Restoring cytonuclear harmony: Distinct strategies in Arabidopsis auto- and allopolyploids
Jazyk angličtina Země Velká Británie, Anglie Médium print
Typ dokumentu časopisecké články
Grantová podpora
22-03731S
Grantová Agentura České Republiky
CZ.02.01.01/00/22_008/0004581
ERDF Programme Johannes Amos Comenius
PubMed
40874342
PubMed Central
PMC12392245
DOI
10.1111/tpj.70451
Knihovny.cz E-zdroje
- Klíčová slova
- chloroplasts, cytonuclear interactions, gene expression, interspecific hybridization, mitochondria, organellar DNA, stoichiometry, whole genome duplication,
- MeSH
- Arabidopsis * genetika MeSH
- buněčné jádro * genetika MeSH
- chloroplasty genetika MeSH
- DNA chloroplastová genetika MeSH
- genom chloroplastový genetika MeSH
- genom rostlinný genetika MeSH
- mitochondriální DNA genetika MeSH
- mitochondrie genetika metabolismus MeSH
- polyploidie * MeSH
- regulace genové exprese u rostlin MeSH
- Publikační typ
- časopisecké články MeSH
- Názvy látek
- DNA chloroplastová MeSH
- mitochondriální DNA MeSH
Plants rely on tight coordination between nuclear, mitochondrial, and chloroplast genomes to form essential multi-enzyme cytonuclear complexes. Whole-genome duplication (WGD) doubles the nuclear genome, potentially disrupting cytonuclear stoichiometry unless organellar genomes respond accordingly. Targeted analyses of chloroplasts and mitochondria enabled us to dissect the extent and mechanisms of adjustments in both organelles immediately after WGD and across generations in Arabidopsis auto- and allopolyploids. We observed a substantial overcompensation of organellar genome copies in both organelles in early-generation autotetraploids primarily through multiplication of DNA copies within organelles rather than increasing the number of organelles. Despite higher DNA content, mitochondria maintained their volume, and chloroplasts were even smaller. In successive generations, chloroplast DNA copy numbers continued to rise, whereas mitochondrial DNA copies declined. Gene expression patterns also differed between chloroplasts and mitochondria and between auto- and allopolyploids. In autopolyploids, immediate transcriptional changes were minimal, but by the fourth generation after WGD, nuclear genes involved in mitochondria-nuclear complexes were downregulated. In allopolyploids, transcriptional changes appeared immediately in the first generation (chloroplast genes were upregulated and mitochondrial genes were downregulated). Our findings demonstrate that cytonuclear balance is restored through dynamic, organelle-specific, and polyploid-type-specific mechanisms. These insights advance our understanding of the evolution of polyploid genomes.
Department of Ecology Evolution and Organismal Biology Iowa State University Ames Iowa USA
National Centre for Biomolecular Research Faculty of Science Masaryk University Brno Czech Republic
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