Details

Title

Genetic Differentiation Among Geographically Close Populations of Malva Alcea

Journal title

Acta Biologica Cracoviensia s. Botanica

Yearbook

2010

Volume

vol. 52

Issue

No 2

Authors

Divisions of PAS

Nauki Biologiczne i Rolnicze

Publisher

Biological Commission of the Polish Academy of Sciences – Cracow Branch

Date

2010

Identifier

DOI: 10.2478/v10182-010-0021-9 ; ISSN 0001-5296 ; eISSN 1898-0295

Source

Acta Biologica Cracoviensia s. Botanica; 2010; vol. 52; No 2

References

Bauch R. (1937), Vorzeitliche und frühzeitliche Kulturrelikte in der Pflanzenwelt Mecklenburgs, Beihefte zum Botanischen Centralblatt, B 57, 77. ; Brown A. (1992), Conservation of Biodiversity for Sustainable Development, 5, 88. ; Brzosko E. (2002a), Allozyme differentiation and genetic structure of the Lady's slipper (<i>Cypripedium calceolus</i>) island populations in north-east Poland, Botanical Journal of the Linnean Society, 138, 433, doi.org/10.1046/j.1095-8339.2002.00036.x ; Brzosko E. (2002b), Spatial genetic structure and clonal diversity of island populations of lady's slipper (<i>Cypripedium calceolus</i>) from the Biebrza National Park (northeast Poland), Molecular Ecology, 11, 2499, doi.org/10.1046/j.1365-294X.2002.01630.x ; Caliskan M. (2006), Isoenzyme variation in two allopatric populations of <i>Hedysarum pogonocarpum Boiss.</i> (Fabaceae), a Turkish endemic, Biochemical Systematics and Ecology, 34, 119, doi.org/10.1016/j.bse.2005.07.020 ; Celka Z. (2008), Relics of cultivation in Central Europe: <i>Malva alcea</i> L. as an example, Vegetation History and Archaeobotany, 17, 1, 251, doi.org/10.1007/s00334-008-0151-0 ; Celka Z. (2006a), Morphological variability of <i>Malva alcea</i> L. populations from Poland, Scripta Facultatis Rerum Naturalium Universitatis Ostraviensis, 163, 159. ; Celka Z. (2006b), Morphological variation of hairs in <i>Malva alcea</i> L. (Malvaceae), Biodiversity Research and Conservation, 3-4, 258. ; Celka Z. (2008), The population of <i>Malva alcea</i> at the medieval settlement: from distribution to the reproduction of individuals, Scripta Facultatis Rerum Naturalium Universitatis Ostraviensis, 186, 224. ; Celka Z. (2007), Differentiation of petals in the <i>Malva alcea</i> populations from the region of Central and Eastern Europe, Biodiversity Research and Conservation, 5-8, 17. ; Crawford D. (1989), Isozymes in Plant Biology, 146, doi.org/10.1007/978-94-009-1840-5_8 ; Dalby D. (1968), Flora Europea. Rosaceae to Umbelliferae, 2, 249. ; Diggle P. (1998), Clonal diversity in alpine populations of <i>Polygonum viviparum</i> (Polygonaceae), International Journal of Plant Sciences, 159, 606, doi.org/10.1086/297579 ; Dobrochaéva D. (1955), Flora URSR, 261. ; Drapikowska M. (2009), Morphological and biochemical variation among common reed (<i>Phragmites australis</i>) populations in northwest Poland, Oceanological and Hydrobiological Studies, 38, 2, 29, doi.org/10.2478/v10009-009-0019-3 ; P. Escobar García (2009), Five molecular markers reveal extensive morphological homoplasy and reticulate evolution in the Malva alliance (Malvaceae), Molecular Phylogenetics and Evolution, 50, 226, doi.org/10.1016/j.ympev.2008.10.015 ; Excoffier L. (1992), Analysis of molecular variance inferred from metric distances among DNA haplotypes: application to human mitochondrial DNA restriction data, Genetics, 131, 479. ; Frizzi G. (2007), Allozyme differentiation in four species of the Crocus cartwrightianus group and in cultivated saffron (<i>Crocus sativus</i>), Biochemical Systematics and Ecology, 35, 859, doi.org/10.1016/j.bse.2007.03.024 ; Gottlieb L. (1981), Electrophoretic evidence and plant populations, Progress in Phytochemistry, 7, 1. ; Guo W. (2003), Genetic diversity and clonal structure of <i>Phragmites australis</i> in the Yellow river delta of China, Biochemical Systematics and Ecology, 31, 1093, doi.org/10.1016/S0305-1978(03)00032-2 ; Hamrick J. (1989), Plant Population Genetics, Breeding and Genetic Resources, 43. ; Hamrick J. (1986), Frugivores and Seed Dispersal, 211. ; Hartl D. (1989), Principles of Population Genetics. ; Hegi G. (1925), Illustrierte Flora von Mitteleuropa, 453. ; Hlavaček A. (1982), Flora Slóvenska, III, 372. ; Hultén E. (1986), Atlas of North European Vascular Plants. North of the Tropic of Cancer, I-III. ; Il‵in M. (1974), Flora of the U. S. S. R, 15, 21. ; Inamdar J. (1969), Epidermal structure and stomatal development in some Malvaceae and Bombacaceae, Annals of Botany, 33, 865. ; Inamdar J. (1983), Structure, ontogeny, classification, and taxonomic significance of trichomes in Malvales, Korean Journal of. Botany, 26, 3, 151. ; Klotz S. (2002), BIOFLOR - Eine Datenbank mit biologisch-ökologischen Merkmalen zur Flora von Deutschland, Schriftenreihe für Vegetationskunde, 38, 1. ; Koltzenburg M. 2001. <i>Gefäßpflanzen Estlands.