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Journal Abstract Search


201 related items for PubMed ID: 28741843

  • 1. Niche differences may explain the geographic distribution of cytotypes in Erysimum mediohispanicum.
    Muñoz-Pajares AJ, Perfectti F, Loureiro J, Abdelaziz M, Biella P, Castro M, Castro S, Gómez JM.
    Plant Biol (Stuttg); 2018 Jan; 20 Suppl 1():139-147. PubMed ID: 28741843
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  • 4. Evolution of pollination niches and floral divergence in the generalist plant Erysimum mediohispanicum.
    Gómez JM, Muñoz-Pajares AJ, Abdelaziz M, Lorite J, Perfectti F.
    Ann Bot; 2014 Jan; 113(2):237-49. PubMed ID: 23965614
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  • 5. Diploid and tetraploid cytotypes of the flagship Cape species Dicerothamnus rhinocerotis (Asteraceae): variation in distribution, ecological niche, morphology and genetics.
    Chumová Z, Monier Z, Šemberová K, Havlíčková E, Euston-Brown D, Muasya AM, Bergh NG, Trávníček P.
    Ann Bot; 2024 May 10; 133(5-6):851-870. PubMed ID: 37410810
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  • 6. Polyploidy associated with altered and broader ecological niches in the Claytonia perfoliata (Portulacaceae) species complex.
    McIntyre PJ.
    Am J Bot; 2012 Apr 10; 99(4):655-62. PubMed ID: 22434773
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  • 7. Nonadaptive processes governing early stages of polyploid evolution: Insights from a primary contact zone of relict serpentine Knautia arvensis (Caprifoliaceae).
    Hanzl M, Kolář F, Nováková D, Suda J.
    Am J Bot; 2014 Jun 01; 101(6):935-945. PubMed ID: 24920762
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  • 10. Distribution and habitat segregation on different spatial scales among diploid, tetraploid and hexaploid cytotypes of Senecio carniolicus (Asteraceae) in the Eastern Alps.
    Sonnleitner M, Flatscher R, Escobar García P, Rauchová J, Suda J, Schneeweiss GM, Hülber K, Schönswetter P.
    Ann Bot; 2010 Dec 01; 106(6):967-77. PubMed ID: 20880930
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  • 11. Intricate Distribution Patterns of Six Cytotypes of Allium oleraceum at a Continental Scale: Niche Expansion and Innovation Followed by Niche Contraction With Increasing Ploidy Level.
    Duchoslav M, Jandová M, Kobrlová L, Šafářová L, Brus J, Vojtěchová K.
    Front Plant Sci; 2020 Dec 01; 11():591137. PubMed ID: 33362819
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  • 12. Ecological niches in the polyploid complex Linum suffruticosum s.l.
    Afonso A, Castro S, Loureiro J, Arroyo J, Figueiredo A, Lopes S, Castro M.
    Front Plant Sci; 2023 Dec 01; 14():1148828. PubMed ID: 37152130
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  • 13. Polyploid goldback and silverback ferns (Pentagramma) occupy a wider, colder, and wetter bioclimatic niche than diploid counterparts.
    Wefferling KM, Castro M, Castro S, Holmlund H, Loureiro J, Rothfels CJ, Schuettpelz E.
    Am J Bot; 2024 Mar 01; 111(3):e16305. PubMed ID: 38517199
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  • 16. A generalist-specialist trade-off between switchgrass cytotypes impacts climate adaptation and geographic range.
    Napier JD, Grabowski PP, Lovell JT, Bonnette J, Mamidi S, Gomez-Hughes MJ, VanWallendael A, Weng X, Handley LH, Kim MK, Boe AR, Fay PA, Fritschi FB, Jastrow JD, Lloyd-Reilley J, Lowry DB, Matamala R, Mitchell RB, Rouquette FM, Wu Y, Webber J, Jones T, Barry K, Grimwood J, Schmutz J, Juenger TE.
    Proc Natl Acad Sci U S A; 2022 Apr 12; 119(15):e2118879119. PubMed ID: 35377798
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  • 18. Different Patterns of Ecological Divergence Between Two Tetraploids and Their Diploid Counterpart in a Parapatric Linear Coastal Distribution Polyploid Complex.
    Castro M, Loureiro J, Figueiredo A, Serrano M, Husband BC, Castro S.
    Front Plant Sci; 2020 Apr 12; 11():315. PubMed ID: 32265966
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  • 19. Morphological and environmental differentiation as prezygotic reproductive barriers between parapatric and allopatric Campanula rotundifolia agg. cytotypes.
    Šemberová K, Svitok M, Marhold K, Suda J, Schmickl RE.
    Ann Bot; 2023 Feb 07; 131(1):71-86. PubMed ID: 34559179
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  • 20. Absence of gene flow between diploids and hexaploids of Aster amellus at multiple spatial scales.
    Münzbergová Z, Surinová M, Castro S.
    Heredity (Edinb); 2013 Feb 07; 110(2):123-30. PubMed ID: 23169557
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