Ward_2009_Appl.Environ.Microbiol_75_2046

Reference

Title : Three genomes from the phylum Acidobacteria provide insight into the lifestyles of these microorganisms in soils - Ward_2009_Appl.Environ.Microbiol_75_2046
Author(s) : Ward NL , Challacombe JF , Janssen PH , Henrissat B , Coutinho PM , Wu M , Xie G , Haft DH , Sait M , Badger J , Barabote RD , Bradley B , Brettin TS , Brinkac LM , Bruce D , Creasy T , Daugherty SC , Davidsen TM , DeBoy RT , Detter JC , Dodson RJ , Durkin AS , Ganapathy A , Gwinn-Giglio M , Han CS , Khouri H , Kiss H , Kothari SP , Madupu R , Nelson KE , Nelson WC , Paulsen I , Penn K , Ren Q , Rosovitz MJ , Selengut JD , Shrivastava S , Sullivan SA , Tapia R , Thompson LS , Watkins KL , Yang Q , Yu C , Zafar N , Zhou L , Kuske CR
Ref : Applied Environmental Microbiology , 75 :2046 , 2009
Abstract :

The complete genomes of three strains from the phylum Acidobacteria were compared. Phylogenetic analysis placed them as a unique phylum. They share genomic traits with members of the Proteobacteria, the Cyanobacteria, and the Fungi. The three strains appear to be versatile heterotrophs. Genomic and culture traits indicate the use of carbon sources that span simple sugars to more complex substrates such as hemicellulose, cellulose, and chitin. The genomes encode low-specificity major facilitator superfamily transporters and high-affinity ABC transporters for sugars, suggesting that they are best suited to low-nutrient conditions. They appear capable of nitrate and nitrite reduction but not N(2) fixation or denitrification. The genomes contained numerous genes that encode siderophore receptors, but no evidence of siderophore production was found, suggesting that they may obtain iron via interaction with other microorganisms. The presence of cellulose synthesis genes and a large class of novel high-molecular-weight excreted proteins suggests potential traits for desiccation resistance, biofilm formation, and/or contribution to soil structure. Polyketide synthase and macrolide glycosylation genes suggest the production of novel antimicrobial compounds. Genes that encode a variety of novel proteins were also identified. The abundance of acidobacteria in soils worldwide and the breadth of potential carbon use by the sequenced strains suggest significant and previously unrecognized contributions to the terrestrial carbon cycle. Combining our genomic evidence with available culture traits, we postulate that cells of these isolates are long-lived, divide slowly, exhibit slow metabolic rates under low-nutrient conditions, and are well equipped to tolerate fluctuations in soil hydration.

PubMedSearch : Ward_2009_Appl.Environ.Microbiol_75_2046
PubMedID: 19201974
Gene_locus related to this paper: korve-q1ihr9 , korve-q1ii02 , korve-q1iit0 , korve-q1ilk4 , korve-q1imj9 , korve-q1ims4 , korve-q1iqj0 , korve-q1isy7 , korve-q1itj5 , korve-q1itz6 , korve-q1ivc8 , acic5-c1f1u6 , acic5-c1f2i7 , acic5-c1f4m6 , acic5-c1f4y4 , acic5-c1f5a7 , acic5-c1f5u2 , acic5-c1f7a9 , acic5-c1f7x6 , acic5-c1f8y9 , acic5-c1f9m2 , acic5-c1f594 , acic5-c1f609 , acic5-c1f692 , acic5-c1f970 , acic5-c1fa52 , korve-q1iiw2 , korve-q1ivn9 , solue-q01nb0 , solue-q01qj6 , solue-q01r37 , solue-q01rq8 , solue-q01rz0 , solue-q01t44 , solue-q01t57 , solue-q01ts5 , solue-q01tv4 , solue-q01vd8 , solue-q01vr3 , solue-q01vw5 , solue-q01w12 , solue-q01wt9 , solue-q01y40 , solue-q01ym8 , solue-q01z24 , solue-q01z97 , solue-q01zl4 , solue-q01zm0 , solue-q01zm5 , solue-q01zm7 , solue-q02aa4 , solue-q02ab9 , solue-q02b72 , solue-q02bs8 , solue-q02bt7 , solue-q02cp0 , solue-q02d61 , solue-q020h3 , solue-q020i8 , solue-q021i6 , solue-q022b1 , solue-q022p8 , solue-q022q2 , solue-q022q3 , solue-q022x2 , solue-q022x5 , solue-q022x6 , solue-q022x8 , solue-q023e7 , solue-q024d9 , solue-q025c1 , solue-q026j1 , solue-q026k6 , solue-q026r6 , solue-q027p2 , solue-q027r8 , solue-q01zt5 , korve-q1itw6 , solue-q01yh7 , solue-q02ad6 , korve-q1imj6 , korve-q1iuf6 , acic5-c1f891 , solue-q026h7

