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David A Baltrus
David A Baltrus
Associate Professor, Plant Sciences, University of Arizona
Verified email at email.arizona.edu - Homepage
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Cited by
Year
Dynamic Evolution of Pathogenicity Revealed by Sequencing and Comparative Genomics of 19 Pseudomonas syringae Isolates
DA Baltrus, MT Nishimura, A Romanchuk, JH Chang, MS Mukhtar, ...
PLoS pathogens 7 (7), e1002132, 2011
4882011
Exploring the costs of horizontal gene transfer
DA Baltrus
Trends in ecology & evolution 28 (8), 489-495, 2013
4232013
Extending assembly of short DNA sequences to handle error
WR Jeck, JA Reinhardt, DA Baltrus, MT Hickenbotham, V Magrini, ...
Bioinformatics 23 (21), 2942-2944, 2007
3742007
The Complete Genome Sequence of Helicobacter pylori Strain G27
DA Baltrus, MR Amieva, A Covacci, TM Lowe, DS Merrell, KM Ottemann, ...
Journal of bacteriology 191 (1), 447-448, 2009
2572009
Global virulence regulation networks in phytopathogenic bacteria
BM Mole, DA Baltrus, JL Dangl, SR Grant
Trends in microbiology 15 (8), 363-371, 2007
2092007
De novo assembly using low-coverage short read sequence data from the rice pathogen Pseudomonas syringae pv. oryzae
JA Reinhardt, DA Baltrus, MT Nishimura, WR Jeck, CD Jones, JL Dangl
Genome research 19 (2), 294-305, 2009
2062009
Genome duplication, subfunction partitioning, and lineage divergence: Sox9 in stickleback and zebrafish
WA Cresko, YL Yan, DA Baltrus, A Amores, A Singer, A Rodríguez‐Marí, ...
Developmental dynamics: an official publication of the American Association …, 2003
1392003
Use of the soft-agar overlay technique to screen for bacterially produced inhibitory compounds
KL Hockett, DA Baltrus
JoVE (Journal of Visualized Experiments), e55064, 2017
1382017
Evolution, genomics and epidemiology of Pseudomonas syringae Challenges in Bacterial Molecular Plant Pathology
DA Baltrus, HC McCann, DS Guttman
Molecular plant pathology 18 (1), 152-168, 2017
1322017
NATURAL TRANSFORMATION INCREASES THE RATE OF ADAPTATION IN THE HUMAN PATHOGEN HELICOBACTER PYLORI
DA Baltrus, K Guillemin, PC Phillips
Evolution 62 (1), 39-49, 2008
1302008
Isolation of Endohyphal Bacteria from Foliar Ascomycota and In Vitro Establishment of Their Symbiotic Associations
KR Arendt, KL Hockett, SJ Araldi-Brondolo, DA Baltrus, AE Arnold
Applied and Environmental Microbiology 82 (10), 2943-2949, 2016
1262016
The facultative symbiont Rickettsia protects an invasive whitefly against entomopathogenic Pseudomonas syringae strains
TA Hendry, MS Hunter, DA Baltrus
Applied and Environmental Microbiology 80 (23), 7161-7168, 2014
1052014
Chloroplast sequence variation and the efficacy of peptide nucleic acids for blocking host amplification in plant microbiome studies
CR Fitzpatrick, P Lu-Irving, J Copeland, DS Guttman, PW Wang, ...
Microbiome 6, 1-10, 2018
782018
An endohyphal bacterium (Chitinophaga, Bacteroidetes) alters carbon source use by Fusarium keratoplasticum (F. solani species complex, Nectriaceae)
JP Shaffer, JM U'Ren, RE Gallery, DA Baltrus, AE Arnold
Frontiers in microbiology 8, 241231, 2017
782017
Independent Co-Option of a Tailed Bacteriophage into a Killing Complex in Pseudomonas
KL Hockett, T Renner, DA Baltrus
MBio 6 (4), 10.1128/mbio. 00452-15, 2015
772015
The Pseudomonas viridiflava phylogroups in the P. syringae species complex are characterized by genetic variability and phenotypic plasticity of pathogenicity …
C Bartoli, O Berge, CL Monteil, C Guilbaud, GM Balestra, L Varvaro, ...
Environmental microbiology 16 (7), 2301-2315, 2014
742014
The Molecular Basis of Host Specialization in Bean Pathovars of Pseudomonas syringae
DA Baltrus, MT Nishimura, KM Dougherty, S Biswas, MS Mukhtar, ...
Molecular plant-microbe interactions 25 (7), 877-888, 2012
732012
Adaptation, specialization, and coevolution within phytobiomes
DA Baltrus
Current opinion in plant biology 38, 109-116, 2017
592017
Multiple phases of competence occur during the Helicobacter pylori growth cycle
DA Baltrus, K Guillemin
FEMS microbiology letters 255 (1), 148-155, 2006
502006
Method for affecting phenotypic activity of endophytic fungi
AE Arnold, K Arendt, DA Baltrus
US Patent 10,000,733, 2018
492018
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