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2022. T. 127. Vyp. 5.
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2022. T. 127. Vyp. 5.

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Kramina T.E., Schanzer I.A.

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Fabaceae, Lotus, molecular markers, population variability, species concept

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Kramina T.E., Schanzer I.A. , Once again about the Lotus zhegulensis Klokov (Fabaceae) // Byul. MOIP. Otd. biol. 2022. T. 127. Vyp. 5. S. 81-84

Once again about the Lotus zhegulensis Klokov (Fabaceae)

This note contains a comment to an article published in the same issue by V.M. Vasyukov and S.A. Senator on their recognition of the independence of the species Lotus zhegulensis Klokov (Fabaceae). Based on morphological and molecular studies of extensive material, we substantiate that Lotus zhegulensis is a member of the Lotus corniculatus complex and is linked by gene flow to other members of this complex. We believe that this taxon is part of the widespread and extremely polymorphic tetraploid species L. corniculatus.

References

  • Kramina T.E., Meshcherskii I.G., Fedorova A.V., Vasil’eva N.V., Stepanova N.Yu., Shantser I.A. Chto takoe Lotus zhegulensis Klok. (Fabaceae): samostoyatel’nyi vid, endemichnyi dlya Srednego Povolzh’ya, ili forma izmenchivosti shiroko raspros-tranennogo L. corniculatus L.? // Turczaninowia. 2021. T. 24, № 4. S.73–83. doi: 10.14258/turczaninowia.24.4.7. URL: http://turczaninowia.asu.ru/article/view/10773.
  • De Queiroz K. Species concepts and species delimitation // Systematic Biology. 2007. Vol. 56, N 6. P. 879–886 (DOI: 10.1080/10635150701701083).
  • Giray E. F. An Integrated Biological Approach to the Species Problem // The British Journal for the Philosophy of Science. 1976. Vol. 27, N 4. P. 317–328 (http://www.jstor.org/stable/686861).
  • Halverson K., Heard S.B., Nason J.D., Stireman J.O. 3rd. 2008. Origins, distribution, and local co-occurrence of polyploid cyto-types in Solidago altissima (Asteraceae) // American Journal of Botany. 2008. Vol. 95. P. 50–58.
  • Kramina T.E. 1999. A contribution to the taxonomic revision of the Lotus corniculatus complex (Leguminosae, Loteae) in the European part of the former USSR. // Systematics and Geography of Plants. 1999. Vol. 68. P. 265–279.
  • Kramina, T.E., Meschersky I.G., Degtjareva G.V., Samigullin T.H., Belokon Y.S., Schanzer I.A. Genetic variation in the Lotus corniculatus complex (Fabaceae) in northern Eurasia as inferred from nuclear microsatellites and plastid trnL-trnF sequences // Botanical Journal of the Linnaean Society. 2018. Vol. 188. P. 87–116.
  • Parisod C., Besnard G. 2007. Glacial in situ survival in the Western Alps and polytopic autopolyploidy in Biscutella laevigata L. (Brassicaceae). // Molecular Ecology. 2007. Vol. 16. P. 2755–2767.
  • Pigliucci M. Species as family resemblance concepts: the (dis-)solution of the species problem? Species as family resemblance concepts: the (dis-)solution of the species problem? // BioEssays. 2003. Vol. 25. P. 596–602 (DOI 10.1002/bies.10284).
  • Servick S., Visger C.J., Gitzendanner M.A., Soltis P.S., Soltis D.E. Population genetic variation, geographic structure, and multiple origins of autopolyploidy in Galax urceolata // American Journal of Botany. 2015. Vol. 102. P. 973–982.
  • Sites Jr J.W., Marshall J.C. Delimiting species: a Renaissance issue in systematic biology // TRENDS in Ecology and Evolution. 2003. Vol. 18, N 9. P. 462–470 (DOI:10.1016/S0169-5347(03)00184-8).

Список литературы

  • Kramina T.E., Meshcherskii I.G., Fedorova A.V., Vasil’eva N.V., Stepanova N.Yu., Shantser I.A. Chto takoe Lotus zhegulensis Klok. (Fabaceae): samostoyatel’nyi vid, endemichnyi dlya Srednego Povolzh’ya, ili forma izmenchivosti shiroko raspros-tranennogo L. corniculatus L.? // Turczaninowia. 2021. T. 24, № 4. S.73–83. doi: 10.14258/turczaninowia.24.4.7. URL: http://turczaninowia.asu.ru/article/view/10773.
  • De Queiroz K. Species concepts and species delimitation // Systematic Biology. 2007. Vol. 56, N 6. P. 879–886 (DOI: 10.1080/10635150701701083).
  • Giray E. F. An Integrated Biological Approach to the Species Problem // The British Journal for the Philosophy of Science. 1976. Vol. 27, N 4. P. 317–328 (http://www.jstor.org/stable/686861).
  • Halverson K., Heard S.B., Nason J.D., Stireman J.O. 3rd. 2008. Origins, distribution, and local co-occurrence of polyploid cyto-types in Solidago altissima (Asteraceae) // American Journal of Botany. 2008. Vol. 95. P. 50–58.
  • Kramina T.E. 1999. A contribution to the taxonomic revision of the Lotus corniculatus complex (Leguminosae, Loteae) in the European part of the former USSR. // Systematics and Geography of Plants. 1999. Vol. 68. P. 265–279.
  • Kramina, T.E., Meschersky I.G., Degtjareva G.V., Samigullin T.H., Belokon Y.S., Schanzer I.A. Genetic variation in the Lotus corniculatus complex (Fabaceae) in northern Eurasia as inferred from nuclear microsatellites and plastid trnL-trnF sequences // Botanical Journal of the Linnaean Society. 2018. Vol. 188. P. 87–116.
  • Parisod C., Besnard G. 2007. Glacial in situ survival in the Western Alps and polytopic autopolyploidy in Biscutella laevigata L. (Brassicaceae). // Molecular Ecology. 2007. Vol. 16. P. 2755–2767.
  • Pigliucci M. Species as family resemblance concepts: the (dis-)solution of the species problem? Species as family resemblance concepts: the (dis-)solution of the species problem? // BioEssays. 2003. Vol. 25. P. 596–602 (DOI 10.1002/bies.10284).
  • Servick S., Visger C.J., Gitzendanner M.A., Soltis P.S., Soltis D.E. Population genetic variation, geographic structure, and multiple origins of autopolyploidy in Galax urceolata // American Journal of Botany. 2015. Vol. 102. P. 973–982.
  • Sites Jr J.W., Marshall J.C. Delimiting species: a Renaissance issue in systematic biology // TRENDS in Ecology and Evolution. 2003. Vol. 18, N 9. P. 462–470 (DOI:10.1016/S0169-5347(03)00184-8).