The Smallest Known Genomes of Multicellular and Toxic Cyanobacteria: Comparison, Minimal Gene Sets for Linked Traits and the Evolutionary Implications
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Uwe John | Gernot Glöckner | Maik Friedel | A. Cembella | G. Glöckner | U. John | A. M. Plominsky | Allan Cembella | Karina Stucken | A. Murillo | K. Soto-Liebe | J. J. Fuentes-Valdes | Maik Friedel | M. Vásquez | Karina Stucken | Alejandro A. Murillo | Katia Soto-Liebe | Juan J. Fuentes-Valdés | Alvaro M. Plominsky | Mónica Vásquez | Alvaro M Plominsky
[1] R. Haselkorn,et al. Heterocyst-Specific Expression of patB, a Gene Required for Nitrogen Fixation in Anabaena sp. Strain PCC 7120 , 2003, Journal of bacteriology.
[2] E. Lander,et al. Genomic mapping by fingerprinting random clones: a mathematical analysis. , 1988, Genomics.
[3] S. Azevedo,et al. The first evidence of paralytic shellfish toxins in the fresh water cyanobacterium Cylindrospermopsis raciborskii, isolated from Brazil. , 1999, Toxicon : official journal of the International Society on Toxinology.
[4] K. Konstantinidis,et al. Genomic insights that advance the species definition for prokaryotes. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[5] Paul G Falkowski,et al. Genome evolution in cyanobacteria: The stable core and the variable shell , 2008, Proceedings of the National Academy of Sciences.
[6] Michael Y. Galperin,et al. The cyanobacterial genome core and the origin of photosynthesis , 2006, Proceedings of the National Academy of Sciences.
[7] S. Laurent,et al. Heterocyst differentiation and pattern formation in cyanobacteria: a chorus of signals , 2006, Molecular microbiology.
[8] M. Méndez,et al. Toxicity phenotype does not correlate with phylogeny of Cylindrospermopsis raciborskii strains. , 2009, Systematic and applied microbiology.
[9] L. Llewellyn. Saxitoxin, a Toxic Marine Natural Product that Targets a Multitude of Receptors , 2006 .
[10] K. Awai,et al. Identification of the glycosyl transferase required for synthesis of the principal glycolipid characteristic of heterocysts of Anabaena sp. strain PCC 7120. , 2007, FEMS microbiology letters.
[11] M. Ohmori,et al. NrrA, a nitrogen‐responsive response regulator facilitates heterocyst development in the cyanobacterium Anabaena sp. strain PCC 7120 , 2006, Molecular microbiology.
[12] A. Vieira,et al. RELEASE OF CARBOHYDRATES AND PROTEINS BY A SUBTROPICAL STRAIN OF RAPHIDIOPSIS BROOKII (CYANOBACTERIA) ABLE TO PRODUCE SAXITOXIN AT THREE NITRATE CONCENTRATIONS 1 , 2009, Journal of phycology.
[13] S. Tabata,et al. Complete Genomic Structure of the Bloom-forming Toxic Cyanobacterium Microcystis aeruginosa NIES-843 , 2008, DNA research : an international journal for rapid publication of reports on genes and genomes.
[14] Jamie Bartram,et al. Toxic Cyanobacteria in Water: a Guide to Their Public Health Consequences, Monitoring and Management Chapter 2. Cyanobacteria in the Environment 2.1 Nature and Diversity 2.1.1 Systematics , 2022 .
[15] Z. Mohamed. First report of toxic Cylindrospermopsis raciborskii and Raphidiopsis mediterranea (Cyanoprokaryota) in Egyptian fresh waters. , 2007, FEMS microbiology ecology.
[16] J. D. Parsons,et al. Miropeats: graphical DNA sequence comparisons , 1995, Comput. Appl. Biosci..
[17] M. Ohmori,et al. Group 3 sigma factor gene, sigJ, a key regulator of desiccation tolerance, regulates the synthesis of extracellular polysaccharide in cyanobacterium Anabaena sp. strain PCC 7120 , 2007, DNA research : an international journal for rapid publication of reports on genes and genomes.
[18] W. Buikema,et al. The role of HetN in maintenance of the heterocyst pattern in Anabaena sp. PCC 7120 , 2001, Molecular microbiology.
[19] N. Lagos,et al. The effect of temperature on growth and production of paralytic shellfish poisoning toxins by the cyanobacterium Cylindrospermopsis raciborskii C10. , 2004, Toxicon : official journal of the International Society on Toxinology.
[20] Jason Raymond,et al. Integrating Markov clustering and molecular phylogenetics to reconstruct the cyanobacterial species tree from conserved protein families. , 2008, Molecular biology and evolution.
[21] J. W. Golden,et al. hetL Overexpression Stimulates Heterocyst Formation in Anabaena sp. Strain PCC 7120 , 2002, Journal of bacteriology.
[22] Xu-Dong Xu,et al. Role for hetC in the Transition to a Nondividing State during Heterocyst Differentiation inAnabaena sp , 2001, Journal of bacteriology.
[23] Jindong Zhao,et al. CcbP, a calcium-binding protein from Anabaena sp. PCC 7120, provides evidence that calcium ions regulate heterocyst differentiation. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[24] B. Neilan,et al. Characterization of the Gene Cluster Responsible for Cylindrospermopsin Biosynthesis , 2007, Applied and Environmental Microbiology.
[25] D. Crook,et al. Genomic islands: tools of bacterial horizontal gene transfer and evolution , 2008, FEMS microbiology reviews.
[26] P Green,et al. Base-calling of automated sequencer traces using phred. II. Error probabilities. , 1998, Genome research.
