Dein Suchergebnis zum Thema: Model

Tragopogon dubius: Multiple introductions to North America and the formation of the New World tetraploids – Laboratory of Molecular Systematics & Evolutionary Genetics

https://www.floridamuseum.ufl.edu/soltis-lab/2022/05/08/tragopogon-dubius-multiple-introductions-to-north-america-and-the-formation-of-the-new-world-tetraploids/

Soltis, D. E., E. V. Mavrodiev, M. A. Gitzendanner, Y. E. Alexeev, G. T. Godden, and P. S. Soltis. 2022. Tragopogon dubius: Multiple introductions to North America and the formation of the New World tetraploids. TAXON 71:1287–1298. https://doi.org/10.1002/tax.12743 Abstract Tragopogon (As
//doi.org/10.1002/tax.12743 Abstract Tragopogon (Asteraceae) is an evolutionary model

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Impact of whole-genome duplication events on diversification rates in angiosperms – Laboratory of Molecular Systematics & Evolutionary Genetics

https://www.floridamuseum.ufl.edu/soltis-lab/2018/08/13/impact-of-whole-genome-duplication-events-on-diversification-rates-in-angiosperms/

Landis, J. B., D. E. Soltis, Z. Li, H. E. Marx, M. S. Barker, D. C. Tank, and P. S. Soltis. 2018. Impact of whole-genome duplication events on diversification rates in angiosperms. American Journal of Botany 105:348–363. [View on publisher’s site] Abstract Premise of the Study Polyploidy or whol
We used a stepwise AIC approach (MEDUSA), a Bayesian mixture model approach (BAMM

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Detecting alternatively spliced transcript isoforms from single-molecule long-read sequences without a reference genome – Laboratory of Molecular Systematics & Evolutionary Genetics

https://www.floridamuseum.ufl.edu/soltis-lab/2017/12/31/detecting-alternatively-spliced-transcript-isoforms-from-single-molecule-long-read-sequences-without-a-reference-genome-2/

Liu, X., W. Mei, P. S. Soltis, D. E. Soltis, and W. B. Barbazuk. 2017. Detecting alternatively spliced transcript isoforms from single-molecule long-read sequences without a reference genome. Mol Ecol Resour 17:1243–1256. [View on publisher’s site] Abstract Alternative splicing (AS) is a major sou
provides better recovery on large transcripts, new gene locus identification and gene model

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Polyploidy: Pitfalls and paths to a paradigm. – Laboratory of Molecular Systematics & Evolutionary Genetics

https://www.floridamuseum.ufl.edu/soltis-lab/2016/06/17/polyploidy-pitfalls-and-paths-to-a-paradigm/

Soltis, D. E., C. J. Visger, D. B. Marchant, and P. S. Soltis. 2016. Polyploidy: Pitfalls and paths to a paradigm. Am. J. Bot., doi: 10.3732/ajb.1500501. [View on publisher’s site] ABSTRACT Investigators have long searched for a polyploidy paradigm—rules or principles that might be common followin
Also needed are more natural evolutionary model systems, as most of what we know

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Whole-genome duplication and molecular evolution in Cornus L. (Cornaceae) – Insights from transcriptome sequences – Laboratory of Molecular Systematics & Evolutionary Genetics

https://www.floridamuseum.ufl.edu/soltis-lab/2017/04/12/whole-genome-duplication-and-molecular-evolution-in-cornus-l-cornaceae-insights-from-transcriptome-sequences/

Yu, Y., Q. Xiang, P. S. Manos, D. E. Soltis, P. S. Soltis, B.-H. Song, S. Cheng, X. Liu, and G. Wong. 2017. Whole-genome duplication and molecular evolution in Cornus L. (Cornaceae) – Insights from transcriptome sequences. PLOS ONE 12:e0171361. [View on publisher’s site] Abstract The pattern and r
However, in non-model plants the molecular signals of genome duplications have remained

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A Phylogenomic Perspective on Evolution and Discordance in the Alpine-Arctic Plant Clade Micranthes (Saxifragaceae) – Laboratory of Molecular Systematics & Evolutionary Genetics

https://www.floridamuseum.ufl.edu/soltis-lab/2020/03/03/a-phylogenomic-perspective-on-evolution-and-discordance-in-the-alpine-arctic-plant-clade-micranthes-saxifragaceae/

