Swingley_2007_J.Bacteriol_189_683

Reference

Title : The complete genome sequence of Roseobacter denitrificans reveals a mixotrophic rather than photosynthetic metabolism - Swingley_2007_J.Bacteriol_189_683
Author(s) : Swingley WD , Sadekar S , Mastrian SD , Matthies HJ , Hao J , Ramos H , Acharya CR , Conrad AL , Taylor HL , Dejesa LC , Shah MK , O'Huallachain M E , Lince MT , Blankenship RE , Beatty JT , Touchman JW
Ref : Journal of Bacteriology , 189 :683 , 2007
Abstract :

Purple aerobic anoxygenic phototrophs (AAPs) are the only organisms known to capture light energy to enhance growth only in the presence of oxygen but do not produce oxygen. The highly adaptive AAPs compose more than 10% of the microbial community in some euphotic upper ocean waters and are potentially major contributors to the fixation of the greenhouse gas CO2. We present the complete genomic sequence and feature analysis of the AAP Roseobacter denitrificans, which reveal clues to its physiology. The genome lacks genes that code for known photosynthetic carbon fixation pathways, and most notably missing are genes for the Calvin cycle enzymes ribulose bisphosphate carboxylase (RuBisCO) and phosphoribulokinase. Phylogenetic evidence implies that this absence could be due to a gene loss from a RuBisCO-containing alpha-proteobacterial ancestor. We describe the potential importance of mixotrophic rather than autotrophic CO2 fixation pathways in these organisms and suggest that these pathways function to fix CO2 for the formation of cellular components but do not permit autotrophic growth. While some genes that code for the redox-dependent regulation of photosynthetic machinery are present, many light sensors and transcriptional regulatory motifs found in purple photosynthetic bacteria are absent.

PubMedSearch : Swingley_2007_J.Bacteriol_189_683
PubMedID: 17098896
Gene_locus related to this paper: 9rhob-a9h1q8 , rosdo-q07gu4 , rosdo-q16av5 , rosdo-q16bt7 , rosdo-q16c49 , rosdo-q16d33 , rosdo-q16d95 , rosdo-q16d99 , rosdo-q161f3 , rosdo-q161f4 , rosdo-q161f6 , rosdo-q161l1 , rosdo-q161v7 , rosdo-q162t5 , rosdo-q165i6 , rosdo-q165m7 , rosdo-q168p7 , rosdo-q168y6 , rosdo-q169a8 , rosdo-q169e0 , rosdo-q16dt4 , rosdo-q165v3

Related information

Gene_locus 9rhob-a9h1q8    rosdo-q07gu4    rosdo-q16av5    rosdo-q16bt7    rosdo-q16c49    rosdo-q16d33    rosdo-q16d95    rosdo-q16d99    rosdo-q161f3    rosdo-q161f4    rosdo-q161f6    rosdo-q161l1    rosdo-q161v7    rosdo-q162t5    rosdo-q165i6    rosdo-q165m7    rosdo-q168p7    rosdo-q168y6    rosdo-q169a8    rosdo-q169e0    rosdo-q16dt4    rosdo-q165v3

Citations formats

Swingley WD, Sadekar S, Mastrian SD, Matthies HJ, Hao J, Ramos H, Acharya CR, Conrad AL, Taylor HL, Dejesa LC, Shah MK, O'Huallachain M E, Lince MT, Blankenship RE, Beatty JT, Touchman JW (2007)
The complete genome sequence of Roseobacter denitrificans reveals a mixotrophic rather than photosynthetic metabolism
Journal of Bacteriology 189 :683

Swingley WD, Sadekar S, Mastrian SD, Matthies HJ, Hao J, Ramos H, Acharya CR, Conrad AL, Taylor HL, Dejesa LC, Shah MK, O'Huallachain M E, Lince MT, Blankenship RE, Beatty JT, Touchman JW (2007)
Journal of Bacteriology 189 :683