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生物種
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リソース名
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RRC ID
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タイトル
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ジャーナル
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公開日
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外部リンク
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シロイヌナズナ / 植物培養細胞・遺伝子
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rpc00008
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89203
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Identification of tyrosylprotein sulfotransferase in Arabidopsis.
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Proc Natl Acad Sci U S A |
2009-9-1 |
Pubmed
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シロイヌナズナ / 植物培養細胞・遺伝子
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pst13359
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87669
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DONGLE and DEFECTIVE IN ANTHER DEHISCENCE1 lipases are not essential for wound- and pathogen-induced jasmonate biosynthesis: redundant lipases contribute to jasmonate formation.
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Plant Physiol |
2010-5-1 |
Pubmed
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シロイヌナズナ / 植物培養細胞・遺伝子
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pda15507
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87359
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An anther-specific dihydroflavonol 4-reductase-like gene (DRL1) is essential for male fertility in Arabidopsis.
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New Phytol |
2009-1-1 |
Pubmed
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シロイヌナズナ / 植物培養細胞・遺伝子
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pda00687
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82734
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The Ca(2+) -dependent protein kinase CPK3 is required for MAPK-independent salt-stress acclimation in Arabidopsis.
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Plant J |
2010-8-1 |
Pubmed
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シロイヌナズナ / 植物培養細胞・遺伝子
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pda06259
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82616
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AtCYT-INV1, a neutral invertase, is involved in osmotic stress-induced inhibition on lateral root growth in Arabidopsis.
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Plant Mol Biol |
2007-7-1 |
Pubmed
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シロイヌナズナ / 植物培養細胞・遺伝子
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pda08234
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81246
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Cytosolic γ-glutamyl peptidases process glutathione conjugates in the biosynthesis of glucosinolates and camalexin in Arabidopsis.
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Plant Cell |
2011-6-1 |
Pubmed
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シロイヌナズナ / 植物培養細胞・遺伝子
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pda05432
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75841
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CYP707A3, a major ABA 8'-hydroxylase involved in dehydration and rehydration response in Arabidopsis thaliana.
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Plant J |
2006-4-1 |
Pubmed
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シロイヌナズナ / 植物培養細胞・遺伝子
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pst16228
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74828
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Leucoanthocyanidin Dioxygenase in Arabidopsis thaliana: characterization of mutant alleles and regulation by MYB-BHLH-TTG1 transcription factor complexes.
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Gene |
2011-9-15 |
Pubmed
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シロイヌナズナ / 植物培養細胞・遺伝子
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pst18302
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73021
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Reduced Dormancy5 encodes a protein phosphatase 2C that is required for seed dormancy in Arabidopsis.
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Plant Cell |
2014-11-1 |
Pubmed
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シロイヌナズナ / 植物培養細胞・遺伝子
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pda10343
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72028
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The Arabidopsis plastidic methionine sulfoxide reductase B proteins. Sequence and activity characteristics, comparison of the expression with plastidic methionine sulfoxide reductase A, and induction by photooxidative stress.
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Plant Physiol |
2005-6-1 |
Pubmed
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シロイヌナズナ / 植物培養細胞・遺伝子
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pda00113
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pda13232
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pda02701
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pda09379
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pda08837
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pda06713
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pda07676
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pda10641
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pda00597
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pda04959
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...
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72016
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Analysis of Arabidopsis glutathione-transferases in yeast.
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Phytochemistry |
2013-7-1 |
Pubmed
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シロイヌナズナ / 植物培養細胞・遺伝子
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pst08738
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pst12055
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70153
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Ex vivo processing for maturation of Arabidopsis KDEL-tailed cysteine endopeptidase 2 (AtCEP2) pro-enzyme and its storage in endoplasmic reticulum derived organelles.
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Plant Mol Biol |
2014-4-1 |
Pubmed
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シロイヌナズナ / 植物培養細胞・遺伝子
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pst19616
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pst16357
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65902
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COSY catalyses trans-cis isomerization and lactonization in the biosynthesis of coumarins.
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Nat Plants |
2019-10-1 |
Pubmed
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シロイヌナズナ / 植物培養細胞・遺伝子
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pda14908
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65665
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Structural features of the plant N-recognin ClpS1 and sequence determinants in its targets that govern substrate selection.
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FEBS Lett |
2021-6-1 |
Pubmed
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シロイヌナズナ / 植物培養細胞・遺伝子
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pda
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64076
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Yeast-based reporter assay system for identifying the requirements of intramembrane proteolysis by signal peptide peptidase of Arabidopsis thaliana.
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FEBS Open Bio |
2020-9-1 |
Pubmed
Full text
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シロイヌナズナ / 植物培養細胞・遺伝子
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pda06366
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63981
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The intracellular ROS accumulation in elicitor-induced immunity requires the multiple organelle-targeted Arabidopsis NPK1-related protein kinases.
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Plant Cell Environ |
2021-3-1 |
Pubmed
Full text
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シロイヌナズナ / 植物培養細胞・遺伝子
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pda03105
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63980
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Deciphering the Binding of Salicylic Acid to Arabidopsis thaliana Chloroplastic GAPDH-A1.
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Int J Mol Sci |
2020-6-30 |
Pubmed
Full text
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シロイヌナズナ / 植物培養細胞・遺伝子
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pda11967
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63975
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STARCH SYNTHASE5, a Noncanonical Starch Synthase-Like Protein, Promotes Starch Granule Initiation in Arabidopsis.
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Plant Cell |
2020-8-1 |
Pubmed
Full text
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シロイヌナズナ / 植物培養細胞・遺伝子
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rpc00008
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63920
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Identification of novel compounds that inhibit SnRK2 kinase activity by high-throughput screening.
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Biochem Biophys Res Commun |
2020-12-29 |
Pubmed
Full text
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シロイヌナズナ / 植物培養細胞・遺伝子
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pda00376
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55796
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Enhanced biosynthesis of CdS nanoparticles through Arabidopsis thaliana phytochelatin synthase-modified Escherichia coli with fluorescence effect in detection of pyrogallol and gallic acid.
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Talanta |
2019-4-1 |
Pubmed
Full text
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