Mannitol-1-phosphate dehydrogenase activity in Ectocarpus siliculosus, a key role for mannitol synthesis in brown algae
暂无分享,去创建一个
A. Groisillier | T. Tonon | C. Boyen | S. Dittami | G. Michel | S. Rousvoal
[1] T. Tonon,et al. Diurnal oscillations of metabolite abundances and gene analysis provide new insights into central metabolic processes of the brown alga Ectocarpus siliculosus. , 2010, The New phytologist.
[2] T. Tonon,et al. Central and storage carbon metabolism of the brown alga Ectocarpus siliculosus: insights into the origin and evolution of storage carbohydrates in Eukaryotes. , 2010, The New phytologist.
[3] Susana M. Coelho,et al. A sequence-tagged genetic map for the brown alga Ectocarpus siliculosus provides large-scale assembly of the genome sequence. , 2010, The New phytologist.
[4] D. Power,et al. MARINE-EXPRESS: taking advantage of high throughput cloning and expression strategies for the post-genomic analysis of marine organisms , 2010, Microbial cell factories.
[5] Corinne Da Silva,et al. The Ectocarpus genome and the independent evolution of multicellularity in brown algae , 2010, Nature.
[6] G. Hoarau,et al. An Expressed Sequence Tag Analysis of the Intertidal Brown Seaweeds Fucus serratus (L.) and F. vesiculosus (L.) (Heterokontophyta, Phaeophyceae) in Response to Abiotic Stressors , 2010, Marine Biotechnology.
[7] P. Rouzé,et al. Global expression analysis of the brown alga Ectocarpus siliculosus (Phaeophyceae) reveals large-scale reprogramming of the transcriptome in response to abiotic stress , 2009, Genome Biology.
[8] A. Salamov,et al. Green Evolution and Dynamic Adaptations Revealed by Genomes of the Marine Picoeukaryotes Micromonas , 2009, Science.
[9] T. Tonon,et al. Whole genome survey of the glutathione transferase family in the brown algal model Ectocarpus siliculosus. , 2008, Marine genomics.
[10] T. Tonon,et al. Normalisation genes for expression analyses in the brown alga model Ectocarpus siliculosus , 2008, BMC Molecular Biology.
[11] F. Kawai,et al. Cloning, expression and purification of cytochrome c(6) from the brown alga Hizikia fusiformis and complete X-ray diffraction analysis of the structure. , 2008, Acta crystallographica. Section F, Structural biology and crystallization communications.
[12] A. Groisillier,et al. New members of the glutathione transferase family discovered in red and brown algae. , 2008, The Biochemical journal.
[13] Bela H. Buck,et al. The genus Laminaria sensu lato : recent insights and developments , 2008 .
[14] C. Payri,et al. Alginate, mannitol, phenolic compounds and biological activities of two range-extending brown algae, Sargassum mangarevense and Turbinaria ornata (Phaeophyta: Fucales), from Tahiti (French Polynesia) , 2008, Journal of Applied Phycology.
[15] Susana M. Coelho,et al. Development and physiology of the brown alga Ectocarpus siliculosus: two centuries of research. , 2007, The New phytologist.
[16] C. Ho,et al. ANALYSES OF EXPRESSED SEQUENCE TAGS FROM SARGASSUM BINDERI (PHAEOPHYTA) 1 , 2007 .
[17] P. Solomon,et al. Decoding the mannitol enigma in filamentous fungi. , 2007, Trends in microbiology.
[18] H. Vélëz,et al. Mannitol metabolism in the phytopathogenic fungus Alternaria alternata. , 2007, Fungal genetics and biology : FG & B.
[19] J. West,et al. Ecophysiological performance of the primitive red alga Dixoniella grisea (Rhodellophyceae) to irradiance, temperature and salinity stress: growth responses and the osmotic role of mannitol , 2007 .
[20] U. Karsten,et al. Biochemical characterization of mannitol metabolism in the unicellular red alga Dixoniella grisea (Rhodellophyceae) , 2006 .
[21] Erwan Corre,et al. IDENTIFICATION OF STRESS GENE TRANSCRIPTS IN LAMINARIA DIGITATA (PHAEOPHYCEAE) PROTOPLAST CULTURES BY EXPRESSED SEQUENCE TAG ANALYSIS 1 , 2005 .
[22] K. Iwamoto,et al. Salt-Regulated Mannitol Metabolism in Algae , 2005, Marine Biotechnology.
[23] F. Studier,et al. Protein production by auto-induction in high density shaking cultures. , 2005, Protein expression and purification.
