103 Publications (Page 1 of 5)
2019
A genomic island in a plant beneficial rhizobacterium encodes novel antimicrobial fatty acids and a self‐protection shield to enhance its competitionWang, Dandan⋅Xu, Zhihui⋅Zhang, Guishan⋅Xia, Liming⋅Dong, Xiaoyan⋅Li, Qing⋅Liles, Mark R⋅Shao, Jiahui⋅Shen, Qirong and Zhang, RuifuEnvironmental Microbiology, vol. 21, (no. 9), pp. 3471, September 2019.
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Bacillus velezensis AP193 exerts probiotic effects in channel catfish (Ictalurus punctatus) and reduces aquaculture pond eutrophicationThurlow, Charles M⋅Thurlow, Charles M⋅Thurlow, Charles M⋅Williams, Malachi A⋅Williams, Malachi A⋅Williams, Malachi A⋅Carrias, Abel⋅Carrias, Abel⋅Carrias, Abel⋅Ran, Chao⋅Ran, Chao⋅Ran, Chao⋅Newman, Molli⋅Newman, Molli⋅Newman, Molli⋅Tweedie, Jessica⋅Tweedie, Jessica⋅Tweedie, Jessica⋅Allison, Eric⋅Allison, Eric⋅Allison, Eric⋅Jescovitch, Lauren N⋅Jescovitch, Lauren N⋅Jescovitch, Lauren N⋅Wilson, Alan E⋅Wilson, Alan E⋅Wilson, Alan E⋅Terhune, Jeffery S⋅Terhune, Jeffery S⋅Terhune, Jeffery S⋅Liles, Mark R⋅Liles, Mark R and Liles, Mark RAquaculture, vol. 503, pp. 356, 2019-03-30.
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Consumption of florfenicol-medicated feed alters the composition of the channel catfish intestinal microbiota including enriching the relative abundance of opportunistic pathogensWang, Erlong⋅Wang, Kaiyu⋅Yuan, Zihao⋅Gao, Dongya⋅Liu, Zhanjiang and Liles, Mark RAquaculture, vol. 501, pp. 118, 2019-02-25.
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Corrigendum to “Consumption of florfenicol-medicated feed alters the composition of the channel catfish intestinal microbiota including enriching the relative abundance of opportunistic pathogens” [Aquaculture Volume 501, (2019), Pages 111–118]Wang, Erlong⋅Yuan, Zihao⋅Wang, Kaiyu⋅Gao, Dongya⋅Liu, Zhanjiang and Liles, Mark RAquaculture, pp. 734313, 2019-07-00.
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Pectin-Rich Amendment Enhances Soybean Growth Promotion and Nodulation Mediated by Bacillus Velezensis StrainsHassan, Mohammad K⋅Hassan, Mohammad K⋅Mcinroy, John A⋅Mcinroy, John A⋅Jones, Jarrod⋅Jones, Jarrod⋅Shantharaj, Deepak⋅Shantharaj, Deepak⋅Liles, Mark R⋅Liles, Mark R⋅Kloepper, Joseph W and Kloepper, Joseph WPlants, vol. 8, (no. 5), 2019-05-01.
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Structure of the capsule and lipopolysaccharide O-antigen from the channel catfish pathogen, Aeromonas hydrophilaHeiss, Christian⋅Wang, Zhirui⋅Thurlow, Charles M⋅Hossain, Mohammad J⋅Sun, Dawei⋅Liles, Mark R⋅Saper, Mark A and Azadi, ParastooCarbohydrate Research, vol. 486, pp. 107858, 2019-12-01.
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The gfc operon is involved in the formation of the O antigen capsule in Aeromonas hydrophila and contributes to virulence in channel catfishThurlow, Charles M⋅Thurlow, Charles M⋅Hossain, Mohammad J⋅Hossain, Mohammad J⋅Sun, Dawei⋅Sun, Dawei⋅Barger, Priscilla⋅Barger, Priscilla⋅Foshee, Luke⋅Foshee, Luke⋅Beck, Benjamin H⋅Beck, Benjamin H⋅Newton, Joseph C⋅Newton, Joseph C⋅Terhune, Jeffery S⋅Terhune, Jeffery S⋅Saper, Mark A⋅Saper, Mark A⋅Liles, Mark R and Liles, Mark RAquaculture, vol. 512, pp. 734334, 2019-10-00.
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2018
Aeromonas veronii and aerolysin are important for the pathogenesis of motile aeromonad septicemia in cyprinid fish.Ran, Chao⋅Qin, Chubin⋅Xie, Mingxu⋅Zhang, Jinxiong⋅Li, Jie⋅Xie, Yadong⋅Wang, Yibing⋅Li, Shuning⋅Liu, Lihui⋅Fu, Xiaozhe⋅Lin, Qiang⋅Li, Ningqiu⋅Liles, Mark R and Zhou, ZhigangEnvironmental microbiology, August 22, 2018.
