Isolation and characterization of oxalotrophic bacteria from tropical soils

被引:0
|
作者
Daniel Bravo
Olivier Braissant
Guillaume Cailleau
Eric Verrecchia
Pilar Junier
机构
[1] University of Neuchatel,Laboratory of Microbiology, Institute of Biology
[2] Biozentrum/Pharmazentrum University of Basel,Biomechanics & Calorimetry Center Basel
[3] University of Lausanne,Biogeoscience Laboratory, Institute of Earth Surface Dynamics
来源
Archives of Microbiology | 2015年 / 197卷
关键词
Oxalotrophic bacteria; Oxalate–carbonate pathway; 16S rRNA gene; Isothermal microcalorimetry; BIOLOG profiles;
D O I
暂无
中图分类号
学科分类号
摘要
The oxalate–carbonate pathway (OCP) is a biogeochemical set of reactions that involves the conversion of atmospheric CO2 fixed by plants into biomass and, after the biological recycling of calcium oxalate by fungi and bacteria, into calcium carbonate in terrestrial environments. Oxalotrophic bacteria are a key element of this process because of their ability to oxidize calcium oxalate. However, the diversity and alternative carbon sources of oxalotrophs participating to this pathway are unknown. Therefore, the aim of this study was to characterize oxalotrophic bacteria in tropical OCP systems from Bolivia, India, and Cameroon. Ninety-five oxalotrophic strains were isolated and identified by sequencing of the 16S rRNA gene. Four genera corresponded to newly reported oxalotrophs (Afipia, Polaromonas, Humihabitans, and Psychrobacillus). Ten strains were selected to perform a more detailed characterization. Kinetic curves and microcalorimetry analyses showed that Variovorax soli C18 has the highest oxalate consumption rate with 0.240 µM h−1. Moreover, Streptomyces achromogenes A9 displays the highest metabolic plasticity. This study highlights the phylogenetic and physiological diversity of oxalotrophic bacteria in tropical soils under the influence of the oxalate–carbonate pathway.
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页码:65 / 77
页数:12
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