[24] D. Scornet,et al. PROPOSAL OF ECTOCARPUS SILICULOSUS (ECTOCARPALES, PHAEOPHYCEAE) AS A MODEL ORGANISM FOR BROWN ALGAL GENETICS AND GENOMICS 1,2 , 2004 .
[25] K. Iwamoto,et al. Characterization of Salt-Regulated Mannitol-1-Phosphate Dehydrogenase in the Red Alga Caloglossa continua1 , 2003, Plant Physiology.
[26] K. Katoh,et al. MAFFT: a novel method for rapid multiple sequence alignment based on fast Fourier transform. , 2002, Nucleic acids research.
[27] K. Iwamoto,et al. Purification and Characterization of Mannitol-l-Phosphatase in the Red Alga Caloglossa continua (Ceramiales, Rhodophyta) , 2001, Marine Biotechnology.
[28] G. Labesse,et al. Deciphering protein sequence information through hydrophobic cluster analysis (HCA): current status and perspectives , 1997, Cellular and Molecular Life Sciences CMLS.
[29] J. West,et al. Characterization of mannitol metabolism in the mangrove red algaCaloglossa leprieurii (Montagne) J.Agardh , 1997, Planta.
[30] D. Schmatz. The mannitol cycle in Eimeria , 1997, Parasitology.
[31] D. M. Pharr,et al. Mannitol metabolism in plants: a method for coping with stress , 1996 .
[32] A M Lesk,et al. NAD-binding domains of dehydrogenases. , 1995, Current opinion in structural biology.
[33] A. Mostaert,et al. Inorganic ions and mannitol in the red alga Caloglossa leprieurii (Ceramiales, Rhodophyta): Response to salinity change , 1995 .
[34] S Kaplan,et al. Cloning, nucleotide sequence and characterization of the mannitol dehydrogenase gene from Rhodobacter sphaeroides. , 1993, Journal of general microbiology.
[35] A. Mostaert,et al. Mannitol in the Red Algal Genus Caloglossa (Harvey) J. Agardh , 1992 .
[36] D. Thomas,et al. Differences in osmoacclimation between sporophytes and gametophytes of the brown alga Ectocarpus siliculosus , 1991 .
[37] D. Thomas,et al. Salt Tolerance of Ectocarpus siliculosus (Dillw.) Lyngb.: Comparison of Gametophytes, Sporophytes and Isolates of Different Geographic Origin , 1991 .
[38] W. Jiang,et al. Corrected sequence of the mannitol (mtl) operon in Escherichia coli , 1990, Molecular microbiology.
[39] G O Kirst,et al. Salinity Tolerance of Eukaryotic Marine Algae , 1990 .
[40] R. Reed,et al. Turnover of the Intracellular Mannitol Pool of Fucus spiralis L. (Fucales, Phaeophyta) during Osmotic Shock , 1989 .
[41] D. F. E. Richter,et al. d-Mannitol dehydrogenase and d-mannitol-1-phosphate dehydrogenase in Platymonas subcordiformis: some characteristics and their role in osmotic adaptation , 1987, Planta.
[42] R. Reed,et al. The physiological significance of mannitol accumulation in brown algae: the role of mannitol as a compatible cytoplasmic solute , 1985 .
[43] R. Reed,et al. The osmotic role of mannitol in the Phaeophyta: an appraisal , 1985 .
[44] J. A. Hellebust. Effect of salinity on photosynthesis and mannitol synthesis in the green flagellate Platymonas suecica , 1976 .
[45] G. Kirst. Beziehungen zwischen mannitkonzentration und osmotischer belastung bei der brackwasseralge Platymonas subcordiformisHazen , 1975 .
[46] Tsuneo Watanabe,et al. Enzymes involved in the last steps of the biosynthesis of mannitol in brown algae , 1972 .
[47] K. Nisizawa,et al. Pathway of mannitol formation during photosynthesis in brown algae , 1969 .
[48] K. Nisizawa,et al. INCORPORATION OF RADIOACTIVE CARBON FROM H14CO3−INTO SUGAR CONSTITUENTS BY A BROWN ALGA, EISENIA BICYCLIS, DURING PHOTOSYNTHESIS AND ITS FATE IN THE DARK, , 1966 .
[49] Jeroen Hugenholtz,et al. Mannitol production by lactic acid bacteria: a review , 2002 .
[50] J. West,et al. Characterization of mannitol metabolism in the mangrove red alga Caloglossa leprieurii (Montag , 1997 .
[51] U. Karsten,et al. Ecophysiological Studies on Six Species of the Mangrove Red Algal Genus Caloglossa , 1993 .
[52] C. Nelson,et al. THE PHYSIOLOGICAL SIGNIFICANCE OF LDH-X , 1975 .