Photosynthetic redox control of nuclear gene expression
Open Access
- 29 April 2005
- journal article
- research article
- Published by Oxford University Press (OUP) in Journal of Experimental Botany
- Vol. 56 (416) , 1491-1498
- https://doi.org/10.1093/jxb/eri180
Abstract
Chloroplasts contain 3000–4000 different proteins but only a small subset of them is encoded in the plastid genome while the majority is encoded in the nucleus. Expression of these genes therefore requires a high degree of co-ordination between nucleus and chloroplast. This is achieved by a bilateral information exchange between both compartments including nucleus-to-plastid (anterograde) and plastid-to-nucleus (retrograde) signals. The latter represent a functional feedback control which couples the expression of nuclear encoded plastid proteins to the actual functional state of the organelle. The efficiency of photosynthesis is a very important parameter in this context since it is influenced by many environmental conditions and therefore represents a sensor for the residing environment. Components of the photosynthetic electron transport chain exhibit significant changes in their reduction/oxidation (redox) state depending on the photosynthetic electron flow and therefore serve as signalling parameters which report environmental influences on photosynthesis. Such redox signals control chloroplast and nuclear gene expression events and play an important role in the co-ordination of both genetic compartments. It is discussed here which photosynthetic parameters are known to control nuclear gene expression, how these signals are transduced toward the nucleus, and how they interact with other plastid retrograde signals and cytosolic light perception systems.Keywords
This publication has 53 references indexed in Scilit:
- Plastid Regulation ofLhcb1Transcription in the Chlorophyte AlgaDunaliella tertiolectaPlant Physiology, 2004
- REACTIVE OXYGEN SPECIES: Metabolism, Oxidative Stress, and Signal TransductionAnnual Review of Plant Biology, 2004
- A novel plant protein undergoing light-induced phosphorylation and release from the photosynthetic thylakoid membranesProceedings of the National Academy of Sciences, 2003
- Molecular Mechanisms of PhotosynthesisPublished by Wiley ,2002
- Cytoplasmic kinase and phosphatase activities can induce PsaF gene expression in the absence of functional plastids: evidence that phosphorylation/dephosphorylation events are involved in interorganellar crosstalkMolecular Genetics and Genomics, 2001
- Regulation of PhotosynthesisPublished by Springer Nature ,2001
- Balancing the two photosystems: photosynthetic electron transfer governs transcription of reaction centre genes in chloroplastsPhilosophical Transactions Of The Royal Society B-Biological Sciences, 2000
- Thylakoid protein phosphorylation, state 1‐state 2 transitions, and photosystem stoichiometry adjustment: redox control at multiple levels of gene expressionPhysiologia Plantarum, 1995
- Post-transcriptional control of plastid mRNA accumulation during adaptation of chloroplasts to different light quality environments.Plant Cell, 1989
- The implication of a plastid‐derived factor in the transcriptional control of nuclear genes encoding the light‐harvesting chlorophyll a/b proteinEuropean Journal of Biochemistry, 1986