</i> <a target="_blank" href='http://www.zbi.ee/~tomkukk/nimestik'>Http://www.zbi.ee/~tomkukk/nimestik</a> ; Krzakowa M. (2007), Genetic differences and hybridization between Calamagrostis arundinacea and <i>C. villosa</i> (Poaceae) in anemo-orographic (A-O) system in the Karkonosze Mountains, Biochemical Systematics and Ecology, 35, 23, doi.org/10.1016/j.bse.2006.05.017 ; Kumar P. (1991), Development and structure of seed coat in <i>Malva</i> L, Phytomorphology, 41, 1-2, 147. ; Kuusk V. (1996), Flora of the Baltic Countries, II, 181. ; López-Pujol J. (2006), Allozyme variation and taxonomical implications of the endemic rocky plant <i>Erodium rupestre</i> (Geraniaceae), Biochemical Systematics and Ecology, 34, 219, doi.org/10.1016/j.bse.2005.11.002 ; Łukasiewicz A. (1962), Morfologiczno-rozwojowe typy bylin. PTPN, Prace Komisji Biologicznej, 27, 1, 1. ; Manly B. (1985), The Statistics of Natural Selection on Animal Populations, 272-282. ; Mantel R. (1976), Homothetic preferences and community excess demand functions, Journal of Economic Theory, 12, 197, doi.org/10.1016/0022-0531(76)90073-9 ; Marcussen T. (2006), Allozymic variation in the widespread and cultivated <i>Viola odorata</i> (Violaceae) in western Eurasia, Botanical Journal of the Linnean Society, 151, 563, doi.org/10.1111/j.1095-8339.2006.00543.x ; Mariot A. (2002), Genetic diversity in natural populations of, Piper cernuum. The American Genetic Association, 93, 365. ; Matuszkiewicz W. (2001), Vademecum Geobotanicum, 3, 1. ; Mirek Z. (2002), Biodiversity of Poland, 1. ; Mitton J. (1989), Isozymes in Plant Biology, 127, doi.org/10.1007/978-94-009-1840-5_7 ; Montes-Hernandez S. (2002), Genetic structure and indirect estimates of gene flow in three taxa of <i>Cucurbita</i> (Cucurbitaceae) in western Mexico, American Journal of Botany, 89, 1156, doi.org/10.3732/ajb.89.7.1156 ; Moraczewski I. (2008), Flora Ojczysta. System Identyfikacji Gatunków i Atlas. ; Nei M. (1972), Genetic distance between populations, American Naturalist, 106, 238. ; Nei M. (1978), Estimation of average heterozygosity and genetic distance from a small number of individuals, Genetics, 89, 583. ; Nei M. (1987), Molecular Evolutionary Genetics. ; Nielsen R. (2001), Statistical tests of selective neutrality in the age of genomics, Heredity, 86, 641, doi.org/10.1046/j.1365-2540.2001.00895.x ; Odrzykoski I. (2002), Badania nad Zmiennością Genetyczną Kosodrzewiny (Pinus mugo) z Wykorzystaniem Markerów Biochemicznych i Molekularnych. ; Peakall R. (2006), Genalex 6: genetic analysis in Excel. Population genetic software for teaching and research, Molecular Ecology Notes, 6, 288, doi.org/10.1111/j.1471-8286.2005.01155.x ; Rothmaler W. (2005), Exkursionsflora von Deutschland. Band 4 Gefäßpflanzen: Kritischer Band. ; Rutkowski L. (2004), Klucz do Oznaczania Roślin Naczyniowych Polski Niżowej. ; Slavík B. (1992), Květena České Republiky, 3, 282. ; Slavík B. (2002), Klíčke Květeně České Republiky, 286. ; (1989), Isozymes in Plant Biology, 4. ; Statsoft, INC. 2008. STATISTICA (data analysis software system), version 8.0. <a target="_blank" href='http://www.statsoft.com'>www.statsoft.com</a> ; Walas J. (1959), Flora Polska. Rośliny Naczyniowe Polski i Ziem Ościennych, 8, 278. ; Wendel J. (1989), Isozymes in Plant Biology, 5, doi.org/10.1007/978-94-009-1840-5_2 ; Wright S. (1951), The genetic structure of populations, Annals of Eugenics, 15, 323, doi.org/10.1111/j.1469-1809.1949.tb02451.x ; Wright S. (1965), The interpretation of population structure by F-statistics with special regard to systems of mating, Evolution, 19, 395, doi.org/10.2307/2406450 ; Wright S. (1978), Evolution and the Genetics of Populations, vol. IV. Variability Within and Among Natural Populations. ; Yeh C. (2000), Popgene-1.32: A free program for the analysis of genetic variation among and within populations using co-dominant and dominant markers. ; Zarzycki K. (2002), Biodiversity of Poland, 2, 1. ; Zubkevich G. (1999), Opredelitel' Vysshikh Rastenii Belarusi, 133.
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