The shifting paradigms of auxin biosynthesis.
暂无分享,去创建一个
[1] M. Sauer,et al. Auxin: simply complicated. , 2013, Journal of experimental botany.
[2] D. Yun,et al. Roles of YUCCAs in auxin biosynthesis and drought stress responses in plants , 2013, Plant signaling & behavior.
[3] Karin Ljung,et al. Auxin metabolism and homeostasis during plant development , 2013, Development.
[4] J. Noel,et al. Coordination of auxin and ethylene biosynthesis by the aminotransferase VAS1 , 2013, Nature chemical biology.
[5] S. Ojha,et al. The Biochemical Mechanism of Auxin Biosynthesis by an Arabidopsis YUCCA Flavin-containing Monooxygenase* , 2012, The Journal of Biological Chemistry.
[6] Qin-Bao Li,et al. Impaired Auxin Biosynthesis in the defective endosperm18 Mutant Is Due to Mutational Loss of Expression in the ZmYuc1 Gene Encoding Endosperm-Specific YUCCA1 Protein in Maize1[C][W][OA] , 2012, Plant Physiology.
[7] J. B. Reid,et al. Biosynthesis of the Halogenated Auxin, 4-Chloroindole-3-Acetic Acid1[W][OA] , 2012, Plant Physiology.
[8] Y. Mano,et al. The pathway of auxin biosynthesis in plants. , 2012, Journal of experimental botany.
[9] C. Hawes,et al. Alternative splicing of the auxin biosynthesis gene YUCCA4 determines its subcellular compartmentation. , 2012, The Plant journal : for cell and molecular biology.
[10] N. Kruger,et al. Pathways and fluxes: exploring the plant metabolic network. , 2012, Journal of experimental botany.
[11] Zhenbiao Yang,et al. A Small-Molecule Screen Identifies l-Kynurenine as a Competitive Inhibitor of TAA1/TAR Activity in Ethylene-Directed Auxin Biosynthesis and Root Growth in Arabidopsis[C][W] , 2011, Plant Cell.
[12] K. Ljung,et al. The Arabidopsis YUCCA1 Flavin Monooxygenase Functions in the Indole-3-Pyruvic Acid Branch of Auxin Biosynthesis[W] , 2011, Plant Cell.
[13] H. Kawaide,et al. The main auxin biosynthesis pathway in Arabidopsis , 2011, Proceedings of the National Academy of Sciences.
[14] J. Chory,et al. Conversion of tryptophan to indole-3-acetic acid by TRYPTOPHAN AMINOTRANSFERASES OF ARABIDOPSIS and YUCCAs in Arabidopsis , 2011, Proceedings of the National Academy of Sciences.
[15] A. Jha,et al. Functional characterization of the CKRC1/TAA1 gene and dissection of hormonal actions in the Arabidopsis root. , 2011, The Plant journal : for cell and molecular biology.
[16] J. B. Reid,et al. Reassessing the role of YUCCAs in auxin biosynthesis , 2011, Plant signaling & behavior.
[17] Thomas L. Slewinski,et al. vanishing tassel2 Encodes a Grass-Specific Tryptophan Aminotransferase Required for Vegetative and Reproductive Development in Maize[C][W][OA] , 2011, Plant Cell.
[18] J. Celenza,et al. Redirection of tryptophan metabolism in tobacco by ectopic expression of an Arabidopsis indolic glucosinolate biosynthetic gene. , 2011, Phytochemistry.
[19] A. Thompson,et al. Identification of the tomato ABA-deficient mutant sitiens as a member of the ABA-aldehyde oxidase gene family using genetic and genomic analysis , 2011, Plant Growth Regulation.
[20] S. Pollmann,et al. Indole-3-acetamide-dependent auxin biosynthesis: a widely distributed way of indole-3-acetic acid production? , 2010, European journal of cell biology.
[21] P. Chourey,et al. Sugar-hormone cross-talk in seed development: two redundant pathways of IAA biosynthesis are regulated differentially in the invertase-deficient miniature1 (mn1) seed mutant in maize. , 2010, Molecular plant.
[22] J. B. Reid,et al. Reassessing the Role of N-Hydroxytryptamine in Auxin Biosynthesis1[W][OA] , 2010, Plant Physiology.
[23] Yunde Zhao. Auxin biosynthesis and its role in plant development. , 2010, Annual review of plant biology.
[24] P. Chourey,et al. Sugar Levels Regulate Tryptophan-Dependent Auxin Biosynthesis in Developing Maize Kernels[C][W][OA] , 2010, Plant Physiology.
[25] J. Normanly. Approaching cellular and molecular resolution of auxin biosynthesis and metabolism. , 2010, Cold Spring Harbor perspectives in biology.
