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Table representation of search results timeline featuring number of search results per year.
Year | Number of Results |
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2008 | 1 |
2009 | 1 |
2010 | 2 |
2011 | 1 |
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2016 | 1 |
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GABA (γ-Aminobutyric Acid) Uptake Via the GABA Permease GabP Represses Virulence Gene Expression in Pseudomonas syringae pv. tomato DC3000.
Mol Plant Microbe Interact. 2016 Dec;29(12):938-949. doi: 10.1094/MPMI-08-16-0172-R. Epub 2016 Dec 21.
Mol Plant Microbe Interact. 2016.
PMID: 28001093
Free article.
The infiltration-centrifugation technique for extraction of apoplastic fluid from plant leaves using Phaseolus vulgaris as an example.
O'Leary BM, Rico A, McCraw S, Fones HN, Preston GM.
O'Leary BM, et al.
J Vis Exp. 2014 Dec 19;(94):52113. doi: 10.3791/52113.
J Vis Exp. 2014.
PMID: 25549068
Free PMC article.
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The metabolic interface between Pseudomonas syringae and plant cells.
Rico A, McCraw SL, Preston GM.
Rico A, et al.
Curr Opin Microbiol. 2011 Feb;14(1):31-8. doi: 10.1016/j.mib.2010.12.008. Epub 2011 Jan 12.
Curr Opin Microbiol. 2011.
PMID: 21236723
Review.
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Mutations in γ-aminobutyric acid (GABA) transaminase genes in plants or Pseudomonas syringae reduce bacterial virulence.
Park DH, Mirabella R, Bronstein PA, Preston GM, Haring MA, Lim CK, Collmer A, Schuurink RC.
Park DH, et al.
Plant J. 2010 Oct;64(2):318-30. doi: 10.1111/j.1365-313X.2010.04327.x. Epub 2010 Sep 7.
Plant J. 2010.
PMID: 21070411
Free article.
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Metal hyperaccumulation armors plants against disease.
Fones H, Davis CA, Rico A, Fang F, Smith JA, Preston GM.
Fones H, et al.
PLoS Pathog. 2010 Sep 9;6(9):e1001093. doi: 10.1371/journal.ppat.1001093.
PLoS Pathog. 2010.
PMID: 20838462
Free PMC article.
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Pseudomonas syringae pv. syringae B728a hydrolyses indole-3-acetonitrile to the plant hormone indole-3-acetic acid.
Howden AJ, Rico A, Mentlak T, Miguet L, Preston GM.
Howden AJ, et al.
Mol Plant Pathol. 2009 Nov;10(6):857-65. doi: 10.1111/j.1364-3703.2009.00595.x.
Mol Plant Pathol. 2009.
PMID: 19849791
Free PMC article.
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Pseudomonas syringae pv. tomato DC3000 uses constitutive and apoplast-induced nutrient assimilation pathways to catabolize nutrients that are abundant in the tomato apoplast.
Rico A, Preston GM.
Rico A, et al.
Mol Plant Microbe Interact. 2008 Feb;21(2):269-82. doi: 10.1094/MPMI-21-2-0269.
Mol Plant Microbe Interact. 2008.
PMID: 18184070
Free article.
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