[27] Paula Tamagnini,et al. Cyanobacterial hydrogenases: diversity, regulation and applications. , 2007, FEMS microbiology reviews.
[28] Maureen L. Coleman,et al. Genomic Islands and the Ecology and Evolution of Prochlorococcus , 2006, Science.
[29] Xudong Xu,et al. A gene cluster that regulates both heterocyst differentiation and pattern formation in Anabaena sp. strain PCC 7120 , 2007, Molecular microbiology.
[30] R. Haselkorn,et al. Characterization of a gene controlling heterocyst differentiation in the cyanobacterium Anabaena 7120. , 1991, Genes & development.
[31] T. Thiel,et al. cyanobacterium Anabaena variabilis . Mo-dependent nitrogenase in the Characterization of genes for a second , 1997 .
[32] A. Muro-Pastor,et al. Nitrogen Control in Cyanobacteria , 2001, Journal of bacteriology.
[33] H. Yoon,et al. Heterocyst pattern formation controlled by a diffusible peptide. , 1998, Science.
[34] Y. Jeon,et al. Biosynthetic Intermediate Analysis and Functional Homology Reveal a Saxitoxin Gene Cluster in Cyanobacteria , 2008, Applied and Environmental Microbiology.
[35] J. Sugiyama,et al. Detection of Seven Major Evolutionary Lineages in Cyanobacteria Based on the 16S rRNA Gene Sequence Analysis with New Sequences of Five Marine Synechococcus Strains , 1999, Journal of Molecular Evolution.
[36] M. Ohmori,et al. Genome-wide expression analysis of the responses to nitrogen deprivation in the heterocyst-forming cyanobacterium Anabaena sp. strain PCC 7120. , 2003, DNA research : an international journal for rapid publication of reports on genes and genomes.
[37] B. Neilan,et al. BMC Biochemistry BioMed Central , 2008 .
[38] S. Tabata,et al. Clustered genes required for synthesis and deposition of envelope glycolipids in Anabaena sp. strain PCC 7120 , 2005, Molecular microbiology.
[39] R. Haselkorn,et al. The patA gene product, which contains a region similar to CheY of Escherichia coli, controls heterocyst pattern formation in the cyanobacterium Anabaena 7120. , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[40] D. J. De Marais,et al. Evolution. When did photosynthesis emerge on Earth? , 2000, Science.
[41] J. W. Golden,et al. Different functions of HetR, a master regulator of heterocyst differentiation in Anabaena sp. PCC 7120, can be separated by mutation. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[42] S. Oishi,et al. Simultaneous production of homoanatoxin-a, anatoxin-a, and a new non-toxic 4-hydroxyhomoanatoxin-a by the cyanobacterium Raphidiopsis mediterranea Skuja. , 2003, Toxicon : official journal of the International Society on Toxinology.
[43] H. Bolhuis,et al. Horizontal transfer of the nitrogen fixation gene cluster in the cyanobacterium Microcoleus chthonoplastes , 2010, The ISME Journal.
[44] D. D. Marais,et al. When Did Photosynthesis Emerge on Earth? , 2000, Science.
[45] 富谷 朗子. The evolutionary diversification of cyanobacteria : Molecular-phylogenetic and paleontological perspectives , 2002 .
[46] Yongding Liu,et al. FIRST REPORT OF THE CYANOTOXINS CYLINDROSPERMOPSIN AND DEOXYCYLINDROSPERMOPSIN FROM RAPHIDIOPSIS CURVATA (CYANOBACTERIA) , 2001 .
[47] S. Tabata,et al. Clustered Genes Required for the Synthesis of Heterocyst Envelope Polysaccharide in Anabaena sp. Strain PCC 7120 , 2005, Journal of bacteriology.
[48] L. Hoffmann,et al. Polyphyly of true branching cyanobacteria (Stigonematales). , 2004, International journal of systematic and evolutionary microbiology.
[49] Andrew C. Tolonen,et al. Highly plastic genome of Microcystis aeruginosa PCC 7806, a ubiquitous toxic freshwater cyanobacterium , 2008, BMC Genomics.
[50] Manesh Shah,et al. Genome divergence in two Prochlorococcus ecotypes reflects oceanic niche differentiation , 2003, Nature.
[51] J. Meeks,et al. Global Gene Expression Patterns of Nostoc punctiforme in Steady-State Dinitrogen-Grown Heterocyst-Containing Cultures and at Single Time Points during the Differentiation of Akinetes and Hormogonia , 2007, Journal of bacteriology.
[52] A. Humpage,et al. Cyanobacterial (blue‐green algal) toxins in water supplies: Cylindrospermopsins , 2006, Environmental toxicology.
[53] B. Neilan,et al. TWO MORPHOLOGICAL FORMS OF CYLINDROSPERMOPSIS RACIBORSKII (CYANOBACTERIA) ISOLATED FROM SOLOMON DAM, PALM ISLAND, QUEENSLAND , 1999 .
[54] P. Green,et al. Base-calling of automated sequencer traces using phred. I. Accuracy assessment. , 1998, Genome research.
[55] S. Miyagishima,et al. Identification of cyanobacterial cell division genes by comparative and mutational analyses , 2005, Molecular microbiology.
[56] Wen-Li Chen,et al. hetR and patS, two genes necessary for heterocyst pattern formation, are widespread in filamentous nonheterocyst-forming cyanobacteria. , 2009, Microbiology.
[57] Enno Ohlebusch,et al. Replacing suffix trees with enhanced suffix arrays , 2004, J. Discrete Algorithms.
[58] Judit Padisák,et al. Cylindrospermopsis raciborskii (Woloszynska) Seenayya et Subba Raju, an expanding, highly adaptive cyanobacterium : worldwide distribution and review of its ecology , 1997 .