Home LiteratureArticle Details
PMID: 21278125 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

ATP synthase repression in tobacco restricts photosynthetic electron transport, CO2 assimilation, and plant growth by overacidification of the thylakoid lumen.

The Plant cell ·Vol. 23 ·No. 1 ·2011-01-00 ·Pages 304-21

Rott M, Martins NF, Thiele W, Lein W, Bock R, Kramer DM, Schöttler MA

Abstract

Tobacco (Nicotiana tabacum) plants strictly adjust the contents of both ATP synthase and cytochrome b(6)f complex to the metabolic demand for ATP and NADPH. While the cytochrome b(6)f complex catalyzes the rate-limiting step of photosynthetic electron flux and thereby controls assimilation, the functional significance of the ATP synthase adjustment is unknown. Here, we reduced ATP synthase accumulation by an antisense approach directed against the essential nuclear-encoded γ-subunit (AtpC) and by the introduction of point mutations into the translation initiation codon of the plastid-encoded atpB gene (encoding the essential β-subunit) via chloroplast transformation. Both strategies yielded transformants with ATP synthase contents ranging from 100 to <10% of wild-type levels. While the accumulation of the components of the linear electron transport chain was largely unaltered, linear electron flux was strongly inhibited due to decreased rates of plastoquinol reoxidation at the cytochrome b(6)f complex (photosynthetic control). Also, nonphotochemical quenching was triggered at very low light intensities, strongly reducing the quantum efficiency of CO(2) fixation. We show evidence that this is due to an increased steady state proton motive force, resulting in strong lumen overacidification, which in turn represses photosynthesis due to photosynthetic control and dissipation of excitation energy in the antenna bed.

