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Interaction between C1-microorganisms and plants: contribution to the global carbon cycle and microbial survival strategies in the phyllosphere.
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- Bioscience, Biotechnology & Biochemistry, 2023, v. 87, n. 1, p. 1, doi. 10.1093/bbb/zbac176
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- Article
Methanol production by reversed methylotrophy constructed in Escherichia coli.
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- Bioscience, Biotechnology & Biochemistry, 2020, v. 84, n. 5, p. 1062, doi. 10.1080/09168451.2020.1715202
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- Article
Pantothenate auxotrophy of Methylobacterium spp. isolated from living plants.
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- Bioscience, Biotechnology & Biochemistry, 2019, v. 83, n. 3, p. 569, doi. 10.1080/09168451.2018.1549935
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- Article
Expression of a codon-optimized Aspergillus niger pectin methylesterase gene in the methylotrophic yeast Candida boidinii.
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- Bioscience, Biotechnology & Biochemistry, 2014, v. 78, n. 4, p. 718, doi. 10.1080/09168451.2014.891936
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Lag-phase autophagy in the methylotrophic yeast Pichia pastoris.
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- Genes to Cells, 2009, v. 14, n. 7, p. 861, doi. 10.1111/j.1365-2443.2009.01316.x
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- Article
Methanol bioeconomy: promotion of rice crop yield in paddy fields with microbial cells prepared from natural gas‐derived C<sub>1</sub> compound.
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- Microbial Biotechnology, 2021, v. 14, n. 4, p. 1385, doi. 10.1111/1751-7915.13725
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- Article
Ethanol represses the expression of methanol-inducible genes via acetyl-CoA synthesis in the yeast Komagataella phaffii.
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- Scientific Reports, 2018, v. 8, n. 1, p. 1, doi. 10.1038/s41598-018-36732-2
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- Article
Novel function of Wsc proteins as a methanol-sensing machinery in the yeast P ichia pastoris.
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- Molecular Microbiology, 2017, v. 104, n. 2, p. 349, doi. 10.1111/mmi.13631
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- Article
Dominant Colonization and Inheritance of Methylobacterium sp. Strain OROl on Perilla Plants.
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- Bioscience, Biotechnology & Biochemistry, 2013, v. 77, n. 7, p. 1533, doi. 10.1271/bbb.130207
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- Article
Distribution of Methanotrophs in the Phyllosphere.
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- Bioscience, Biotechnology & Biochemistry, 2012, v. 76, n. 8, p. 1580, doi. 10.1271/bbb.120281
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- Article
Distribution of Pink-Pigmented Facultative Methylotrophs on Leaves of Vegetables.
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- Bioscience, Biotechnology & Biochemistry, 2012, v. 76, n. 3, p. 578, doi. 10.1271/bbb.110737
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- Article
Msn5p Is Involved in Formaldehyde Resistance but Not in Oxidative Stress Response in the Methylotrophic Yeast Candida boidinii.
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- Bioscience, Biotechnology & Biochemistry, 2012, v. 76, n. 2, p. 299, doi. 10.1271/bbb.110679
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- Article
The Peroxisomal Catalase Gene in the Methylotrophic Yeast Pichia methanolica.
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- Bioscience, Biotechnology & Biochemistry, 2010, v. 74, n. 8, p. 1733, doi. 10.1271/bbb.100329
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Molecular Characterization of Two Genes with High Similarity to the Dihydroxyacetone Synthase Gene in the Methylotrophic Yeast Pichia methanolica.
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- Bioscience, Biotechnology & Biochemistry, 2010, v. 74, n. 7, p. 1491, doi. 10.1271/bbb.100153
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- Article
Assimilation of Formaldehyde in Transgenic Plants Due to the Introduction of the Bacterial Ribulose Monophosphate Pathway Genes.
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- Bioscience, Biotechnology & Biochemistry, 2010, v. 74, n. 3, p. 627, doi. 10.1271/bbb.90847
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- Article
Activation of the Oxidative Stress Regulator PpYap1 through Conserved Cysteine Residues during Methanol Metabolism in the Yeast Pichia pastoris.
