121 Publications (Page 2 of 5)
2017
Reciprocal control of motility and biofilm formation by the PdhS2 two-component sensor kinase of Agrobacterium tumefaciensHeindl, Jason E.⋅Crosby, Daniel⋅Brar, Sukhdev⋅Singletary, Tiyan⋅Merenich, Daniel⋅Eagan, Justin L.⋅Buechlein, Aaron M.⋅Bruger, Eric L.⋅Waters, Christopher M. and Fuqua, ClayCold Spring Harbor Laboratory
The Agrobacterium tumefaciens CheY-like protein ClaR regulates biofilm formationFeirer, Nathan⋅Kim, DohHyun⋅Xu, Jing⋅Fernandez, Nico⋅Waters, Christopher M and Fuqua, ClayMicrobiology (Reading, England), vol. 163, (no. 11), pp. 1691, 2017-Oct-25.
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2016
Spermidine Inversely Influences Surface Interactions and Planktonic Growth in Agrobacterium tumefaciensWang, Yi⋅Wang, Yi⋅Kim, Sok Ho⋅Kim, Sok Ho⋅Natarajan, Ramya⋅Natarajan, Ramya⋅Heindl, Jason E⋅Heindl, Jason E⋅Bruger, Eric L⋅Bruger, Eric L⋅Waters, Christopher M⋅Waters, Christopher M⋅Michael, Anthony J⋅Michael, Anthony J⋅Fuqua, Clay and Fuqua, ClayJournal of bacteriology, vol. 198, (no. 19), pp. 2691, 2016-10-01.
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2015
A Pterin-Dependent Signaling Pathway Regulates a Dual-Function Diguanylate Cyclase-Phosphodiesterase Controlling Surface Attachment in Agrobacterium tumefaciens.Feirer, Nathan⋅Xu, Jing⋅Allen, Kylie D⋅Koestler, Benjamin J⋅Bruger, Eric L⋅Waters, Christopher M⋅White, Robert H and Fuqua, ClaymBio, vol. 6, (no. 4), pp. e00156, 2015.
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Cellular Asymmetry and a Unipolar Adhesin Dictate Surface Attachment and the Transition to Virulence for Agrobacterium tumefaciensFuqua, Clay⋅Heindl, Jason⋅Heckel, Brynn⋅Feirer, Nathan and Natarajan, Ramya한국미생물학회 학술대회논문집, vol. 2015, (no. 4), pp. 74, 2015.
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Concordance of bacterial communities of two tick species and blood of their shared rodent host.Rynkiewicz, Evelyn C⋅Rynkiewicz, Evelyn C⋅Hemmerich, Chris⋅Hemmerich, Chris⋅Rusch, Douglas B⋅Rusch, Douglas B⋅Fuqua, Clay⋅Fuqua, Clay⋅Clay, Keith and Clay, KeithMolecular ecology, vol. 24, (no. 10), pp. 2566-2579, May 2015.
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Discrete Responses to Limitation for Iron and Manganese in Agrobacterium tumefaciens: Influence on Attachment and Biofilm FormationHeindl, Jason E⋅Hibbing, Michael E⋅Xu, Jing⋅Natarajan, Ramya⋅Buechlein, Aaron M and Fuqua, ClayJournal of bacteriology, vol. 198, (no. 5), pp. 829, 2015-Dec-28.
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Novel pseudotaxis mechanisms improve migration of straight-swimming bacterial mutants through a porous environment.Mohari, Bitan⋅Licata, Nicholas A⋅Kysela, David T⋅Merritt, Peter M⋅Mukhopadhay, Suchetana⋅Brun, Yves V⋅Setayeshgar, Sima and Fuqua, ClaymBio, vol. 6, (no. 2), pp. e00005, 2015.
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2014
Acyl-homoserine lactone quorum sensing in the roseobacter clade.Zan, Jindong⋅Liu, Yue⋅Fuqua, Clay and Hill, Russell TInternational journal of molecular sciences, vol. 15, (no. 1), pp. 654-69, 2014.
