Salta alla navigazione principale Salta alla ricerca Salta al contenuto principale

PGR5-PGRL1-Dependent Cyclic Electron Transport Modulates Linear Electron Transport Rate in Arabidopsis thaliana

  • Marjaana Suorsa
  • , Fabio Rossi
  • , Luca Tadini
  • , Mathias Labs
  • , Monica Colombo
  • , Peter Jahns
  • , Martin M M. Kater
  • , Dario Leister
  • , Giovanni Finazzi
  • , Eva Mari Aro
  • , Roberto Barbato
  • , Paolo Pesaresi

Risultato della ricerca: Contributo su rivistaArticolo in rivistapeer review

Abstract

Plants need tight regulation of photosynthetic electron transport for survival and growth under environmental and metabolic conditions. For this purpose, the linear electron transport (LET) pathway is supplemented by a number of alternative electron transfer pathways and valves. In Arabidopsis, cyclic electron transport (CET) around photosystem I (PSI), which recycles electrons from ferrodoxin to plastoquinone, is the most investigated alternative route. However, the interdependence of LET and CET and the relative importance of CET remain unclear, largely due to the difficulties in precise assessment of the contribution of CET in the presence of LET, which dominates electron flow under physiological conditions. We therefore generated Arabidopsis mutants with a minimal water-splitting activity, and thus a low rate of LET, by combining knockout mutations in PsbO1, PsbP2, PsbQ1, PsbQ2, and PsbR loci. The resulting Δ5 mutant is viable, although mature leaves contain only ∼20% of wild-type naturally less abundant PsbO2 protein. Δ5 plants compensate for the reduction in LET by increasing the rate of CET, and inducing a strong non-photochemical quenching (NPQ) response during dark-to-light transitions. To identify the molecular origin of such a high-capacity CET, we constructed three sextuple mutants lacking the qE component of NPQ (Δ5 npq4-1), NDH-mediated CET (Δ5 crr4-3), or PGR5-PGRL1-mediated CET (Δ5 pgr5). Their analysis revealed that PGR5-PGRL1-mediated CET plays a major role in ΔpH formation and induction of NPQ in C3 plants. Moreover, while pgr5 dies at the seedling stage under fluctuating light conditions, Δ5 pgr5 plants are able to survive, which underlines the importance of PGR5 in modulating the intersystem electron transfer.

Lingua originaleInglese
pagine (da-a)271-288
Numero di pagine18
RivistaMolecular Plant
Volume9
Numero di pubblicazione2
DOI
Stato di pubblicazionePubblicato - 1 feb 2016

OSS delle Nazioni Unite

Questo processo contribuisce al raggiungimento dei seguenti obiettivi di sviluppo sostenibile

  1. SDG 7 - Energia pulita e accessibile
    SDG 7 Energia pulita e accessibile

Fingerprint

Entra nei temi di ricerca di 'PGR5-PGRL1-Dependent Cyclic Electron Transport Modulates Linear Electron Transport Rate in Arabidopsis thaliana'. Insieme formano una fingerprint unica.

Cita questo