Related information

Gene_locus korve-q1ihr9    korve-q1ii02    korve-q1iit0    korve-q1ilk4    korve-q1imj9    korve-q1ims4    korve-q1iqj0    korve-q1isy7    korve-q1itj5    korve-q1itz6    korve-q1ivc8    acic5-c1f1u6    acic5-c1f2i7    acic5-c1f4m6    acic5-c1f4y4    acic5-c1f5a7    acic5-c1f5u2    acic5-c1f7a9    acic5-c1f7x6    acic5-c1f8y9    acic5-c1f9m2    acic5-c1f594    acic5-c1f609    acic5-c1f692    acic5-c1f970    acic5-c1fa52    korve-q1iiw2    korve-q1ivn9    solue-q01nb0    solue-q01qj6    solue-q01r37    solue-q01rq8    solue-q01rz0    solue-q01t44    solue-q01t57    solue-q01ts5    solue-q01tv4    solue-q01vd8    solue-q01vr3    solue-q01vw5    solue-q01w12    solue-q01wt9    solue-q01y40    solue-q01ym8    solue-q01z24    solue-q01z97    solue-q01zl4    solue-q01zm0    solue-q01zm5    solue-q01zm7    solue-q02aa4    solue-q02ab9    solue-q02b72    solue-q02bs8    solue-q02bt7    solue-q02cp0    solue-q02d61    solue-q020h3    solue-q020i8    solue-q021i6    solue-q022b1    solue-q022p8    solue-q022q2    solue-q022q3    solue-q022x2    solue-q022x5    solue-q022x6    solue-q022x8    solue-q023e7    solue-q024d9    solue-q025c1    solue-q026j1    solue-q026k6    solue-q026r6    solue-q027p2    solue-q027r8    solue-q01zt5    korve-q1itw6    solue-q01yh7    solue-q02ad6    korve-q1imj6    korve-q1iuf6    acic5-c1f891    solue-q026h7
Gene_locus_frgt korve-q1ihr9    korve-q1ii02    korve-q1iit0    korve-q1ilk4    korve-q1imj9    korve-q1ims4    korve-q1iqj0    korve-q1isy7    korve-q1itj5    korve-q1itz6    korve-q1ivc8    acic5-c1f1u6    acic5-c1f2i7    acic5-c1f4m6    acic5-c1f4y4    acic5-c1f5a7    acic5-c1f5u2    acic5-c1f7a9    acic5-c1f7x6    acic5-c1f8y9    acic5-c1f9m2    acic5-c1f594    acic5-c1f609    acic5-c1f692    acic5-c1f970    acic5-c1fa52    korve-q1iiw2    korve-q1ivn9    solue-q01nb0    solue-q01qj6    solue-q01r37    solue-q01rq8    solue-q01rz0    solue-q01t44    solue-q01t57    solue-q01ts5    solue-q01tv4    solue-q01vd8    solue-q01vr3    solue-q01vw5    solue-q01w12    solue-q01wt9    solue-q01y40    solue-q01ym8    solue-q01z24    solue-q01z97    solue-q01zl4    solue-q01zm0    solue-q01zm5    solue-q01zm7    solue-q02aa4    solue-q02ab9    solue-q02b72    solue-q02bs8    solue-q02bt7    solue-q02cp0    solue-q02d61    solue-q020h3    solue-q020i8    solue-q021i6    solue-q022b1    solue-q022p8    solue-q022q2    solue-q022q3    solue-q022x2    solue-q022x5    solue-q022x6    solue-q022x8    solue-q023e7    solue-q024d9    solue-q025c1    solue-q026j1    solue-q026k6    solue-q026r6    solue-q027p2    solue-q027r8    solue-q01zt5    korve-q1itw6    solue-q01yh7    solue-q02ad6    korve-q1imj6    korve-q1iuf6    acic5-c1f891    solue-q026h7    solue-q01t58    solue-q02at8    solue-q02ce7    solue-q026h6.1    solue-q026h6.2

Citations formats

Ward NL, Challacombe JF, Janssen PH, Henrissat B, Coutinho PM, Wu M, Xie G, Haft DH, Sait M, Badger J, Barabote RD, Bradley B, Brettin TS, Brinkac LM, Bruce D, Creasy T, Daugherty SC, Davidsen TM, DeBoy RT, Detter JC, Dodson RJ, Durkin AS, Ganapathy A, Gwinn-Giglio M, Han CS, Khouri H, Kiss H, Kothari SP, Madupu R, Nelson KE, Nelson WC, Paulsen I, Penn K, Ren Q, Rosovitz MJ, Selengut JD, Shrivastava S, Sullivan SA, Tapia R, Thompson LS, Watkins KL, Yang Q, Yu C, Zafar N, Zhou L, Kuske CR (2009)
Three genomes from the phylum Acidobacteria provide insight into the lifestyles of these microorganisms in soils
Applied Environmental Microbiology 75 :2046

Ward NL, Challacombe JF, Janssen PH, Henrissat B, Coutinho PM, Wu M, Xie G, Haft DH, Sait M, Badger J, Barabote RD, Bradley B, Brettin TS, Brinkac LM, Bruce D, Creasy T, Daugherty SC, Davidsen TM, DeBoy RT, Detter JC, Dodson RJ, Durkin AS, Ganapathy A, Gwinn-Giglio M, Han CS, Khouri H, Kiss H, Kothari SP, Madupu R, Nelson KE, Nelson WC, Paulsen I, Penn K, Ren Q, Rosovitz MJ, Selengut JD, Shrivastava S, Sullivan SA, Tapia R, Thompson LS, Watkins KL, Yang Q, Yu C, Zafar N, Zhou L, Kuske CR (2009)
Applied Environmental Microbiology 75 :2046