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Agrobacterium tumefaciens exoR controls acid response genes and impacts exopolysaccharide synthesis, horizontal gene transfer, and virulence gene expression.Heckel, Brynn C⋅Tomlinson, Amelia D⋅Morton, Elise R⋅Choi, Jeong-Hyeon and Fuqua, ClayJournal of bacteriology, vol. 196, (no. 18), pp. 3221-3233, September 2014.
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Association of Host and Microbial Species Diversity across Spatial Scales in Desert Rodent CommunitiesGavish, Yoni⋅Gavish, Yoni⋅Kedem, Hadar⋅Kedem, Hadar⋅Messika, Irit⋅Messika, Irit⋅Cohen, Carmit⋅Cohen, Carmit⋅Toh, Evelyn⋅Toh, Evelyn⋅Munro, Daniel⋅Munro, Daniel⋅Dong, Qunfeng⋅Dong, Qunfeng⋅Fuqua, Clay⋅Fuqua, Clay⋅Clay, Keith⋅Clay, Keith⋅Hawlena, Hadas and Hawlena, HadasPloS one, vol. 9, (no. 10), pp. e109677, 2014-00-00.
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Ecological dynamics and complex interactions of Agrobacterium megaplasmids.Platt, Thomas G⋅Platt, Thomas G⋅Platt, Thomas G⋅Morton, Elise R⋅Morton, Elise R⋅Morton, Elise R⋅Barton, Ian S⋅Barton, Ian S⋅Barton, Ian S⋅Bever, James D⋅Bever, James D⋅Bever, James D⋅Fuqua, Clay⋅Fuqua, Clay and Fuqua, ClayFrontiers in plant science, vol. 5, pp. 635, 2014.
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Identification and Characterization of a Second Quorum-Sensing System in Agrobacterium tumefaciens A6Wang, Chao⋅Wang, Chao⋅Yan, Chunlan⋅Yan, Chunlan⋅Fuqua, Clay⋅Fuqua, Clay⋅Zhang, Lian-Hui and Zhang, Lian HuiJournal of bacteriology, vol. 196, (no. 7), pp. 1411, 2014-Apr.
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Mechanisms and regulation of surface interactions and biofilm formation in Agrobacterium.Heindl, Jason E⋅Wang, Yi⋅Heckel, Brynn C⋅Mohari, Bitan⋅Feirer, Nathan and Fuqua, ClayFrontiers in plant science, vol. 5, pp. 176, 2014.
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Non-additive costs and interactions alter the competitive dynamics of co-occurring ecologically distinct plasmids.Morton, Elise R⋅Platt, Thomas⋅Fuqua, Clay and Bever, James DProceedings. Biological sciences / The Royal Society, vol. 281, (no. 1779), pp. 20132173, 2014/Mar/22.
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The Ctp Type IVb Pilus Locus of Agrobacterium tumefaciens Directs Formation of the Common Pili and Contributes to Reversible Surface AttachmentWang, Yi⋅Haitjema, Charles H and Fuqua, ClayJournal of Bacteriology, vol. 196, (no. 16), Aug 2014.
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2013
Chemical signaling between plants and plant-pathogenic bacteria.Venturi, Vittorio and Fuqua, ClayAnnual review of phytopathology, vol. 51, pp. 17-37, 2013.
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Coordination of division and development influences complex multicellular behavior in Agrobacterium tumefaciens.Kim, Jinwoo⋅Heindl, Jason E and Fuqua, ClayPloS one, vol. 8, (no. 2), pp. e56682, 2013.
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Genetic analysis of Agrobacterium tumefaciens unipolar polysaccharide production reveals complex integrated control of the motile-to-sessile switch.Xu, Jing⋅Kim, Jinwoo⋅Koestler, Benjamin J⋅Choi, Jeong-Hyeon⋅Waters, Christopher M and Fuqua, ClayMolecular microbiology, vol. 89, (no. 5), pp. 929-48, 2013/Sep.
