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Items: 1 to 20 of 79

1.

The effect of zinc limitation on the transcriptome of Pseudomonas protegens Pf-5.

Lim CK, Hassan KA, Penesyan A, Loper JE, Paulsen IT.

Environ Microbiol. 2013 Mar;15(3):702-15. doi: 10.1111/j.1462-2920.2012.02849.x. Epub 2012 Aug 19.

PMID:
22900619
2.

The effect of iron limitation on the transcriptome and proteome of Pseudomonas fluorescens Pf-5.

Lim CK, Hassan KA, Tetu SG, Loper JE, Paulsen IT.

PLoS One. 2012;7(6):e39139. doi: 10.1371/journal.pone.0039139. Epub 2012 Jun 18.

3.
4.

The Zur regulon of Corynebacterium glutamicum ATCC 13032.

Schröder J, Jochmann N, Rodionov DA, Tauch A.

BMC Genomics. 2010 Jan 7;11:12. doi: 10.1186/1471-2164-11-12.

5.

Effect of tannic acid on the transcriptome of the soil bacterium Pseudomonas protegens Pf-5.

Lim CK, Penesyan A, Hassan KA, Loper JE, Paulsen IT.

Appl Environ Microbiol. 2013 May;79(9):3141-5. doi: 10.1128/AEM.03101-12. Epub 2013 Feb 22.

6.

Pseudomonas protegens Pf-5 causes discoloration and pitting of mushroom caps due to the production of antifungal metabolites.

Henkels MD, Kidarsa TA, Shaffer BT, Goebel NC, Burlinson P, Mavrodi DV, Bentley MA, Rangel LI, Davis EW 2nd, Thomashow LS, Zabriskie TM, Preston GM, Loper JE.

Mol Plant Microbe Interact. 2014 Jul;27(7):733-46. doi: 10.1094/MPMI-10-13-0311-R.

7.

Genes expressed by the biological control bacterium Pseudomonas protegens Pf-5 on seed surfaces under the control of the global regulators GacA and RpoS.

Kidarsa TA, Shaffer BT, Goebel NC, Roberts DP, Buyer JS, Johnson A, Kobayashi DY, Zabriskie TM, Paulsen I, Loper JE.

Environ Microbiol. 2013 Mar;15(3):716-35. doi: 10.1111/1462-2920.12066. Epub 2013 Jan 8.

PMID:
23297839
8.

Characterization of the response to zinc deficiency in the cyanobacterium Anabaena sp. strain PCC 7120.

Napolitano M, Rubio MÁ, Santamaría-Gómez J, Olmedo-Verd E, Robinson NJ, Luque I.

J Bacteriol. 2012 May;194(10):2426-36. doi: 10.1128/JB.00090-12. Epub 2012 Mar 2.

9.

Characterization of Zur-dependent genes and direct Zur targets in Yersinia pestis.

Li Y, Qiu Y, Gao H, Guo Z, Han Y, Song Y, Du Z, Wang X, Zhou D, Yang R.

BMC Microbiol. 2009 Jun 25;9:128. doi: 10.1186/1471-2180-9-128.

10.

ZnuA and zinc homeostasis in Pseudomonas aeruginosa.

Pederick VG, Eijkelkamp BA, Begg SL, Ween MP, McAllister LJ, Paton JC, McDevitt CA.

Sci Rep. 2015 Aug 20;5:13139. doi: 10.1038/srep13139.

11.

Contributions of Zur-controlled ribosomal proteins to growth under zinc starvation conditions.

Gabriel SE, Helmann JD.

J Bacteriol. 2009 Oct;191(19):6116-22. doi: 10.1128/JB.00802-09. Epub 2009 Jul 31.

13.
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15.

Pseudomonas protegens sp. nov., widespread plant-protecting bacteria producing the biocontrol compounds 2,4-diacetylphloroglucinol and pyoluteorin.

Ramette A, Frapolli M, Fischer-Le Saux M, Gruffaz C, Meyer JM, Défago G, Sutra L, Moënne-Loccoz Y.

Syst Appl Microbiol. 2011 May;34(3):180-8. doi: 10.1016/j.syapm.2010.10.005. Epub 2011 Mar 9.

PMID:
21392918
16.

Functional analysis of the Bacillus subtilis Zur regulon.

Gaballa A, Wang T, Ye RW, Helmann JD.

J Bacteriol. 2002 Dec;184(23):6508-14.

17.

Zinc is a key factor in controlling alternation of two types of L31 protein in the Bacillus subtilis ribosome.

Nanamiya H, Akanuma G, Natori Y, Murayama R, Kosono S, Kudo T, Kobayashi K, Ogasawara N, Park SM, Ochi K, Kawamura F.

Mol Microbiol. 2004 Apr;52(1):273-83.

18.

Regulation and activity of a zinc uptake regulator, Zur, in Corynebacterium diphtheriae.

Smith KF, Bibb LA, Schmitt MP, Oram DM.

J Bacteriol. 2009 Mar;191(5):1595-603. doi: 10.1128/JB.01392-08. Epub 2008 Dec 12.

19.

Cadmium-regulated gene fusions in Pseudomonas fluorescens.

Rossbach S, Kukuk ML, Wilson TL, Feng SF, Pearson MM, Fisher MA.

Environ Microbiol. 2000 Aug;2(4):373-82.

PMID:
11234925
20.

Phloroglucinol mediates cross-talk between the pyoluteorin and 2,4-diacetylphloroglucinol biosynthetic pathways in Pseudomonas fluorescens Pf-5.

Kidarsa TA, Goebel NC, Zabriskie TM, Loper JE.

Mol Microbiol. 2011 Jul;81(2):395-414. doi: 10.1111/j.1365-2958.2011.07697.x. Epub 2011 May 26.

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