Publications

Found 10 results
Author Title Type [ Year(Asc)]
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2016
Burch AY, Do PT, Sbodio A, Suslow TV, Lindow SE.  2016.  High-Level Culturability of Epiphytic Bacteria and Frequency of Biosurfactant Producers on Leaves. Applied and environmental microbiology. 82(19):5997-6009.
Burch AY, Do PT, Sbodio A, Suslow TV, Lindow SE.  2016.  High-Level Culturability of Epiphytic Bacteria and Frequency of Biosurfactant Producers on Leaves. Applied and environmental microbiology. 82(19):5997-6009.
2014
Burch AY, Zeisler V, Yokota K, Schreiber L, Lindow SE.  2014.  The hygroscopic biosurfactant syringafactin produced by Pseudomonas syringae enhances fitness on leaf surfaces during fluctuating humidity. Environmental microbiology. 16(7):2086-98.
Yu X, Lund SP, Greenwald JW, Records AH, Scott RA, Nettleton D, Lindow SE, Gross DC, Beattie GA.  2014.  Transcriptional analysis of the global regulatory networks active in Pseudomonas syringae during leaf colonization. mBio. 5(5):e01683-14.
Ionescu M, Zaini PA, Baccari C, Tran S, da Silva AM, Lindow SE.  2014.  Xylella fastidiosa outer membrane vesicles modulate plant colonization by blocking attachment to surfaces. Proceedings of the National Academy of Sciences of the United States of America. 111(37):E3910-8.
2013
de Souza AA, Ionescu M, Baccari C, da Silva AM, Lindow SE.  2013.  Phenotype overlap in Xylella fastidiosa is controlled by the cyclic di-GMP phosphodiesterase Eal in response to antibiotic exposure and diffusible signal factor-mediated cell-cell signaling. Applied and environmental microbiology. 79(11):3444-54.
de Souza AA, Ionescu M, Baccari C, da Silva AM, Lindow SE.  2013.  Phenotype overlap in Xylella fastidiosa is controlled by the cyclic di-GMP phosphodiesterase Eal in response to antibiotic exposure and diffusible signal factor-mediated cell-cell signaling. Applied and environmental microbiology. 79(11):3444-54.
Yu X, Lund SP, Scott RA, Greenwald JW, Records AH, Nettleton D, Lindow SE, Gross DC, Beattie GA.  2013.  Transcriptional responses of Pseudomonas syringae to growth in epiphytic versus apoplastic leaf sites. Proceedings of the National Academy of Sciences of the United States of America. 110(5):E425-34.