[26] N. Davies,et al. Auxin Biosynthesis in Pea: Characterization of the Tryptamine Pathway1[W][OA] , 2009, Plant Physiology.
[27] M. Estelle,et al. The TRANSPORT INHIBITOR RESPONSE2 Gene Is Required for Auxin Synthesis and Diverse Aspects of Plant Development1[C][W][OA] , 2009, Plant Physiology.
[28] K. Ljung,et al. Local auxin biosynthesis modulates gradient-directed planar polarity in Arabidopsis , 2009, Nature Cell Biology.
[29] Y. Kamiya,et al. Biochemical analyses of indole-3-acetaldoxime-dependent auxin biosynthesis in Arabidopsis , 2009, Proceedings of the National Academy of Sciences.
[30] J. Chandler,et al. Local auxin production: a small contribution to a big field , 2009, BioEssays : news and reviews in molecular, cellular and developmental biology.
[31] A. Gallavotti,et al. sparse inflorescence1 encodes a monocot-specific YUCCA-like gene required for vegetative and reproductive development in maize , 2008, Proceedings of the National Academy of Sciences.
[32] Yonghong Wang,et al. Arabidopsis indole synthase, a homolog of tryptophan synthase alpha, is an enzyme involved in the Trp-independent indole-containing metabolite biosynthesis. , 2008, Journal of integrative plant biology.
[33] S. Park,et al. Functional identification and expression of indole-3-pyruvate decarboxylase from Paenibacillus polymyxa E681. , 2008, Journal of microbiology and biotechnology.
[34] B. Bartel,et al. A new path to auxin. , 2008, Nature chemical biology.
[35] F. Matsuda,et al. The tryptophan pathway is involved in the defense responses of rice against pathogenic infection via serotonin production. , 2008, The Plant journal : for cell and molecular biology.
[36] Joanne Chory,et al. Rapid Synthesis of Auxin via a New Tryptophan-Dependent Pathway Is Required for Shade Avoidance in Plants , 2008, Cell.
[37] Anna N. Stepanova,et al. TAA1-Mediated Auxin Biosynthesis Is Essential for Hormone Crosstalk and Plant Development , 2008, Cell.
[38] E. Zdunek-Zastocka. Molecular cloning, characterization and expression analysis of three aldehyde oxidase genes from Pisum sativum L. , 2008, Plant physiology and biochemistry : PPB.
[39] A. A. Borges,et al. Cloning and Biochemical Characterization of ToFZY, a Tomato Gene Encoding a Flavin Monooxygenase Involved in a Tryptophan-dependent Auxin Biosynthesis Pathway , 2007, Journal of Plant Growth Regulation.
[40] H. Bohnert,et al. yucca6, a Dominant Mutation in Arabidopsis, Affects Auxin Accumulation and Auxin-Related Phenotypes1[W][OA] , 2007, Plant Physiology.
[41] Yunde Zhao,et al. Auxin Synthesized by the YUCCA Flavin Monooxygenases Is Essential for Embryogenesis and Leaf Formation in Arabidopsis[W] , 2007, The Plant Cell Online.
[42] Yunde Zhao,et al. Auxin biosynthesis by the YUCCA flavin monooxygenases controls the formation of floral organs and vascular tissues in Arabidopsis. , 2006, Genes & development.
[43] W. Park,et al. Auxin biosynthesis in maize. , 2006, Plant biology.
[44] J. V. Van Impe,et al. Transcriptional analysis of the Azospirillum brasilense indole-3-pyruvate decarboxylase gene and identification of a cis-acting sequence involved in auxin responsive expression. , 2005, Molecular plant-microbe interactions : MPMI.
[45] Masashi Yamada,et al. Sites and Regulation of Auxin Biosynthesis in Arabidopsis Roots , 2005, The Plant Cell Online.
[46] B. Bartel,et al. Auxin: regulation, action, and interaction. , 2005, Annals of botany.
[47] P. Naur,et al. Arabidopsis mutants in the C-S lyase of glucosinolate biosynthesis establish a critical role for indole-3-acetaldoxime in auxin homeostasis. , 2004, The Plant journal : for cell and molecular biology.
[48] Mariusz Kowalczyk,et al. Biosynthesis, conjugation, catabolism and homeostasis of indole-3-acetic acid in Arabidopsis thaliana , 2002, Plant Molecular Biology.
[49] J. Slovin,et al. The biosynthetic pathway for indole-3-acetic acid changes during tomato fruit development , 2002, Plant Growth Regulation.
[50] T. J. Cooke,et al. Indole-3-acetic acid biosynthesis in isolated axes from germinating bean seeds: The effect of wounding on the biosynthetic pathway , 2002, Plant Growth Regulation.
