Transcriptome dynamics in developing leaves from C3 and C4 Flaveria species
Billakurthi K, Wrobel TJ, Gowik U, Bräutigam A, Weber APM, Westhoff P (2024)
Plant Journal.
Zeitschriftenaufsatz
| E-Veröff. vor dem Druck | Englisch
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Autor*in
Billakurthi, Kumari;
Wrobel, Thomas J.;
Gowik, Udo;
Bräutigam, AndreaUniBi ;
Weber, Andreas P. M.;
Westhoff, Peter
Einrichtung
Abstract / Bemerkung
C4 species have evolved more than 60 times independently from C3 ancestors. This multiple and parallel evolution of the complex C4 trait suggests common underlying evolutionary mechanisms, which could be identified by comparative analysis of closely related C3 and C4 species. Efficient C4 function depends on a distinctive leaf anatomy that is characterised by enlarged, chloroplast-rich bundle sheath cells and narrow vein spacing. To elucidate the molecular mechanisms that generate the Kranz anatomy, we analysed a developmental series of leaves from the C4 plant Flaveria bidentis and the closely related C3 species Flaveria robusta by comparing anatomies and transcriptomes. Vascular density measurements of all nine leaf developmental stages identified three leaf anatomical zones whose proportions vary with respect to the developmental stage. We then deconvoluted the transcriptome datasets using non-negative matrix factorisation, which identified four distinct transcriptome patterns in the growing leaves of both species. By integrating the leaf anatomy and transcriptome data, we were able to correlate the different transcriptional profiles with different developmental zones in the leaves. These comparisons revealed an important role for auxin metabolism, in particular auxin homeostasis (conjugation and deconjugation), in establishing the high vein density typical of C4 species. © 2024 The Author(s). The Plant Journal published by Society for Experimental Biology and John Wiley & Sons Ltd.
Erscheinungsjahr
2024
Zeitschriftentitel
Plant Journal
eISSN
1365-313X
Page URI
https://pub.uni-bielefeld.de/record/2994033
Zitieren
Billakurthi K, Wrobel TJ, Gowik U, Bräutigam A, Weber APM, Westhoff P. Transcriptome dynamics in developing leaves from C3 and C4 Flaveria species. Plant Journal. 2024.
Billakurthi, K., Wrobel, T. J., Gowik, U., Bräutigam, A., Weber, A. P. M., & Westhoff, P. (2024). Transcriptome dynamics in developing leaves from C3 and C4 Flaveria species. Plant Journal. https://doi.org/10.1111/tpj.17059
Billakurthi, Kumari, Wrobel, Thomas J., Gowik, Udo, Bräutigam, Andrea, Weber, Andreas P. M., and Westhoff, Peter. 2024. “Transcriptome dynamics in developing leaves from C3 and C4 Flaveria species”. Plant Journal.
Billakurthi, K., Wrobel, T. J., Gowik, U., Bräutigam, A., Weber, A. P. M., and Westhoff, P. (2024). Transcriptome dynamics in developing leaves from C3 and C4 Flaveria species. Plant Journal.
Billakurthi, K., et al., 2024. Transcriptome dynamics in developing leaves from C3 and C4 Flaveria species. Plant Journal.
K. Billakurthi, et al., “Transcriptome dynamics in developing leaves from C3 and C4 Flaveria species”, Plant Journal, 2024.
Billakurthi, K., Wrobel, T.J., Gowik, U., Bräutigam, A., Weber, A.P.M., Westhoff, P.: Transcriptome dynamics in developing leaves from C3 and C4 Flaveria species. Plant Journal. (2024).
Billakurthi, Kumari, Wrobel, Thomas J., Gowik, Udo, Bräutigam, Andrea, Weber, Andreas P. M., and Westhoff, Peter. “Transcriptome dynamics in developing leaves from C3 and C4 Flaveria species”. Plant Journal (2024).
Daten bereitgestellt von European Bioinformatics Institute (EBI)
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Daten bereitgestellt von Europe PubMed Central.
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