MeSH Terms
ATP Synthetase Complexes/metabolism Antisense Elements (Genetics) Carbon Dioxide/metabolism Electron Transport Photosynthesis Plant Proteins/metabolism Plants, Genetically Modified/enzymology,growth & development Point Mutation Thylakoids/enzymology Tobacco/enzymology,growth & development Transformation, Genetic
Chemicals
Antisense Elements (Genetics) Plant Proteins Carbon Dioxide ATP Synthetase Complexes
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Rott Markus
Max-Planck-Institut für Molekulare Pflanzenphysiologie, D-14476 Potsdam-Golm, Germany.
Martins Nádia F
Thiele Wolfram
Lein Wolfgang
Bock Ralph
Kramer David M
Schöttler Mark A
References (50)
50 references, click to expand
  1. Respiratory metabolism: glycolysis, the TCA cycle and mitochondrial electron transport.
    Curr Opin Plant Biol. 2004 Jun;7(3):254-61 PMID: 15134745
  2. New Fluorescence Parameters for the Determination of QA Redox State and Excitation Energy Fluxes.
    Photosynth Res. 2004 Feb;79(2):209 PMID: 16228395
  3. Metabolism controls dimerization of the chloroplast FoF1 ATP synthase in Chlamydomonas reinhardtii.
    FEBS Lett. 2007 Apr 3;581(7):1391-6 PMID: 17350625
  4. Evolution and mechanism of translation in chloroplasts.
    Annu Rev Genet. 1998;32:437-59 PMID: 9928487
  5. Evidence for a role of ClpP in the degradation of the chloroplast cytochrome b(6)f complex.
    Plant Cell. 2000 Jan;12(1):137-50 PMID: 10634913
  6. Inactivation of the chloroplast ATP synthase gamma subunit results in high non-photochemical fluorescence quenching and altered nuclear gene expression in Arabidopsis thaliana.
    J Biol Chem. 2004 Jan 9;279(2):1060-9 PMID: 14576160
  7. Multiple phosphorylation sites in the beta subunit of thylakoid ATP synthase.
    Photosynth Res. 2006 Jul;89(1):11-8 PMID: 16832703
  8. The role of calcium in the pH-dependent control of Photosystem II.
    Photosynth Res. 1993 Aug;37(2):117-30 PMID: 24317708
  9. Large-scale phenotyping of transgenic tobacco plants (Nicotiana tabacum) to identify essential leaf functions.
    Plant Biotechnol J. 2008 Apr;6(3):246-63 PMID: 18086234
  10. The plastome-encoded PsaJ subunit is required for efficient Photosystem I excitation, but not for plastocyanin oxidation in tobacco.
    Biochem J. 2007 Apr 15;403(2):251-60 PMID: 17209805
  11. A point mutation in atpC1 raises the redox potential of the Arabidopsis chloroplast ATP synthase gamma-subunit regulatory disulfide above the range of thioredoxin modulation.
    J Biol Chem. 2007 Dec 21;282(51):36782-9 PMID: 17959606
  12. Searching limiting steps in the expression of chloroplast-encoded proteins: relations between gene copy number, transcription, transcript abundance and translation rate in the chloroplast of Chlamydomonas reinhardtii.
    Plant J. 2002 Jul;31(2):149-60 PMID: 12121445
  13. Light and oxygenic photosynthesis: energy dissipation as a protection mechanism against photo-oxidation.
    EMBO Rep. 2005 Jul;6(7):629-34 PMID: 15995679
  14. Large-scale Arabidopsis phosphoproteome profiling reveals novel chloroplast kinase substrates and phosphorylation networks.
    Plant Physiol. 2009 Jun;150(2):889-903 PMID: 19376835
  15. Dynamics of photosystem II: a proteomic approach to thylakoid protein complexes.
    J Exp Bot. 2005 Jan;56(411):347-56 PMID: 15569703
  16. Molecular architecture of the thylakoid membrane: lipid diffusion space for plastoquinone.
    Biochemistry. 2002 Apr 16;41(15):4872-82 PMID: 11939782
  17. The thylakoid proton motive force in vivo. Quantitative, non-invasive probes, energetics, and regulatory consequences of light-induced pmf.
    Biochim Biophys Acta. 2007 Oct;1767(10):1233-44 PMID: 17765199
  18. Listening to the silent genes: transgene silencing, gene regulation and pathogen control.
    Trends Plant Sci. 1999 Sep;4(9):340-347 PMID: 10462766
  19. Mutation in the cysteine bridge domain of the gamma-subunit affects light regulation of the ATP synthase but not photosynthesis or growth in Arabidopsis.
    Photosynth Res. 2008 Aug;97(2):185-93 PMID: 18566910
  20. Cytochrome b 6 f complex: Dynamic molecular organization, function and acclimation.
    Photosynth Res. 1992 Dec;34(3):341-57 PMID: 24408831
  21. Potential regulation of gene expression in photosynthetic cells by redox and energy state: approaches towards better understanding.
    Ann Bot. 2009 Feb;103(4):599-607 PMID: 18492734
  22. The chloroplast infA gene with a functional UUG initiation codon.
    FEBS Lett. 1999 Feb 19;445(1):169-72 PMID: 10069394
  23. Selection of Shine-Dalgarno sequences in plastids.
    Nucleic Acids Res. 2011 Mar;39(4):1427-38 PMID: 20965967
