生物
蓝藻
运输机
放线菌门
碳酸酐酶
ATP结合盒运输机
蛋白质细菌
无机碳总量
细菌
基因
生物化学
遗传学
酶
生态学
16S核糖体RNA
二氧化碳
作者
Kathleen M. Scott,Tara L. Harmer,Bradford J Gemmell,Andrew M. Kramer,Markus Sutter,Cheryl A. Kerfeld,Kourtney S Barber,S. M. Nayeemul Bari,Joshua W Boling,Cassandra Campbell,Javier Gallard,Jessica K. Jackson,Aldo Lobos,Jeannie Mounger,Peter Radulovic,Jacqueline M Sanson,Sarah Schmid,Candice Takieddine,Kiley F Warlick,Robert Whittaker
标识
DOI:10.1093/femsle/fnaa106
摘要
Autotrophic microorganisms catalyze the entry of dissolved inorganic carbon (DIC; = CO2 + HCO3- + CO32-) into the biological component of the global carbon cycle, despite dramatic differences in DIC abundance and composition in their sometimes extreme environments. "Cyanobacteria" are known to have CO2 concentrating mechanisms (CCMs) to facilitate growth under low CO2 conditions. These CCMs consist of carboxysomes, containing enzymes ribulose 1,5-bisphosphate oxygenase and carbonic anhydrase, partnered to DIC transporters. CCMs and their DIC transporters have been studied in a handful of other prokaryotes, but it was not known how common CCMs were beyond "Cyanobacteria". Since it had previously been noted that genes encoding potential transporters were found neighboring carboxysome loci, α-carboxysome loci were gathered from bacterial genomes, and potential transporter genes neighboring these loci are described here. Members of transporter families whose members all transport DIC (CHC, MDT and Sbt) were common in these neighborhoods, as were members of the SulP transporter family, many of which transport DIC. 109 of 115 taxa with carboxysome loci have some form of DIC transporter encoded in their genomes, suggesting that CCMs consisting of carboxysomes and DIC transporters are widespread not only among "Cyanobacteria", but also among members of "Proteobacteria" and "Actinobacteria".
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