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Research Articles

Morphological variability of Consolida regalis seeds of south-eastern and central Europe

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Pages 25-34 | Received 03 Jan 2016, Accepted 05 Jul 2016, Published online: 16 Sep 2016

References

  • WorldClim – Global Climate Data, version 1.4. Retrieved from http://www.worldclim.org (accessed 5 September 2015).
  • Bacchetta, G., García, P. E., Grillo, O., Mascia, F., & Venora, G. (2011). Seed image analysis provides evidence of taxonomical differentiation within the Lavatera triloba aggregate (Malvaceae). Flora, 206, 468–472. doi:10.1016/j.flora.2011.01.006
  • Ballian, D., & Mujagić-Pašić, A. (2013). Morphological variability of the fruit and seed of wild cherry (Prunus avium L.) in a part of its natural distribution in Bosnia and Herzegovina. Biologica Nyssana, 4, 15–17. Retrieved from http://journal.pmf.ni.ac.rs (accessed 15 October 2015).
  • Barnes, P. W., Flint, S. D., & Caldwell, M. M. (1990). Morphological responses of crop and weed species of different growth forms to ultraviolet-B radiation. American Journal of Botany, 77, 1354–1360. Retrieved from http://www.jstor.org/stable/2444596 (accessed 20 October 2015).
  • Baskin, C. C., & Baskin, J. M. (2001). Seeds: ecology, biogeography, and evolution of dormancy and germination. San Diego: Academic Press.
  • Bazzaz, F. A., Ackerly, D. D., & Reekie, E. G. (2000). Reproductive allocation in plants. In M. Fenner (Ed.), Seeds, the ecology of regeneration in plant communities (pp. 1–30). Oxon: CABI Publishing.
  • Bojňanský, V., & Fargašová, A. (2007). Atlas of seeds and fruits of central and East-European flora. The carpathian mountains region. Dordrecht: Springer.
  • Bomanowska, A. (2010). Threat to arable weeds in Poland in the light of national and regional red lists. Plant Breeding and Seed Science, 61, 55–74. doi:10.2478/v10129-010-0013-7
  • Bomanowska, A., Rzetelska, A., & Rewicz, A. (2013). Zmienność morfologiczna Bromus hordeaceus subsp. hordeaceus (Poaceae) na siedliskach rolniczych [Morphological variation of Bromus hordeaceus subsp. hordeaceus (Poaceae) in varied agricultural habitats]. Fragmenta Floristica et Geobototanica Polonica, 20, 185–198 [In Polish].
  • Brütting, C., Wesche, K., Meyer, S., & Hensen, I. (2012). Genetic diversity of six arable plants in relation to their Red List status. Biodiversity and Conservation, 21, 745–761. doi:10.1007/s10531-011-0212-z
  • Constantinidis, T., Psaras, G. K., & Kamari, G. (2001). Seed morphology in relation to infrageneric classification of Consolida (DC.) Gray (Ranunculaceae). Flora, 196, 81–100. Retrieved from http://www.urbanfischer.de/journals/flora (accessed 26 November 2015).
  • Drapikowska, M. (2013). Variability of Anthoxanthum species in Poland in relation to geographical-historical and environmental conditions: Morphological and anatomical variation. Biodiversity Research and Conservation, 30, 3–61. doi:10.2478/biorc-2013-0010
  • Ellenberg, H., Weber, H. E., Düll, R., Wirth, V., Werner, W., & Paulissen, D. (1992). Zeigerwerte von Pflanzen in Mitteleuropa [Indicator values of plants in Central Europe]. Scripta Geobotanica, 18, 1–248 [In German].
  • Faast, R., Facelli, J. M., & Austin, A. D. (2011). Seed viability in declining populations of Caladenia rigida (Orchidaceae): Are small populations doomed? Plant Biology, 13, 86–95. doi:10.1111/j.1438-8677.2010.00367.x
  • Feráková, V., Maglocký, Š., & Marhold, K. (2001). Červený zoznam paprad'orastov a semenných rastlín [Red list of cryptogamous and vascular plants]. Ochrana Prírody, 20(Suppl.), 44–77 [In Czech].
  • Fried, G., Norton, L. R., & Reboud, X. (2008). Environmental and management factors determining weed species composition and diversity in France. Agriculture, Ecosystems and Environment, 128, 68–76. doi:10.1016/j.agee.2008.05.003
  • Geritz, S. A. H. (1998). Co-evolution of seed size and seed predation. Evolutionary Ecology, 12, 891–911. doi:10.1023/A:1006551720526
  • Hendrix, S. D. (1984). Variation in seed weight and its effects on germination in Pastinaca sativa L. (Umbelliferae). American Journal of Botany, 71, 795–802. Retrieved from http://www.jstor.org/stable/2443470 (accessed 13 November 2015).
  • Hijmans, R. J., Cameron, S. E., Parra, J. L., Jones, P. G., & Jarvis, A. (2005). Very high resolution interpolated climate surfaces for global land areas. International Journal of Climatology, 25, 1965–1978. doi:10.1002/joc.1276