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In vivo analysis of DNA binding and ligand interaction of BlcR, an IclR-type repressor from Agrobacterium tumefaciensPan, Yi⋅Pan, Yi⋅Wang, Yi⋅Wang, Yi⋅Fuqua, Clay⋅Fuqua, Clay⋅Chen, Lingling and Chen, LinglingMicrobiology (Reading, England), vol. 159, (no. Pt 4), pp. 822, 2013-Apr.
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Large deletions in the pAtC58 megaplasmid of Agrobacterium tumefaciens can confer reduced carriage cost and increased expression of virulence genes.Morton, Elise R⋅Merritt, Peter M⋅Bever, James D and Fuqua, ClayGenome biology and evolution, vol. 5, (no. 7), pp. 1353-64, 2013.
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The arthropod, but not the vertebrate host or its environment, dictates bacterial community composition of fleas and ticksHawlena, Hadas⋅Hawlena, Hadas⋅Hawlena, Hadas⋅Hawlena, Hadas⋅Rynkiewicz, Evelyn⋅Rynkiewicz, Evelyn⋅Rynkiewicz, Evelyn⋅Rynkiewicz, Evelyn⋅Toh, Evelyn⋅Toh, Evelyn⋅Toh, Evelyn⋅Toh, Evelyn⋅Alfred, Andrew⋅Alfred, Andrew⋅Alfred, Andrew⋅Alfred, Andrew⋅Durden, Lance A⋅Durden, Lance A⋅Durden, Lance A⋅Durden, Lance A⋅Hastriter, Michael W⋅Hastriter, Michael W⋅Hastriter, Michael W⋅Hastriter, Michael W⋅Nelson, David E⋅Nelson, David E⋅Nelson, David E⋅Nelson, David E⋅Rong, Ruichen⋅Rong, Ruichen⋅Rong, Ruichen⋅Rong, Ruichen⋅Munro, Daniel⋅Munro, Daniel⋅Munro, Daniel⋅Munro, Daniel⋅Dong, Qunfeng⋅Dong, Qunfeng⋅Dong, Qunfeng⋅Dong, Qunfeng⋅Fuqua, Clay⋅Fuqua, Clay⋅Fuqua, Clay⋅Fuqua, Clay⋅Clay, Keith⋅Clay, Keith⋅Clay, Keith and Clay, KeithThe ISME journal, vol. 7, (no. 1), pp. 223, 2013-Jan.
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The CckA-ChpT-CtrA phosphorelay system is regulated by quorum sensing and controls flagellar motility in the marine sponge symbiont Ruegeria sp. KLH11.Zan, Jindong⋅Heindl, Jason E⋅Liu, Yue⋅Fuqua, Clay and Hill, Russell TPloS one, vol. 8, (no. 6), pp. e66346, 2013.
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The CckA-ChpT-CtrA Phosphorelay System Is Regulated by Quorum Sensing and Controls Flagellar Motility in the Marine Sponge Symbiont Ruegeria sp. KLH11. e66346Zan, Jindong⋅Heindl, Jason E⋅Liu, Yue⋅Fuqua, Clay and Hill, Russell TPLoS ONE, vol. 8, (no. 6), 2013.
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2012
A complex LuxR-LuxI type quorum sensing network in a roseobacterial marine sponge symbiont activates flagellar motility and inhibits biofilm formation.Zan, Jindong⋅Cicirelli, Elisha M⋅Mohamed, Naglaa M⋅Sibhatu, Hiruy⋅Kroll, Stephanie⋅Choi, Okhee⋅Uhlson, Charis L⋅Wysoczynski, Christina L⋅Murphy, Robert C⋅Churchill, Mair E⋅Hill, Russell T and Fuqua, ClayMolecular microbiology, vol. 85, (no. 5), pp. 916-33, 2012/Sep.
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