子序列分析显示,大多数测试环境都具有相当多的isoA序列,其中杨树叶片富集包含更多的系统发育上不同的isoA基因。使用这些isoA探针通过qPCR进行的定量分析表明,异戊二烯降解剂广泛分布于叶环,陆地,淡水和海洋环境中。具体来说,高异戊二烯排放树附近的土壤中异戊二烯降解细菌的数量最多。结论本研究提供了分子生态学工具,以拓宽我们对环境中异戊二烯降解物的分布,丰度和多样性的认识。评估微生物对减轻这种重要的具有气候活性的气体的影响所必需的基本步骤。

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