  • Hulina, N. (2005). List of threatened weeds in the continental part of Croatia and their possible conservation. Agriculturae Conspectus Scientificus, 70, 37–42.
  • Hultén, E., & Fries, M. (1986). Atlas of north European vascular plants. North of the Tropic of Cancer. Koenigstein: Koeltz Scientific Books.
  • Huseinović, S., Osmanović, S., Terzić, Z., & Šabanović, M. (2014). Morphological and ecological differentiation of the fruit of Fragaria vesca L. (Rosaceae) from different habitats in Bosnia and Herzegovina. Biologica Nyssana, 5, 75–82. Retrieved from http://journal.pmf.ni.ac.rs (accessed 17 October 2015).
  • Jankowska-Błaszczuk, M. (1996). Ekologiczne znaczenie wielkości nasion [Ecological aspect of seed size]. Wiadomości botaniczne, 40, 21–28 [In Polish].
  • Klotz, S., Kühn, I., & Durka, W. (2002). BIOLFLOR – Eine Datenbank mit biologisch-ökologischen Merkmalen zur Flora von Deutschland [A database for the flora of Germany with biological and ecological features]. BiolFlor Version 1.1 (Web-Service). Bonn: Schriftenreihe für Vegetationskunde. Retrieved from http://www2.ufz.de/biolflor (accessed 10 November 2015).
  • Kaya, A., Ünal, M., Özgökçe, F., Doğan, B., & Martin, E. (2011). Fruit and seed morphology of six species previously placed in Malcolmia (Brassicaceae) in Turkey and their taxonomic value. Turkish Journal of Botany, 35, 653–662. doi:10.3906/bot-1010-99
  • Kovach, W. L. (2007). MVSP a multivariate statistical package for Windows, 3.1 Users’ Manual. Pentraeth, Wales, UK: Kovach Computing Services.
  • Kubicka, H., Gozdowski, D., & Skrajna, T. (2015). Multivariate evaluation of variability of Bromus genotypes from north-eastern Poland. Applied Ecology and Environmental Research, 13, 809–818. doi:10.15666/aeer/1303_809818
  • Kubicka-Matusiewicz, H., Matusiewicz, M., & Skrajna, T. (2013). Morphological diversity of Polygonum lapathifolium L. subsp. lapathifolium in the agrocenoses of the Wigry National Park and its buffer zone. Environmental Protection and Natural Resources, 24, 35–39. doi:10.2478/oszn-2013-0016
  • Leishman, M. R., Wright, I. J., Moles, A. T., & Westoby, M. (2000). The evolutionary ecology of seed size. In M. Fenner (Ed.), Seeds – the ecology of regeneration in plant communities (pp. 31–57). Wallingford: CAB International.
  • Lepš, J., & Šmilauer, P. (2003). Multivariate analysis of ecological data using CANOCO. Cambridge: University Press.
  • Li, B., Suzuki, J. I., & Hara, T. (1998). Latitudinal variation in plant size and relative growth rate in Arabidopsis thaliana. Oecologia, 115, 293–301. doi:10.1007/s004420050519
  • Luontoportti (2014). Retrieved from http://www.luontoportti.com (accessed 4 November 2015).
  • Meissner, W. (2010). Przewodnik do ćwiczeń z przedmiotu metody statystyczne w biologii. [Handbook for the statistical methods in biology]. Gdańsk: Wydawnictwo Uniwersytetu Gdańskiego [In Polish].
  • Metzger, M. J., Bunce, R. G. H., Jongman, R. H. G., Mücher, C. A., & Watkins, J. W. (2005). A climatic stratification of the environment of Europe. Global Ecology and Biogeography, 14, 549–563. doi:10.1111/j.1466-822X.2005.00190.x
  • Meyer, S., Wesche, K., Hans, J., Leuschner, C., & Albach, D. C. (2015). Landscape complexity has limited effects on genetic structure of two arable plant species, Adonis aestivalis and Consolida regalis. Weed Research, 55, 406–415. doi:10.1111/wre.12150
  • Meyer, S., Wesche, K., Metzner, J., van Elsen, T., & Leuschner, C. (2010). Are current agri-environment schemes suitable for long-term conservation of arable plants? – A short review of different conservation strategies from Germany and brief remarks on the new project ‘100 fields for diversity’. Aspects of Applied Biology, 100, 287–294. Retrieved from http://www.aab.org.uk (accessed 25 October 2015).
  • Moser, D., Gygax, A., Bäumler, B., Wyler, N., & Palese, R. (2002). Rote Liste der gefährdeten Farn-und Blütenpflanzen der Schweiz [Red list of threatened ferns and flowering plants in Switzerland]. Bern: BUWAL [In German].
  • Novikoff, A. V., & Jabbour, F. (2014). Floral anatomy of Delphiniae (Ranunculaceae): Comparing flower organization and vascular patterns. Modern Phytomorphology, 5, 35–44. Retrieved from https://phytomorphology.org (accessed 22 October 2015).
  • Olsson, K., & Agren, J. (2002). Latitudinal population differentiation in phenology, life history and flower morphology in the perennial herb Lythrum salicaria. Journal of Evolutionary Biology, 15, 983–996. doi:10.1046/j.1420-9101.2002.00457.x
