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首页> 外文期刊>Applied Microbiology >Identification of Unknown Carboxydovore Bacteria Dominant in Deciduous Forest Soil via Succession of Bacterial Communities, coxL Genotypes, and Carbon Monoxide Oxidation Activity in Soil Microcosms
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Identification of Unknown Carboxydovore Bacteria Dominant in Deciduous Forest Soil via Succession of Bacterial Communities, coxL Genotypes, and Carbon Monoxide Oxidation Activity in Soil Microcosms

机译:通过细菌群落的继承,coxL基因型和土壤微观世界中的一氧化碳氧化活性鉴定落叶林土壤中未知的羧化细菌优势

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Surveys of the coxL gene, encoding the large subunit of the CO dehydrogenase, are used as a standard approach in ecological studies of carboxydovore bacteria scavenging atmospheric CO. Recent soil surveys unveiled that the distribution of coxL sequences encompassing the atypical genotype coxL type I group x was correlated to the CO oxidation activity. Based on phylogenetic analysis including the available coxL reference genome sequences, this unusual genotype was assigned to an unknown member of the Deltaproteobacteria , with the coxL sequence from Haliangium ochraceum being the sole and closest reference sequence. Here we seek to challenge the proposed taxonomic assignation of the coxL group x genotype through the monitoring of CO consumption activity and microbial community successions during the colonization of sterile soil microcosms inoculated with indigenous microorganisms. In our study, we established that the estimated population density of Deltaproteobacteria was too small to account for the abundance of the coxL group x genotype detected in soil. Furthermore, we computed a correlation network to relate 16S rRNA gene profiles with the succession of coxL genotypes and CO uptake activity in soil. We found that most of the coxL genotypes for which the colonization profile displayed covariance with CO uptake activity were related to potential carboxydovore bacteria belonging to Actinobacteria and Alphaproteobacteria . Our analysis did not provide any evidence that coxL group x genotypes belonged to Deltaproteobacteria . Considering the colonization profile of CO-oxidizing bacteria and the theoretical energy yield of measured CO oxidation rates in soil microcosms, we propose that unknown carboxydovore bacteria harboring the atypical coxL group x genotype are mixotrophic K -strategists.
机译:编码CO脱氢酶大亚基的coxL基因的调查,被用作清除大气CO的羧基脱氧细菌的生态学研究的标准方法。最近的土壤调查显示,coxL序列的分布涵盖非典型基因型coxL I型组x与CO氧化活性相关。根据系统发育分析,包括可用的coxL参考基因组序列,此异常基因型被分配给了Deltaproteobacteria的未知成员,Ha豆Ha的coxL序列是唯一且最接近的参考序列。在这里,我们试图通过监测接种土著微生物的无菌土壤微生物定殖期间的CO消费活动和微生物群落演替,来挑战coxL组x基因型的拟议分类分配。在我们的研究中,我们确定了估计的变形杆菌种群密度太小,无法说明在土壤中检测到的coxL组x基因型的丰度。此外,我们计算了一个相关网络,将16S rRNA基因概况与土壤中coxL基因型的连续性和CO吸收活性相关联。我们发现,大多数coxL基因型的菌落分布与CO吸收活性呈协方差,与属于放线菌和Alphaproteobacteria的潜在羧基脱氧核糖核酸细菌有关。我们的分析没有提供任何证据表明coxL组x基因型属于Deltaproteobacteria。考虑到CO氧化细菌的定殖情况以及在土壤微观世界中测得的CO氧化速率的理论能量产量,我们认为具有非典型coxL基团x基因型的未知羧化细菌是混合营养型K-策略家。

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