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Chloramphenicol Derivatives with Antibacterial Activity Identified by Functional Metagenomics.Nasrin, Shamima⋅Nasrin, Shamima⋅Ganji, Suresh⋅Ganji, Suresh⋅Kakirde, Kavita S⋅Kakirde, Kavita S⋅Jacob, Melissa R⋅Jacob, Melissa R⋅Wang, Mei⋅Wang, Mei⋅Ravu, Ranga Rao⋅Ravu, Ranga Rao⋅Cobine, Paul A⋅Cobine, Paul A⋅Khan, Ikhlas A⋅Khan, Ikhlas A⋅Wu, Cheng-Cang⋅Wu, Cheng-Cang⋅Mead, David A⋅Mead, David A⋅Li, Xing-Cong⋅Li, Xing-Cong⋅Liles, Mark R and Liles, Mark RJournal of natural products, vol. 81, (no. 6), pp. 1321-1332, June 22, 2018.
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Diverse roles of Hcp family proteins in the environmental fitness and pathogenicity of Aeromonas hydrophila Chinese epidemic strain NJ-35.Wang, Nannan⋅Liu, Jin⋅Pang, Maoda⋅Wu, Yafeng⋅Awan, Furqan⋅Liles, Mark R⋅Lu, Chengping and Liu, YongjieApplied microbiology and biotechnology, June 3, 2018.
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Draft Genome Sequence of Fish Pathogen Aeromonas bestiarum GA97-22.Kumru, S.⋅Kumru, Salih⋅Tekedar, H.C.⋅Tekedar, Hasan C⋅Griffin, M.J.⋅Griffin, Matt J⋅Waldbieser, Geoffrey C⋅Waldbieser, G.C.⋅Liles, Mark R⋅Liles, M.R.⋅Sonstegard, T.⋅Sonstegard, Tad⋅Schroeder, Steven G⋅Schroeder, S.G.⋅Lawrence, Mark L⋅Lawrence, M.L.⋅Karsi, A. and Karsi, AttilaGenome announcements, vol. 6, (no. 24), June 14, 2018.
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Identification of Four Distinct Phylogenetic Groups in Flavobacterium columnare With Fish Host AssociationsLaFrentz, Benjamin R⋅García, Julio C⋅Waldbieser, Geoffrey C⋅Evenhuis, Jason P⋅Loch, Thomas P⋅Liles, Mark R⋅Wong, Fong S and Chang, Siow FFrontiers in microbiology, vol. 9, pp. 452, 2018-00-00.
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Vulnerability of DNA hybridization in soils is due to Mg.sup.2+ ion induced DNA aggregationWang, Xiaofang⋅Kweon, Hyojin⋅Lee, Seokho⋅Shin, Hyejin⋅Chua, Beelee⋅Liles, Mark⋅Lee, Ming-kuo and Son, AhjeongSoil Biology and Biochemistry, vol. 125, 20181001.
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2017
Chitin degradation and utilization by virulent Aeromonas hydrophila strain ML10-51KZhang, Dunhua⋅Xu, De-Hai⋅Qiu, Junqiang⋅Rasmussen-Ivey, Cody R⋅Liles, Mark R and Beck, Benjamin HArchives of microbiology, vol. 199, (no. 4), pp. 579, 2017-May.
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Draft Genome Sequences of Three Aeromonas hydrophila Isolates from Catfish and TilapiaTekedar, Hasan C⋅Tekedar, H.C.⋅Kumru, S.⋅Kumru, Salih⋅Kalindamar, S.⋅Kalindamar, Safak⋅Karsi, Attila⋅Karsi, A.⋅Waldbieser, G.C.⋅Waldbieser, Geoffrey C⋅Sonstegard, Tad⋅Sonstegard, T.⋅Schroeder, Steven G⋅Schroeder, S.G.⋅Liles, Mark R⋅Liles, M.R.⋅Griffin, Matt J⋅Griffin, M.J.⋅Lawrence, M.L. and Lawrence, Mark LGenome announcements, vol. 5, (no. 3), 2017-Jan-19.
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Effects of Bacillus subtilis strains and the prebiotic Previda® on growth, immune parameters and susceptibility to Aeromonas hydrophila infection in Nile tilapia, Oreochromis niloticusAddo, Samuel⋅Addo, Samuel⋅Carrias, Abel A⋅Carrias, Abel A⋅Williams, Malachi A⋅Williams, Malachi A⋅Liles, Mark R⋅Liles, Mark R⋅Terhune, Jeffery S⋅Terhune, Jeffery S⋅Davis, Donald A and Davis, Donald AAquaculture Research, vol. 48, (no. 9), pp. 4810, September 2017.
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Effects of Bacillus subtilis Strains on Growth, Immune Parameters, and Streptococcus iniae Susceptibility in Nile Tilapia, Oreochromis niloticusAddo, Samuel⋅Carrias, Abel A⋅Williams, Malachi A⋅Liles, Mark R⋅Terhune, Jeffery S and Davis, Donald AJournal of the World Aquaculture Society, vol. 48, (no. 2), pp. 267, April 2017.
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Identification of novel toluene monooxygenase genes in a hydrocarbon-polluted sediment using sequence-and function-based screening of metagenomic librariesBouhajja, Emna⋅McGuire, Micah⋅Liles, Mark⋅Bataille, Gwennaël⋅Agathos, Spiros and George, IsabelleApplied Microbiology and Biotechnology, 2017.