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- Bioscience, Biotechnology & Biochemistry, 2009, v. 73, n. 6, p. 1404, doi. 10.1271/bbb.90109
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Molecular Basis of Methanol-Inducible Gene Expression and Its Application in the Methylotrophic Yeast Candida boidinii.
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- Bioscience, Biotechnology & Biochemistry, 2009, v. 73, n. 4, p. 793, doi. 10.1271/bbb.80825
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The Physiological Role of the Ribulose Monophosphate Pathway in Bacteria and Archaea.
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- Bioscience, Biotechnology & Biochemistry, 2006, v. 70, n. 1, p. 10, doi. 10.1271/bbb.70.10
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- Article
Anaerobic Degradation of Aromatic Compounds by Magnetospirillum Strains: Isolation and Degradation Genes.
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- Bioscience, Biotechnology & Biochemistry, 2005, v. 69, n. 8, p. 1483, doi. 10.1271/bbb.69.1483
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The Pro-peptide of Stretomyces mobaraenis Transglutaminase Functions in cis and in trans to Mediate Efficient Secretion of Active Enzyme from Methylotrophic Yeasts.
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- Bioscience, Biotechnology & Biochemistry, 2004, v. 68, n. 10, p. 2058, doi. 10.1271/bbb.68.2058
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Roseomonas musae sp. nov., a new bacterium isolated from a banana phyllosphere.
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- Antonie van Leeuwenhoek, 2013, v. 103, n. 3, p. 617, doi. 10.1007/s10482-012-9845-5
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- Article
A Pichia pastoris single-cell biosensor for detection of enzymatically produced methanol.
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- Applied Microbiology & Biotechnology, 2018, v. 102, n. 16, p. 7017, doi. 10.1007/s00253-018-9144-9
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- Article
KaiC family proteins integratively control temperature‐dependent UV resistance in Methylobacterium extorquens AM1.
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- Environmental Microbiology Reports, 2018, v. 10, n. 6, p. 634, doi. 10.1111/1758-2229.12662
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- Article
Yeast Methylotrophy and Autophagy in a Methanol- Oscillating Environment on Growing Arabidopsis thaliana Leaves.
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- PLoS ONE, 2011, v. 6, n. 9, p. 1, doi. 10.1371/journal.pone.0025257
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- Article
Overexpression of an HPS/PHI fusion enzyme from Mycobacterium gastri in chloroplasts of geranium enhances its ability to assimilate and phytoremediate formaldehyde.
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- Biotechnology Letters, 2010, v. 32, n. 10, p. 1541, doi. 10.1007/s10529-010-0324-7
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- Article
Physiology of Methylotrophs Living in the Phyllosphere.
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- Microorganisms, 2021, v. 9, n. 4, p. 809, doi. 10.3390/microorganisms9040809
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- Article
Does Saccharomyces cerevisiae Require Specific Post-Translational Silencing against Leaky Translation of Hac1up?
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- Microorganisms, 2021, v. 9, n. 3, p. 620, doi. 10.3390/microorganisms9030620
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A Novel Moderately Thermophilic Facultative Methylotroph within the Class Alphaproteobacteria.
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- Microorganisms, 2021, v. 9, n. 3, p. 477, doi. 10.3390/microorganisms9030477
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- Article
Molecular characterization of Candida boidinii MIG1 and its role in the regulation of methanol-inducible gene expression.
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- Yeast, 2012, v. 29, n. 7, p. 293, doi. 10.1002/yea.2909
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- Article
Regulation of two distinct alcohol oxidase promoters in the methylotrophic yeast Pichia methanolica.
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- Yeast, 2006, v. 23, n. 1, p. 15, doi. 10.1002/yea.1334
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- Article
Molecular characterization of the glutathione-dependent formaldehyde dehydrogenase gene FLD1 from the methylotrophic yeast Pichia methanolica.
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- Yeast, 2004, v. 21, n. 5, p. 445, doi. 10.1002/yea.1110
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- Article
Alcohol dehydrogenases that catalyse methyl formate synthesis participate in formaldehyde detoxification in the methylotrophic yeast Candida boidinii.
