ORF cDNAクローンを検索してください

検索サポート

以下のような検索ワードを入力できます:

  • Entrez Gene ID (e.g. 7157)
  • gene symbol (e.g. TP53)
  • gene name (e.g. tumor protein p53)
  • gene synonyms (e.g. FLJ92943)
  • Ensembl ID (e.g. ENSG0000141510)
  • Accession No. (e.g. NM_000546)
  • 種名は、キーワードの後に ”キーワード[species:$species]” という形式で入力できます。ここで、$speciesは種の名称(ヒトやラットなど)、または分類群id (9606など)を入力します。

さらに検索するには こちらをクリック.


Arabidopsis thaliana (thale cress)


pyridoxal 5'-phosphate salvage I indole-3-acetate activation I
indole-3-acetate biosynthesis II brassinosteroid biosynthesis II
superpathway of choline biosynthesis superpathway of fatty acid biosynthesis II (plant)
fatty acid elongation -- saturated very long chain fatty acid biosynthesis I
poly-hydroxy fatty acids biosynthesis phosphatidylglycerol biosynthesis II (non-plastidic)
plant sterol biosynthesis II inosine-5'-phosphate biosynthesis II
adenine and adenosine salvage II guanine and guanosine salvage II
superpathway of polyamine biosynthesis putrescine biosynthesis IV
traumatin and (Z)-3-hexen-1-yl acetate biosynthesis glucosinolate biosynthesis from phenylalanine
glucosinolate biosynthesis from pentahomomethionine sinapate ester biosynthesis
luteolin biosynthesis 2,3-cis-flavanols biosynthesis
methylquercetin biosynthesis lipid-dependent phytate biosynthesis II (via Ins(1,3,4)P3)
superpathway of lipid-dependent phytate biosynthesis lutein biosynthesis
phytol salvage pathway phytyl diphosphate biosynthesis
lupeol biosynthesis arabidiol biosynthesis
allantoin degradation to glyoxylate II spermine and spermidine degradation III
urate degradation to allantoin I alanine degradation III
methionine degradation II phenylalanine degradation III
glycolate and glyoxylate degradation II ceramide degradation
purine nucleotides degradation I (plants) superpathway of guanosine nucleotides degradation (plants)
phytate degradation I pentose phosphate pathway (oxidative branch) I
thiazole biosynthesis III (eukaryotes) seleno-amino acid biosynthesis
pyrimidine deoxyribonucleotides de novo biosynthesis I superpathway of anaerobic sucrose degradation
pyrimidine nucleobases salvage I sucrose biosynthesis II
UDP-D-galactose biosynthesis superpathway of citrulline metabolism
indole-3-acetate biosynthesis I phosphatidylcholine acyl editing
alpha-linolenate biosynthesis omega- hydroxylation of laurate
26,27-dehydrozymosterol metabolism benzoate biosynthesis I (CoA-dependent, beta-oxidative)
benzoate biosynthesis III (CoA-dependent, non-beta-oxidative) flavonoid biosynthesis (in equisetum)
resveratrol biosynthesis benzoate degradation II (aerobic and anaerobic)
D-serine degradation very long chain fatty acid biosynthesis II
L-Ndelta-acetylornithine biosynthesis gluconeogenesis I
molybdenum cofactor biosynthesis diacylglycerol biosynthesis (PUFA enrichment in oilseed)
biotin-carboxyl carrier protein assembly indole-3-acetate degradation V
selenate reduction anthocyanidin acylglucoside and acylsambubioside biosynthesis
GABA shunt phospholipid remodeling (phosphatidylcholine, yeast)
D-myo-inositol (1,3,4)-trisphosphate biosynthesis ursolate biosynthesis
caffeoylglucarate biosynthesis salvigenin biosynthesis
chrysoeriol biosynthesis tryptophan degradation VI (via tryptamine)
guanosine deoxyribonucleotides de novo biosynthesis I guanosine ribonucleotides de novo biosynthesis
5-aminoimidazole ribonucleotide biosynthesis II phytochromobilin biosynthesis
UDP-D-galactose biosynthesis omega-hydroxylation of caprate and laurate
superpathway of L-citrulline metabolism chorismate biosynthesis from 3-dehydroquinate
glycine biosynthesis III phosphopantothenate biosynthesis I
phosphatidate metabolism, as a signaling molecule acetate conversion to acetyl-CoA
xylogalacturonan biosynthesis cutin biosynthesis
coenzyme A biosynthesis I pantothenate and coenzyme A biosynthesis II (plants)
phylloquinol biosynthesis L-ascorbate biosynthesis I (L-galactose pathway)
L-ascorbate biosynthesis II (L-gulose pathway) extended VTC2 cycle
folate transformations II ethylene biosynthesis I (plants)
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overview_MB_2022