Stubbs, R. L., R. A. Folk, C.-L. Xiang, S. Chen, D. E. Soltis, and N. Cellinese. 2020. A Phylogenomic Perspective on Evolution and Discordance in the Alpine-Arctic Plant Clade Micranthes (Saxifragaceae). Frontiers in Plant Science 10. [View on Publisher’s Site] Abstract The increased availabilit
evolutionary processes that were not adequately captured by a bifurcating tree model

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Plastome Evolution in Saxifragaceae and Multiple Plastid Capture Events Involving Heuchera and Tiarella. – Laboratory of Molecular Systematics & Evolutionary Genetics

https://www.floridamuseum.ufl.edu/soltis-lab/2020/12/31/plastome-evolution-in-saxifragaceae-and-multiple-plastid-capture-events-involving-heuchera-and-tiarella/

Liu, L.-X., Y.-X. Du, R. A. Folk, S.-Y. Wang, D. E. Soltis, F.-D. Shang, and P. Li. 2020. Plastome Evolution in Saxifragaceae and Multiple Plastid Capture Events Involving Heuchera and Tiarella. Front. Plant Sci. 11. Frontiers. [View on publisher’s site] Saxifragaceae, a family of over 600 specie
Of the main lineages in this family, the Heuchera group represents a valuable model

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The antiquity of Cyclocarya paliurus (Juglandaceae) provides new insights into the evolution of relict plants in subtropical China since the late Early Miocene – Laboratory of Molecular Systematics & Evolutionary Genetics

https://www.floridamuseum.ufl.edu/soltis-lab/2016/04/11/the-antiquity-of-cyclocarya-paliurus-juglandaceae-provides-new-insights-into-the-evolution-of-relict-plants-in-subtropical-china-since-the-late-early-miocene-3/

Kou, Y., S. Cheng, S. Tian, B. Li, D. Fan, Y. Chen, D. E. Soltis, P. S. Soltis, and Z. Zhang. 2016. The antiquity of Cyclocarya paliurus (Juglandaceae) provides new insights into the evolution of relict plants in subtropical China since the late Early Miocene. J. Biogeogr. 43:351–360. [View on publi
distributions of chlorotypes and clades were both consistent with a multiple-refugia model

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Accelerated diversification correlated with functional traits shapes extant diversity of the early divergent angiosperm family Annonaceae – Laboratory of Molecular Systematics & Evolutionary Genetics

https://www.floridamuseum.ufl.edu/soltis-lab/2020/03/03/accelerated-diversification-correlated-with-functional-traits-shapes-extant-diversity-of-the-early-divergent-angiosperm-family-annonaceae/

Xue, B., X. Guo, J. B. Landis, M. Sun, C. C. Tang, P. S. Soltis, D. E. Soltis, and R. M. K. Saunders. 2020. Accelerated diversification correlated with functional traits shapes extant diversity of the early divergent angiosperm family Annonaceae. Molecular Phylogenetics and Evolution 142:106659. [Vi
diversification rather than the steady accumulation of species via the ‘museum model

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Chloroplast genome analyses and genomic resource development for epilithic sister genera Oresitrophe and Mukdenia (Saxifragaceae), using genome skimming data – Laboratory of Molecular Systematics & Evolutionary Genetics

https://www.floridamuseum.ufl.edu/soltis-lab/2018/08/13/chloroplast-genome-analyses-and-genomic-resource-development-for-epilithic-sister-genera-oresitrophe-and-mukdenia-saxifragaceae-using-genome-skimming-data/

Liu, L., Y. Wang, P. He, P. Li, J. Lee, D. E. Soltis, and C. Fu. 2018. Chloroplast genome analyses and genomic resource development for epilithic sister genera Oresitrophe and Mukdenia (Saxifragaceae), using genome skimming data. BMC Genomics 19:235. [View on publisher’s site] Abstract Backgroun
rocky slopes) and a parapatric distribution in East Asia, which makes them an ideal model

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