  24. Depletion of stromal P(i) induces high 'energy-dependent' antenna exciton quenching (q(E)) by decreasing proton conductivity at CF(O)-CF(1) ATP synthase.
    Plant Cell Environ. 2008 Feb;31(2):235-43 PMID: 17996016
  25. Electron transfers amongst cytochrome f, plastocyanin and photosystem I: kinetics and mechanisms.
    Biochim Biophys Acta. 2000 Jan 3;1456(1):5-26 PMID: 10611452
  26. Multiple elements required for translation of plastid atpB mRNA lacking the Shine-Dalgarno sequence.
    Nucleic Acids Res. 2004 Jun 30;32(11):3503-10 PMID: 15229294
  27. Effect of growth irradiance on plastocyanin levels in barley.
    Photosynth Res. 1993 May;36(2):103-10 PMID: 24318871
  28. Balancing the central roles of the thylakoid proton gradient.
    Trends Plant Sci. 2003 Jan;8(1):27-32 PMID: 12523997
  29. The long-term responses of the photosynthetic proton circuit to drought.
    Plant Cell Environ. 2009 Mar;32(3):209-19 PMID: 19021886
  30. No single way to understand singlet oxygen signalling in plants.
    EMBO Rep. 2008 May;9(5):435-9 PMID: 18451767
  31. Control of the photosynthetic electron transport by PQ diffusion microdomains in thylakoids of higher plants.
    Biochim Biophys Acta. 2000 Jul 20;1459(1):148-68 PMID: 10924908
  32. Expression of a tuber-specific storage protein in transgenic tobacco plants: demonstration of an esterase activity.
    EMBO J. 1987 May;6(5):1155-9 PMID: 16453760
  33. Rpl33, a nonessential plastid-encoded ribosomal protein in tobacco, is required under cold stress conditions.
    Plant Cell. 2008 Aug;20(8):2221-37 PMID: 18757552
  34. Plastid signalling to the nucleus and beyond.
    Trends Plant Sci. 2008 Nov;13(11):602-9 PMID: 18838332
  35. Plastid redox state and sugars: interactive regulators of nuclear-encoded photosynthetic gene expression.
    Proc Natl Acad Sci U S A. 2001 Feb 13;98(4):2047-52 PMID: 11172073
  36. Transgenic plastids in basic research and plant biotechnology.
    J Mol Biol. 2001 Sep 21;312(3):425-38 PMID: 11563907
  37. Positions +5 and +6 can be major determinants of the efficiency of non-AUG initiation codons for protein synthesis.
    EMBO J. 1994 Aug 1;13(15):3608-17 PMID: 8062835
  38. Acclimation of Arabidopsis thaliana to the light environment: the existence of separate low light and high light responses.
    Planta. 2001 Sep;213(5):794-801 PMID: 11678285
  39. An in vitro transcription termination system to analyze chloroplast promoters: identification of multiple promoters for the spinach atpB gene.
    Curr Genet. 1990 Jan;17(1):55-64 PMID: 1690085
  40. Intertwined translational regulations set uneven stoichiometry of chloroplast ATP synthase subunits.
    EMBO J. 2007 Aug 8;26(15):3581-91 PMID: 17660748
  41. Contribution of electric field (Delta psi) to steady-state transthylakoid proton motive force (pmf) in vitro and in vivo. control of pmf parsing into Delta psi and Delta pH by ionic strength.
    Biochemistry. 2001 Feb 6;40(5):1226-37 PMID: 11170448
  42. Peroxiredoxin Q of Arabidopsis thaliana is attached to the thylakoids and functions in context of photosynthesis.
    Plant J. 2006 Mar;45(6):968-81 PMID: 16507087
  43. High-frequency plastid transformation in tobacco by selection for a chimeric aadA gene.
    Proc Natl Acad Sci U S A. 1993 Feb 1;90(3):913-7 PMID: 8381537
  44. In vivo modulation of nonphotochemical exciton quenching (NPQ) by regulation of the chloroplast ATP synthase.
    Proc Natl Acad Sci U S A. 2002 Oct 1;99(20):12789-94 PMID: 12192092
  45. 14-3-3 protein is a regulator of the mitochondrial and chloroplast ATP synthase.
    Proc Natl Acad Sci U S A. 2001 Mar 27;98(7):4249-54 PMID: 11274449
  46. Determining the limitations and regulation of photosynthetic energy transduction in leaves.
    Plant Cell Environ. 2007 Sep;30(9):1107-25 PMID: 17661750
  47. Knock-out of the plastid-encoded PetL subunit results in reduced stability and accelerated leaf age-dependent loss of the cytochrome b6f complex.
    J Biol Chem. 2007 Jan 12;282(2):976-85 PMID: 17114182
  48. Stromal Phosphate Concentration Is Low during Feedback Limited Photosynthesis.
    Plant Physiol. 1989 Oct;91(2):679-84 PMID: 16667087
  49. The role of plastocyanin in the adjustment of the photosynthetic electron transport to the carbon metabolism in tobacco.
    Plant Physiol. 2004 Dec;136(4):4265-74 PMID: 15563617
  50. LED array spectrophotometer for measurement of time resolved difference spectra in the 530-600 nm wavelength region.
    Photosynth Res. 1990 Sep;25(3):317-27 PMID: 24420362
Article Info
Journal
The Plant cell
Abbr.
Plant Cell
ISSN
1532-298X
Published
2011-01-00
Epub
2011-00-28
Pages
304-21
Language
English
Region
England
NLM ID
9208688
PMCID
PMC3051256
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: [email protected]