Entry
Symbol
GLDH1, OsJ_32931
Name
(RefSeq) L-galactono-1,4-lactone dehydrogenase 1, mitochondrial
KO
Organism
osa Oryza sativa japonica (Japanese rice)
Pathway
osa00053 Ascorbate and aldarate metabolism
osa01110 Biosynthesis of secondary metabolites
Module
osa_M00114 Ascorbate biosynthesis, plants, fructose-6P => ascorbate
Brite
KEGG Orthology (KO) [BR:osa00001 ]
09100 Metabolism
09101 Carbohydrate metabolism
00053 Ascorbate and aldarate metabolism
4349749 (GLDH1)
Enzymes [BR:osa01000 ]
1. Oxidoreductases
1.3 Acting on the CH-CH group of donors
1.3.2 With a cytochrome as acceptor
1.3.2.3 L-galactonolactone dehydrogenase
4349749 (GLDH1)
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SSDB
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Motif
Motif
Other DBs
LinkDB
All DBs
Position
11:complement(join(2065131..2065298,2065560..2065700,2066458..2066860,2067025..2067207,2067321..2067571,2068570..2069175))
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AA seq
583 aa AA seq DB search
MRRLLLAGILRRASSSPSSHHHLHLVRALSASSPLPASDADLRKYAGYALLLLGCGAATY
YSFPLPPDALHKKAVPFKYAPLPDDLHAVSNWSATHEVHTRVLLQPDSLPALHDALAAAH
GECRKLRPLGSGLSPNGLALSRAGMVNLALMDKVLGVDAKKKTVTVQAGIRVAELVDALR
EHGLTLQNFASIREQQVGGIIQVGAHGTGARLPPIDEQVISMKLVTPAKGTIELSREKDP
DLFYLARCGLGGLGVVAEVTLQCVERHQLIEHTFVSNADEVKKNHKKWLSENKHIKYLWI
PYTDTVVVVQCNPPSRWRTPKFTSKYGKDEAIQHVRDLYHESLKKYRTKAESNDPEVDQL
SFTELRDRLLTLDPLDKDHVIRINKAEAEYWKKSEGYRMGWSDEILGFDCGGQQWVSETC
FPAGTLAKPNMKDLDYIEELLQLIEKEDIPAPAPIEQRWTACSRSPMSPASSSQEDDIFS
WVGIIMYLPTSDARQRKEITEEFFNYRSKTQTNLWDGYSAYEHWAKIEVPKDKDELAELQ
ARLRKRFPVDAYNKARMELDPNKVLSNAKLEKLFPVTEVQHEK
NT seq
1752 nt NT seq +upstream nt +downstream nt
atgcggcgcctcctcctcgccggcatcctccgccgcgcctcctcctccccttcctcccac
caccacctccaccttgtcagggcgctctccgcctcgtccccgctcccggcctccgacgcc
gacctccgcaagtacgccggctacgcgctcctcctcctcggctgcggcgccgccacctac
tactccttcccgcttccccccgacgcgctccacaagaaggccgtccccttcaagtacgcg
ccgctccccgacgacctccacgccgtctccaactggagcgccacccacgaggtccacacc
cgcgtcctcctccagcccgactccctccccgccctccacgacgcgctcgccgccgcccac
ggcgagtgccgcaagctcaggcccctcggctcgggcctgtcccccaatggcctcgcgctc
tcccgcgccggcatggtcaacctcgcgctcatggacaaggtgctcggcgtcgacgccaag
aagaagaccgtcaccgtgcaggccgggatacgcgtcgccgagcttgtcgacgcgctccgg
gagcatggtctcacgctgcagaacttcgcgtccattcgggagcagcaggtcggcggcatc
attcaggttggtgcccatggcactggtgcaagattgccaccaattgatgaacaagttatt
agcatgaaattggttacccctgccaaggggacaatagagttgtcaagggagaaggatcct
gatttattctatcttgctcgctgtggacttggtggccttggagttgtagcagaagttact
cttcaatgtgtggaaagacaccaacttattgaacacactttcgtttccaatgcagacgaa
gtcaagaaaaatcacaagaaatggctctctgaaaataaacatattaagtacttatggatt
ccatacaccgatacagttgttgttgtccaatgcaatcctccttcaaggtggagaactcca
aagtttacctcaaaatatggaaaggatgaggctatacaacatgttcgtgatctttatcat
gagtcattgaagaaatatagaactaaagcagaaagtaatgacccagaagtagatcagctt
tcattcactgaattgagggatcggttgcttaccctggatcctctagacaaagatcatgtg
atcagaattaacaaagcagaagctgaatattggaagaagtcagagggttatcgcatgggc
tggagtgacgaaatattaggctttgattgtggtgggcagcagtgggtttctgaaacttgc
ttccctgcagggaccctagcaaagcctaatatgaaggatctggattatatagaggagctg
ctgcagttgattgagaaggaagatatacccgcaccggcacctattgagcagcgttggact
gcctgcagcaggagtcccatgagcccagcatcaagctctcaagaagatgacatattttca
tgggttgggataataatgtacctcccaacgtcggatgctcgccaaaggaaggaaattaca
gaggaattttttaattacagaagtaagacgcaaacaaatctatgggatggttattctgca
tatgaacactgggccaaaattgaggttcctaaggataaggatgaactcgctgaactccag
gctaggttgaggaaacgtttcccagtagatgcatataacaaagcacgcatggagcttgac
cctaacaaggttctttccaatgcaaagttagagaagctcttcccagtaacagaggtccaa
catgaaaagtaa