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Dates and rates in grape's plastomes: evolution in slow motion
Giovanni Zecca1, Fabrizio Grassi2, Vazha Tabidze3
1Department of Biosciences, University of Milan, Via Celoria 26, 20133, Milan, Italy. giovanni.zecca@gmail.com.
Current Genetics
|June 16, 2019
Summary
Phylogenetic analysis of Vitaceae plastomes reveals evolutionary rate heterogeneity. Slower substitution rates in liana-like species, particularly Vitis, are linked to the rate of mitosis hypothesis, aiding grape identification and population studies.
Area of Science:
- Plant evolutionary biology
- Molecular phylogenetics
- Genomics
Background:
- The Vitaceae family, including the economically vital grapevine (Vitis vinifera), has poorly understood phylogenetic relationships and evolutionary timelines.
- Variation in molecular evolution rates within Vitaceae remains largely unexplored, hindering a comprehensive understanding of their diversification.
Purpose of the Study:
- To resolve phylogenetic uncertainties and evolutionary timescales within Vitaceae using plastome sequence analysis.
- To investigate the variation in molecular evolution rates and identify key genomic regions for phylogenetic reconstruction in Vitaceae.
Main Methods:
- Sequencing and analysis of 13 new grape plastomes alongside existing data for 43 accessions representing major Vitaceae lineages.
- Inference of divergence times and absolute substitution rates using various molecular clock models on 95 non-coding plastid regions.
- Evaluation of the phylogenetic informativeness of non-coding plastid regions.
Main Results:
- Strong support for the random local clock model and significant rate heterogeneity across Vitaceae plastomes.
- Observed deceleration of substitution rates in liana-like genera (Ampelocissus, Ampelopsis, Nekemias, Parthenocissus, Rhoicissus, Vitis), with Vitis exhibiting the slowest rates.
- Identification of 20 optimal non-coding regions for accurate Vitaceae phylogeny reconstruction and a detailed catalog of 152 non-coding regions in subg. Vitis.
Conclusions:
- The study supports the
- rate of mitosis hypothesis
- to explain slower evolution in liana-like species compared to erect-growing ones.
- The identified non-coding regions are valuable for phylogenetics, phylogeography, population genetics, and DNA barcoding for grape identification.