Basic Information
Gene ID
gene-SADUNF_Sadunf16G0243000
Position
CM027674.1:27825549-27828909 (+)
3360bp
Gene Type
gene
Gene Description (Protein Product)
Ferredoxin-NADP reductase
Organism
Also AS AT4G05390

Gene Structure

upstream:

Domain
Database EntryID E-Value Start end InterPro ID Description

Regulation&Interaction
Protein-protein interaction (PPI)
gene-SADUNF_Sadunf18G0021500 Photosystem I reaction center subunit psaK
gene-SADUNF_Sadunf16G0309400 Photosystem I reaction center subunit V
gene-SADUNF_SadunfMtG0001400 PsaA and PsaB bind P700, the primary electron donor of photosystem I (PSI), as well as the electron acceptors A0, A1 and FX. PSI is a plastocyanin-ferredoxin oxidoreductase, converting photonic excitation into a charge separation, which transfers an electron from the donor P700 chlorophyll pair to the spectroscopically characterized acceptors A0, A1, FX, FA and FB in turn. Oxidized P700 is reduced on the lumenal side of the thylakoid membrane by plastocyanin

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Annotation

Orthologous Group
Orthologous ID Species Number All hits in PereRegDB Hits of this species Orthologous Detail


Pathway
GO Term Description GO Category
GO:0003674 molecular_function MF
GO:0005488 binding MF
GO:0005507 copper ion binding MF
GO:0043167 ion binding MF
GO:0043169 cation binding MF
GO:0046872 metal ion binding MF
GO:0046914 transition metal ion binding MF
KEGG Term Name Description
map01100 Metabolic pathways -
map00195 Photosynthesis Photosynthesis in green plants and specialized bacteria is the process of utilizing light energy to synthesize organic compounds from carbon dioxide and water. It consists of the light dependent part (light reaction) and the light independent part (dark reaction, carbon fixation). The light reaction takes place in thylakoid, a membrane-bound compartment inside chloroplasts and cyanobacteria. The light energy is used by photosystems I and II to generate proton motive force and reducing power (NADPH or NADH). The proton motive force is used by ATP synthase to generate ATP, essentially in the same way as the mitochondrial respiratory chain. The supplies of ATP and NAD(P)H are then used to fix carbon dioxide.