4.7 Article

Circadian regulation of chloroplastic f and m thioredoxins through control of the CCA1 transcription factor

期刊

JOURNAL OF EXPERIMENTAL BOTANY
卷 62, 期 6, 页码 2039-2051

出版社

OXFORD UNIV PRESS
DOI: 10.1093/jxb/erq394

关键词

Arabidopsis mutants; CCA1; chloroplastic thioredoxins; circadian regulation; EE; Pisum sativum

资金

  1. Ministerio de Educacion y Ciencia (Spain) [BFI2002-00401, BIO2005-00157, BIO2006-2816]
  2. FEDER
  3. Junta de Andalucia (Spain) [BIO154]
  4. Junta de Andalucia
  5. Consejo Superior de Investigaciones Cientificas (Spain)

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Chloroplastic thioredoxins f and m (TRX f and TRX m) mediate light regulation of carbon metabolism through the activation of Calvin cycle enzymes. The role of TRX f and m in the activation of Calvin cycle enzymes is best known among the TRX family. However, the discoveries of new potential targets extend the functions of chloroplastic TRXs to other processes in non-photosynthetic tissues. As occurs with numerous chloroplast proteins, their expression comes under light regulation. Here, the focus is on the light regulation of TRX f and TRX m in pea and Arabidopsis during the day/night cycle that is maintained during the subjective night. In pea (Pisum sativum), TRX f and TRX m1 expression is shown to be governed by a circadian oscillation exerted at both the transcriptional and protein levels. Binding shift assays indicate that this control probably involves the interaction of the CCA1 transcription factor and an evening element (EE) located in the PsTRX f and PsTRX m1 promoters. In Arabidopsis, among the multigene family of TRX f and TRX m, AtTRX f2 and AtTRX m2 mRNA showed similar circadian oscillatory regulation, suggesting that such regulation is conserved in plants. However, this oscillation was disrupted in plants overexpressing CCA1 (cca1-ox) or repressing CCA1 and LHY (cca1-lhy). The physiological role of the oscillatory regulation of chloroplastic TRX f and TRX m in plants during the day/night cycle is discussed.

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