A cytoplasmically inherited barley mutant is defective in photosystem I assembly due to a temperature-sensitive defect in ycf3 splicing.

Plant Physiol

Centro de Investigaciones en Ciencias Veterinarias y Agronómicas, Instituto Nacional de Tecnología Agropecuaria, B1712WAA Castelar, Province of Buenos Aires, Argentina.

Published: December 2009

AI Article Synopsis

  • A chlorophyll-deficient barley mutant, known as cytoplasmic line 3 (CL3), has a light-green appearance and is sensitive to high temperatures.
  • The study utilized biochemical, biophysical, and molecular methods to investigate the effects of temperature and light on CL3, finding that impaired assembly of photosystem I (PSI) contributes to its phenotype.
  • A mutation in the noncoding region of the ycf3 gene leads to disrupted splicing of ycf3 transcripts, which results in insufficient Ycf3 synthesis and ultimately causes photoinhibition and degradation of photosystem II (PSII).

Article Abstract

A cytoplasmically inherited chlorophyll-deficient mutant of barley (Hordeum vulgare) termed cytoplasmic line 3 (CL3), displaying a viridis (homogeneously light-green colored) phenotype, has been previously shown to be affected by elevated temperatures. In this article, biochemical, biophysical, and molecular approaches were used to study the CL3 mutant under different temperature and light conditions. The results lead to the conclusion that an impaired assembly of photosystem I (PSI) under higher temperatures and certain light conditions is the primary cause of the CL3 phenotype. Compromised splicing of ycf3 transcripts, particularly at elevated temperature, resulting from a mutation in a noncoding region (intron 1) in the mutant ycf3 gene results in a defective synthesis of Ycf3, which is a chaperone involved in PSI assembly. The defective PSI assembly causes severe photoinhibition and degradation of PSII.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2785965PMC
http://dx.doi.org/10.1104/pp.109.147843DOI Listing

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