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Shedding light on AT1G29480 of Arabidopsis thaliana-An enigmatic locus restricted to Brassicacean genomes.
Billakurthi, Kumari; Schulze, Stefanie; Schulz, Eva Lena Marie; Sage, Tammy L; Schreier, Tina B; Hibberd, Julian M; Ludwig, Martha; Westhoff, Peter.
Afiliação
  • Billakurthi K; Institute of Plant Molecular and Developmental Biology Universitätsstrasse 1, Heinrich-Heine-University Duesseldorf Germany.
  • Schulze S; Cluster of Excellence on Plant Sciences 'From Complex Traits Towards Synthetic Modules' Düsseldorf-Cologne Germany.
  • Schulz ELM; Department of Plant Sciences, Downing Street University of Cambridge Cambridge UK.
  • Sage TL; Institute of Plant Molecular and Developmental Biology Universitätsstrasse 1, Heinrich-Heine-University Duesseldorf Germany.
  • Schreier TB; Institute of Plant Molecular and Developmental Biology Universitätsstrasse 1, Heinrich-Heine-University Duesseldorf Germany.
  • Hibberd JM; Department of Ecology and Evolutionary Biology The University of Toronto Toronto Ontario Canada.
  • Ludwig M; Department of Plant Sciences, Downing Street University of Cambridge Cambridge UK.
  • Westhoff P; Department of Plant Sciences, Downing Street University of Cambridge Cambridge UK.
Plant Direct ; 6(10): e455, 2022 Oct.
Article em En | MEDLINE | ID: mdl-36263108
ABSTRACT
A key feature of C4 Kranz anatomy is the presence of an enlarged, photosynthetically highly active bundle sheath whose cells contain large numbers of chloroplasts. With the aim to identify novel candidate regulators of C4 bundle sheath development, we performed an activation tagging screen with Arabidopsis thaliana. The reporter gene used encoded a chloroplast-targeted GFP protein preferentially expressed in the bundle sheath, and the promoter of the C4 phosphoenolpyruvate carboxylase gene from Flaveria trinervia served as activation tag because of its activity in all chlorenchymatous tissues of A. thaliana. Primary mutants were selected based on their GFP signal intensity, and one stable mutant named kb-1 with a significant increase in GFP fluorescence intensity was obtained. Despite the increased GFP signal, kb-1 showed no alterations to bundle sheath anatomy. The causal locus, AT1G29480, is specific to the Brassicaceae with its second exon being conserved. Overexpression and reconstitution studies confirmed that AT1G29480, and specifically its second exon, were sufficient for the enhanced GFP phenotype, which was not dependent on translation of the locus or its parts into protein. We conclude, therefore, that the AT1G29480 locus enhances the GFP reporter gene activity via an RNA-based mechanism.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2022 Tipo de documento: Article