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- Yeast, 2004, v. 21, n. 4, p. 341, doi. 10.1002/yea.1101
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- Article
Physiological role of the second alcohol oxidase gene MOD2 in the methylotrophic growth of Pichia methanolica.
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- Yeast, 2002, v. 19, n. 12, p. 1067, doi. 10.1002/yea.896
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- Article
Physiological role of the D-amino acid oxidase gene, DAO1, in carbon and nitrogen metabolism in the methylotrophic yeast Candida boidinii.
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- Yeast, 2000, v. 16, n. 13, p. 1217, doi. 10.1002/1097-0061(20000930)16:13<1217::AID-YEA616>3.0.CO;2-2
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Alcohol oxidase hybrid oligomers formed in vivo and in vitro.
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- Yeast, 1999, v. 15, n. 12, p. 1223, doi. 10.1002/(SICI)1097-0061(19990915)15:12<1223::AID-YEA450>3.0.CO;2-X
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- Article
Crystal structure of 3-hexulose-6-phosphate synthase, a member of the orotidine 5′-monophosphate decarboxylase suprafamily.
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- Proteins, 2010, v. 78, n. 16, p. 3488, doi. 10.1002/prot.22860
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- Article
Genomic organization and biochemistry of the ribulose monophosphate pathway and its application in biotechnology.
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- Applied Microbiology & Biotechnology, 2009, v. 84, n. 3, p. 407, doi. 10.1007/s00253-009-2120-7
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- Article
Bifunctional enzyme fusion of 3-hexulose-6-phosphate synthase and 6-phospho-3-hexuloisomerase.
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- Applied Microbiology & Biotechnology, 2007, v. 76, n. 2, p. 439, doi. 10.1007/s00253-007-1023-8
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- Article
Phosphoregulation of the transcription factor Mxr1 plays a crucial role in the concentration‐regulated methanol induction in Komagataella phaffii.
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- Molecular Microbiology, 2022, v. 118, n. 6, p. 683, doi. 10.1111/mmi.14994
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- Article
Assimilation, dissimilation, and detoxification of formaldehyde, a central metabolic intermediate of methylotrophic metabolism.
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- Chemical Record, 2005, v. 5, n. 6, p. 367, doi. 10.1002/tcr.20056
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- Article
Stress resistance and C1 metabolism involved in plant colonization of a methanotroph Methylosinus sp. B4S.
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- Archives of Microbiology, 2013, v. 195, n. 10/11, p. 717, doi. 10.1007/s00203-013-0922-6
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- Article
Formaldehyde activating enzyme (Fae) and hexulose-6-phosphate synthase (Hps) in Methanosarcina barkeri: a possible function in ribose-5-phosphate biosynthesis.
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- Archives of Microbiology, 2005, v. 184, n. 1, p. 41, doi. 10.1007/s00203-005-0008-1
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- Article
Methanol-inducible gene expression and heterologous protein production in the methylotrophic yeast Candida boidinii.
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- Biotechnology & Applied Biochemistry, 2009, v. 53, n. 2, p. 85, doi. 10.1042/BA20090030
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- Article
Metabolism-linked methylotaxis sensors responsible for plant colonization in Methylobacterium aquaticum strain 22A.
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- Frontiers in Microbiology, 2023, p. 1, doi. 10.3389/fmicb.2023.1258452
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- Article
Yeast Methylotrophy: Metabolism, Gene Regulation and Peroxisome Homeostasis.
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- International Journal of Microbiology, 2011, p. 1, doi. 10.1155/2011/101298
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Fatty acid composition of the methylotrophic yeast Komagataella phaffii grown under low‐ and high‐methanol conditions.
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- Yeast, 2021, v. 38, n. 10, p. 541, doi. 10.1002/yea.3655
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HxlR, a member of the DUF24 protein family, is a DNA-binding protein that acts as a positive regulator of the formaldehyde-inducible hxlAB operon in Bacillus subtilis.
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- Molecular Microbiology, 2005, v. 57, n. 2, p. 511, doi. 10.1111/j.1365-2958.2005.04702.x
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- Article