[51] H. Nonhebel,et al. Biosynthesis of indole-3-acetic acid in tomato shoots: Measurement, mass-spectral identification and incorporation of −2H from −2H2O into indole-3-acetic acid, d- and l-tryptophan, indole-3-pyruvate and tryptamine , 1991, Planta.
[52] T. Adachi,et al. Molecular cloning of the gene for indolepyruvate decarboxylase from Enterobacter cloacae , 1991, Molecular and General Genetics MGG.
[53] G. Sandberg,et al. Endogenous indoles and the biosynthesis and metabolism of indole-3-acetic acid in cultures of Rhizobium phaseoli , 1987, Planta.
[54] F. Amat-Guerri,et al. Production of 3-indoleacetic acid and 3-indolelactic acid in Azotobacter vinelandii cultures supplemented with tryptophan , 1987, Applied Microbiology and Biotechnology.
[55] U. Schiewer,et al. Tryptophan-dependent indoleacetic-acid biosynthesis from indole, demonstrated by double-labelling experiments , 1971, Planta.
[56] A. Winter. A hypothetical route for the biogenisis of IAA , 1966, Planta.
[57] J. Slovin,et al. Indole-3-acetic acid biosynthesis in Lemna gibba studied using stable isotope labeled anthranilate and tryptophan , 2004, Plant Growth Regulation.
[58] J. Slovin,et al. Two genetically discrete pathways convert tryptophan to auxin: more redundancy in auxin biosynthesis. , 2003, Trends in plant science.
[59] J. Ozga,et al. Pollination-, Development-, and Auxin-Specific Regulation of Gibberellin 3β-Hydroxylase Gene Expression in Pea Fruit and Seeds1 , 2003, Plant Physiology.
[60] J. Ecker,et al. Trp-dependent auxin biosynthesis in Arabidopsis: involvement of cytochrome P450s CYP79B2 and CYP79B3. , 2002, Genes & development.
[61] G. Sandberg,et al. Over-expression of an Arabidopsis gene encoding a glucosyltransferase of indole-3-acetic acid: phenotypic characterisation of transgenic lines. , 2002, The Plant journal : for cell and molecular biology.
[62] A. Müller,et al. Occurrence and formation of indole-3-acetamide in Arabidopsis thaliana , 2002, Planta.
[63] J. Slovin,et al. Indole-3-Acetic Acid Metabolism in Lemna gibbaUndergoes Dynamic Changes in Response to Growth Temperature1 , 2002, Plant Physiology.
[64] K. Ljung,et al. FLOOZY of petunia is a flavin mono-oxygenase-like protein required for the specification of leaf and flower architecture. , 2002, Genes & development.
[65] J. Chory,et al. A role for flavin monooxygenase-like enzymes in auxin biosynthesis. , 2001, Science.
[66] D. Galbraith,et al. CYP83B1, a Cytochrome P450 at the Metabolic Branch Point in Auxin and Indole Glucosinolate Biosynthesis in Arabidopsis , 2001, Plant Cell.
[67] J. Ouyang,et al. Indole-3-glycerol phosphate, a branchpoint of indole-3-acetic acid biosynthesis from the tryptophan biosynthetic pathway in Arabidopsis thaliana. , 2000, The Plant journal : for cell and molecular biology.
[68] B. Halkier,et al. Cytochrome P450 CYP79B2 from Arabidopsis Catalyzes the Conversion of Tryptophan to Indole-3-acetaldoxime, a Precursor of Indole Glucosinolates and Indole-3-acetic Acid* , 2000, The Journal of Biological Chemistry.
[69] W. Eisenreich,et al. Auxin biosynthesis in maize kernels. , 2000, Plant physiology.
[70] J. Celenza,et al. Arabidopsis cytochrome P450s that catalyze the first step of tryptophan-dependent indole-3-acetic acid biosynthesis. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[71] Bernard R. Glick,et al. Biochemical and Genetic Mechanisms Used by Plant Growth Promoting Bacteria , 1999 .
[72] M. Lambrecht,et al. Auxins Upregulate Expression of the Indole-3-Pyruvate Decarboxylase Gene in Azospirillum brasilense , 1999, Journal of bacteriology.
[73] Cohen,et al. An in vitro system from maize seedlings for tryptophan-independent indole-3-acetic acid biosynthesis , 1999, Plant physiology.
[74] J. Normanly,et al. Determination of indole-3-pyruvic acid levels in Arabidopsis thaliana by gas chromatography-selected ion monitoring-mass spectrometry. , 1998, Journal of chromatography. A.
[75] M. Caboche,et al. Higher activity of an aldehyde oxidase in the auxin-overproducing superroot1 mutant of Arabidopsis thaliana. , 1998, Plant physiology.
