Transition from Positive to Neutral in Mutation Fixation along with Continuing Rising Fitness in Thermal Adaptive Evolution
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Naoaki Ono | Chikara Furusawa | Tetsuya Yomo | Kotaro Mori | Toshihiko Kishimoto | C. Furusawa | N. Ono | T. Yomo | A. Kashiwagi | Shingo Suzuki | K. Mori | Bei-Wen Ying | T. Kishimoto | Shingo Suzuki | Akiko Kashiwagi | Masato Okubo | Leo Iijima | Makoto Tatsumi | Ayana Oyake | Tomomi Hashimoto | Moe Matsuo | Bei-Wen Ying | Tomomi Hashimoto | M. Tatsumi | Moe Matsuo | Leo Iijima | Ayana Oyake | Masato Okubo
[1] I. Matic,et al. Evolution of mutation rates in bacteria , 2006, Molecular microbiology.
[2] M. DePristo,et al. Missense meanderings in sequence space: a biophysical view of protein evolution , 2005, Nature Reviews Genetics.
[3] R. Lenski,et al. Evolution of high mutation rates in experimental populations of E. coli , 1997, Nature.
[4] D. Bartel,et al. One sequence, two ribozymes: implications for the emergence of new ribozyme folds. , 2000, Science.
[5] A. F. Bennett,et al. EVOLUTIONARY ADAPTATION TO TEMPERATURE. VII. EXTENSION OF THE UPPER THERMAL LIMIT OF ESCHERICHIA COLI , 1999, Evolution; international journal of organic evolution.
[6] Naoaki Ono,et al. Experimental optimization of probe length to increase the sequence specificity of high-density oligonucleotide microarrays , 2007, BMC Genomics.
[7] Josep M. Comeron,et al. A method for estimating the numbers of synonymous and nonsynonymous substitutions per site , 1995, Journal of Molecular Evolution.
[8] A. F. Bennett,et al. An experimental test of evolutionary trade-offs during temperature adaptation , 2007, Proceedings of the National Academy of Sciences.
[9] Hiroshi Shimizu,et al. An improved physico-chemical model of hybridization on high-density oligonucleotide microarrays , 2008, Bioinform..
[10] K. Aldape,et al. A model of molecular interactions on short oligonucleotide microarrays , 2003, Nature Biotechnology.
[11] Anthony D Long,et al. Evolutionary changes in heat-inducible gene expression in lines of Escherichia coli adapted to high temperature. , 2003, Physiological genomics.
[12] Jonathan Weissman,et al. Molecular Chaperones and Protein Quality Control , 2006, Cell.
[13] F. Taddei,et al. Role of mutator alleles in adaptive evolution , 1997, Nature.
[14] Laurent Duret,et al. Evolution of synonymous codon usage in metazoans. , 2002, Current opinion in genetics & development.
[15] M. Nei,et al. Simple methods for estimating the numbers of synonymous and nonsynonymous nucleotide substitutions. , 1986, Molecular biology and evolution.
[16] T. Jukes,et al. The neutral theory of molecular evolution. , 2000, Genetics.
[17] John E Mittler,et al. EVOLUTIONARY ADAPTATION TO TEMPERATURE. I. FITNESS RESPONSES OF ESCHERICHIA COLI TO CHANGES IN ITS THERMAL ENVIRONMENT , 1992, Evolution; international journal of organic evolution.
[18] H. Ochman,et al. Chromosomal Changes during Experimental Evolution in Laboratory Populations of Escherichia coli , 1999, Journal of bacteriology.
[19] M. DePristo,et al. Mutational reversions during adaptive protein evolution. , 2007, Molecular biology and evolution.
[20] Takao Suzuki,et al. Inherent characteristics of gene expression for buffering environmental changes without the corresponding transcriptional regulations , 2006, Biophysics.
[21] Hiroshi Horikawa,et al. Whole-genome analyses reveal genetic instability of Acetobacter pasteurianus , 2009, Nucleic acids research.
[22] F. Hartl,et al. Molecular Chaperones in the Cytosol: from Nascent Chain to Folded Protein , 2002, Science.
[23] Jeffrey E. Barrick,et al. Genome evolution and adaptation in a long-term experiment with Escherichia coli , 2009, Nature.
[24] P. Schuster,et al. IR-98-039 / April Continuity in Evolution : On the Nature of Transitions , 1998 .
[25] A F Bennett,et al. Genetic architecture of thermal adaptation in Escherichia coli. , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[26] Masatoshi Nei,et al. Selectionism and neutralism in molecular evolution. , 2005, Molecular biology and evolution.
[27] Thomas Nyström,et al. Genomic buffering mitigates the effects of deleterious mutations in bacteria , 2005, Nature Genetics.
[28] S. Frey,et al. Thermal adaptation of soil microbial respiration to elevated temperature. , 2008, Ecology letters.
[29] H. Mori,et al. Regulation of the heat-shock response in bacteria. , 1993, Annual review of microbiology.
[30] Richard E. Lenski,et al. Rates of DNA Sequence Evolution in Experimental Populations of Escherichia coli During 20,000 Generations , 2003, Journal of Molecular Evolution.
[31] O. Berg,et al. Selection intensity for codon bias and the effective population size of Escherichia coli. , 1996, Genetics.
[32] Valeria Souza,et al. Stress-Induced Mutagenesis in Bacteria , 2003, Science.
[33] K. Holsinger. The neutral theory of molecular evolution , 2004 .
[34] H. Steen,et al. Timing of initiation of chromosome replication in individual Escherichia coli cells. , 1986, The EMBO journal.
[35] R. Lenski,et al. Dynamics of adaptation and diversification: a 10,000-generation experiment with bacterial populations. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[36] M. Kimura,et al. Genetic variability and effective population size when local extinction and recolonization of subpopulations are frequent. , 1980, Proceedings of the National Academy of Sciences of the United States of America.
[37] B. Palsson,et al. Parallel adaptive evolution cultures of Escherichia coli lead to convergent growth phenotypes with different gene expression states. , 2005, Genome research.
[38] B. Wanner,et al. One-step inactivation of chromosomal genes in Escherichia coli K-12 using PCR products. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[39] J. Drake,et al. Rates of spontaneous mutation. , 1998, Genetics.
[40] Dan S. Tawfik,et al. Chaperonin overexpression promotes genetic variation and enzyme evolution , 2009, Nature.
[41] Tetsuya Yomo,et al. Construction of Escherichia coli gene expression level perturbation collection. , 2009, Metabolic engineering.
[42] Anu Raghunathan,et al. Comparative genome sequencing of Escherichia coli allows observation of bacterial evolution on a laboratory timescale , 2006, Nature Genetics.
[43] Tobias Warnecke,et al. GroEL dependency affects codon usage—support for a critical role of misfolding in gene evolution , 2010, Molecular systems biology.
[44] N. Moran,et al. Calibrating bacterial evolution. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[45] Hiroshi Shimizu,et al. Model-based analysis of non-specific binding for background correction of high-density oligonucleotide microarrays , 2009, Bioinform..