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Novel archaeal thermostable cellulases from an oil reservoir metagenomeLewin, Anna⋅Zhou, Jinglie⋅Pham, Vu⋅Haugen, Tone⋅Zeiny, Mohamed⋅Aarstad, Olav⋅Liebl, Wolfgang⋅Wentzel, Alexander and Liles, MarkAMB Express, vol. 7, (no. 1), pp. 17, 20171200.
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2016
Changes in rhizosphere bacterial gene expression following glyphosate treatmentNewman, Molli M⋅Lorenz, Nicola⋅Hoilett, Nigel⋅Lee, Nathan R⋅Dick, Richard P⋅Liles, Mark R⋅Ramsier, Cliff and Kloepper, Joseph WScience of the Total Environment, vol. 553, pp. 41, 2016-05-15.
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Classification of a Hypervirulent Aeromonas hydrophila Pathotype Responsible for Epidemic Outbreaks in Warm-Water Fishes.Rasmussen-Ivey, Cody R⋅Rasmussen-Ivey, Cody R⋅Rasmussen-Ivey, Cody R⋅Rasmussen-Ivey, Cody R⋅Hossain, Mohammad J⋅Hossain, Mohammad J⋅Hossain, Mohammad J⋅Hossain, Mohammad J⋅Odom, Sara E⋅Odom, Sara E⋅Odom, Sara E⋅Odom, Sara E⋅Terhune, Jeffery S⋅Terhune, Jeffery S⋅Terhune, Jeffery S⋅Terhune, Jeffery S⋅Hemstreet, William G⋅Hemstreet, William G⋅Hemstreet, William G⋅Hemstreet, William G⋅Shoemaker, Craig A⋅Shoemaker, Craig A⋅Shoemaker, Craig A⋅Shoemaker, Craig A⋅Zhang, Dunhua⋅Zhang, Dunhua⋅Zhang, Dunhua⋅Zhang, Dunhua⋅Xu, De-Hai⋅Xu, De-Hai⋅Xu, De-Hai⋅Xu, De-Hai⋅Griffin, Matt J⋅Griffin, Matt J⋅Griffin, Matt J⋅Griffin, Matt J⋅Liu, Yong-Jie⋅Liu, Yong-Jie⋅Liu, Yong-Jie⋅Liu, Yong-Jie⋅Figueras, Maria J⋅Figueras, Maria J⋅Figueras, Maria J⋅Figueras, Maria J⋅Santos, Scott R⋅Santos, Scott R⋅Santos, Scott R⋅Santos, Scott R⋅Newton, Joseph C⋅Newton, Joseph C⋅Newton, Joseph C⋅Newton, Joseph C⋅Liles, Mark R⋅Liles, Mark R⋅Liles, Mark R and Liles, Mark RFrontiers in microbiology, vol. 7, pp. 1615, 2016.
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Complete genome of Staphylococcus aureus Tager 104 provides evidence of its relation to modern systemic hospital-acquired strainsDavis, 4th, Richard W⋅Davis, Richard W⋅Panizzi, Peter⋅Davis, R.W.⋅Brannen, Andrew D⋅Brannen, A.D.⋅Brannen, Andrew D⋅Hossain, Mohammad J⋅Hossain, Mohammad J⋅Hossain, M.J.⋅Monsma, Scott⋅Monsma, S.⋅Monsma, Scott⋅Bock, Paul E⋅Bock, P.E.⋅Bock, Paul E⋅Nahrendorf, Matthias⋅Nahrendorf, M.⋅Nahrendorf, Matthias⋅Mead, David⋅Mead, D.⋅Mead, David⋅Lodes, Michael⋅Lodes, Michael⋅Lodes, M.⋅Liles, M.R.⋅Liles, Mark R⋅Liles, Mark R⋅Panizzi, Peter⋅Panizzi, Peter and Panizzi, P.BMC genomics, vol. 17, (no. 163), pp. 179, 2016-Mar-03.
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Draft Genome Sequence of Aeromonas hydrophila TN97-08Tekedar, Hasan C⋅Tekedar, H.C.⋅Kumru, Salih⋅Kumru, S.⋅Karsi, A.⋅Karsi, Attila⋅Waldbieser, Geoffrey C⋅Waldbieser, G.C.⋅Sonstegard, Tad⋅Sonstegard, T.⋅Schroeder, Steven G⋅Schroeder, S.G.⋅Liles, M.R.⋅Liles, Mark R⋅Griffin, Matt J⋅Griffin, M.J.⋅Lawrence, M.L. and Lawrence, Mark LGenome announcements, vol. 4, (no. 3), 2016-May-26.
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Draft Genome Sequence of Pseudomonas mosselii Gil3, Isolated from Catfish and Antagonistic against Hypervirulent Aeromonas hydrophilaZhang, Dunhua⋅Xu, De-Hai⋅Qiu, Junqiang⋅Rasmussen-Ivey, Cody R⋅Liles, Mark R and Beck, Benjamin HGenome announcements, vol. 4, (no. 6), 2016-Nov-17.
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