  • Rezmerska-Piętka, J., & Radecki, A. (2010). Wpływ wieloletniego nawożenia mineralnego i organicznego na wybrane cechy morfologiczne Centaurea cyanus L. [The influence of long-term mineral and organic fertilization on selected morphological features of Centaurea cyanus L.]. Annales Universitatis Mariae Curie-Skłodowska, Section E, 65, 51–58. doi:10.2478/v10081-010-0030-0 [In Polish]
  • Rewicz, A., Kołodziejek, J., & Jakubska-Busse, A. (2016). The role of anthropogenic habitats as substitutes for natural habitats: A case study on Epipactis helleborine (L.) Crantz (Orchidaceae, Neottieae). Variations in size and nutrient composition of seeds. Turkish Journal of Botany, 40, 258–268. doi:10.3906/bot-1404-69
  • Saadaoui, E., Martín Gómez, J. J., & Cervantes, E. (2013). Intraspecific variability of seed morphology in Capparis spinosa L. Acta Biologica Cracoviensia Series Botanica, 55, 99–106. doi:10.2478/abcsb-2013-0027
  • Saatkamp, A., Affre, L., Dutoit, T., & Poschlod, P. (2009). The seed bank longevity index revisited: Limited reliability evident from a burial experiment and database analyses. Annals of Botany, 104, 715–724. doi:10.1093/aob/mcp148
  • Salisbury, E. J. (1942). The reproductive capacity of plants. Studies in quantitative biology. London: Bell and Sons.
  • Silvertown, J. (1989). The paradox of seed size and adaptation. Trends in Ecology & Evolution, 1, 24–26. doi:10.1016/0169-5347(89)90013-X
  • Skrajna, T. (2010). Diaspory chwastów w materiale nasiennym zbóż jarych i ozimych [Weed diaspores in seminal material of winter and spring cereals]. Fragmenta Agronomica, 27, 118–126 [In Polish].
  • Skrajna, T., Kubicka, H., & Rzymowska, Z. (2012). Phenotypic variation in relation to seed storage protein polymorphism in Bromus secalinus L. (Gramineae) populations from north–eastern Poland. Polish Journal of Ecology, 60, 41–55. Retrieved from http://www.pje.miiz.waw.pl (accessed 15/10/2015).
  • Skrajna, T., Ługowska, M., & Skrzyczyńska, J. (2013). Consolida regalis Gray seed production as influenced by the habitat and crop plant in the Western Podlasie region. Acta Agrobotanica, 66, 165–172. Retrieved from https://pbsociety.org.pl (accessed 25 October 2015).
  • Stace, C. A. (1992). Plant Taxonomy and Biosystematics. Cambridge: Cambridge University Press.
  • StatSoft Inc., S. (2011). STATISTICA (data analysis software system), version 10. Retrieved from www.statsoft.com (accessed 10 September 2015).
  • Stuessy, T. F., (2009). Plant taxonomy: The systematic evaluation of comparative data. New York: Columbia University Press.
  • Sultan, S. E. (1995). Phenotypic plasticity and plant adaptation. Acta Botanica Neerlandica, 44, 363–383. doi:10.1111/j.1438-8677.1995.tb00793.x
  • Sultan, S. E. (2000). Phenotypic plasticity for plant development, function and life history. Trends in Plant Science, 5, 537–542. doi:10.1016/S1360-1385(00)01797-0
  • Sultan, S. E. (2001). Phenotypic plasticity for fitness components in Polygonum species of contrasting ecological breadth. Ecology, 82, 328–343. doi:10.1890/0012-9658(2001)082[0328:PPFFCI]2.0.CO;2
  • Szymura, M., & Szymura, T. H. (2013). Soil preferences and morphological diversity of goldenrods (Solidago L.) from south-western Poland. Acta Societatis Botanicorum Poloniae, 82, 107–115. doi:10.5586/asbp.2013.005
  • Tilman, D. (1988). Plant strategies and the dynamics and structure of plant communities. New Jersey: Princeton University Press.
  • Truchan, M. (2005). Międzypopulacyjne zróżnicowanie owoców i nasion Plantago lanceolata L [Interpopulation variation of fruits and seeds of Plantago lanceolata L.]. Słupskie Prace Biologiczne, 2, 135–146 [In Polish].
  • van Emden, H. (2008). Statistics for terrified biologists. USA, UK, Australia: Blackwell Publishing.
  • Westoby, M., Leishman, M., & Lord, J. (1996). Comparative ecology of seed size and dispersal. Philosophical Transactions of the Royal Society B Biological Sciences, 351, 1309–1318. doi:10.1098/rstb.1996.0114
  • Wollenberg, A. L. van den (1977). Redundancy analysis an alternative for canonical correlation analysis. Psychometrika, 42, 207–219. doi:10.1007/BF02294050
  • Zając, M., & Zając, A. (2014). Survival problems of archaeophytes in the Polish flora. Biodiversity Research and Conservation, 35, 47–56. doi:10.2478/biorc-2014-0015

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