[76] J. Koga,et al. Structure and function of indolepyruvate decarboxylase, a key enzyme in indole-3-acetic acid biosynthesis. , 1995, Biochimica et biophysica acta.
[77] J. Slovin,et al. Rethinking Auxin Biosynthesis and Metabolism , 1995, Plant physiology.
[78] N. Sakurai,et al. Natural Occurrence of Indoleacetamide and Amidohydrolase Activity in Etiolated Aseptically-Grown Squash Seedlings , 1994 .
[79] G. Fink,et al. Arabidopsis thaliana auxotrophs reveal a tryptophan-independent biosynthetic pathway for indole-3-acetic acid. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[80] M. Kawaguchi,et al. The Identification of Indole-3-Acetic Acid and Indole-3-Acetamide in the Hypocotyls of Japanese Cherry , 1993 .
[81] T. J. Cooke,et al. Regulation of indole-3-acetic Acid biosynthetic pathways in carrot cell cultures. , 1992, Plant physiology.
[82] T. Adachi,et al. Purification and characterization of indolepyruvate decarboxylase. A novel enzyme for indole-3-acetic acid biosynthesis in Enterobacter cloacae. , 1992, The Journal of biological chemistry.
[83] J. Slovin,et al. Indole-3-Acetic Acid Biosynthesis in the Mutant Maize orange pericarp, a Tryptophan Auxotroph , 1991, Science.
[84] J. Slovin,et al. Stable Isotope Labeling, in Vivo, of d- and l-Tryptophan Pools in Lemna gibba and the Low Incorporation of Label into Indole-3-Acetic Acid. , 1991, Plant physiology.
[85] C. Camilleri,et al. The TR-DNA region carrying the auxin synthesis genes of the Agrobacterium rhizogenes agropine-type plasmid pRiA4: nucleotide sequence analysis and introduction into tobacco plants. , 1991, Molecular plant-microbe interactions : MPMI.
[86] N. Brisson,et al. High levels of tryptamine accumulation in transgenic tobacco expressing tryptophan decarboxylase. , 1990, Plant physiology.
[87] H. Nonhebel,et al. The measurement and mass spectral identification of indole-3-pyruvate from tomato shoots. , 1989, Biochemical and biophysical research communications.
[88] M. G. Neuffer,et al. Orange Pericarp in Maize: Filial Expression in a Maternal Tissue , 1989 .
[89] G. Fink,et al. Tryptophan-Requiring Mutants of the Plant Arabidopsis thaliana , 1988, Science.
[90] G. Sandberg,et al. Detection of abscisic acid, indole-3-acetic acid and indole-3-ethanol in seeds of Dalbergia dolichopetala , 1987 .
[91] T. Rausch,et al. A soluble protein factor from chinese cabbage converts indole-3-acetaldoxime to iaa , 1987 .
[92] C. Palm,et al. Nucleotide sequences of the Pseudomonas savastanoi indoleacetic acid genes show homology with Agrobacterium tumefaciens T-DNA. , 1985, Proceedings of the National Academy of Sciences of the United States of America.
[93] L. Comai,et al. Cloning characterization of iaaM, a virulence determinant of Pseudomonas savastanoi , 1982, Journal of bacteriology.
[94] I. Yamaguchi,et al. Characterization of plant growth substances in Citrus unshiu and their change in fruit development , 1975 .
[95] R. Gibson,et al. Biosynthesis and Metabolism of Indol-3yl-acetic Acid III. PARTIAL PURIFICATION AND PROPERTIES OF A TRYPTAMINE-FORMING L-TRYPTOPHAN DBCARBOXYLASE FROM TOMATO SHOOTS , 1972 .
[96] R. Gibson,et al. Biosynthesis and Metabolism of Indol-3yl-acetic acid II. IN VIVO EXPERIMENTS WITH 14C-LABELLED PRECURSORS OF IAA IN TOMATO AND BARLEY SHOOTS , 1972 .
[97] R. Gibson,et al. Biosynthesis and Metabolism of Indol-3yl-acetic Acid I. THE NATIVE INDOLES OF BARLEY AND TOMATO SHOOTS , 1972 .
[98] I. Yamaguchi,et al. Plant Growth Substances in the Young Fruit of Citrus unshiu , 1971 .
[99] T. C. Moore. Comparative net biosynthesis of indoleacetic acid from tryptophan in cell-free extracts of different parts of Pisum sativum plants , 1969 .
[100] T. C. Moore,et al. Synthesis of indoleacetic acid from tryptophan via indolepyruvic acid in cell-free extracts of pea seedlings. , 1968, Archives of biochemistry and biophysics.
[101] C. Darwin. Power of Movement in Plants , 1880 .