Details

Title

Was Reduced Pollen Viability in Viola tricolor L. the Result of Heavy Metal Pollution or Rather the Tests Applied?

Journal title

Acta Biologica Cracoviensia s. Botanica

Yearbook

2010

Numer

No 1

Publication authors

Divisions of PAS

Nauki Biologiczne i Rolnicze

Publisher

Biological Commission of the Polish Academy of Sciences – Cracow Branch

Date

2010

Identifier

ISSN 0001-5296 ; eISSN 1898-0295

References

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(1975), Respiration and vitality of binucleate and trinucleate pollen, Physiologia Plantarum, 34, 221. ; Izmaiłow R. (2000), Reproduction of <i>Viccia cracca</i> L. in the polluted environment of the Legnica - Głogów copper basin (Poland), Acta Biologica Cracoviensia Series Botanica, 42, 2, 125. ; Izmaiłow R. (2003), Reproduction of <i>Echium vulgare</i> L. (<i>Boraginaceae</i>) at contaminated sites, Acta Biologica Cracoviensia Series Botanica, 45, 1, 69. ; Kelly J. (2002), A method to estimate pollen viability from pollen size variation, American Journal of Botany, 89, 6, 1021. ; Khatun S. (1995), The estimation of pollen viability in rice, Journal of Experimental Botany, 46, 1, 151. ; Klein M. (2000), Pollen studies in plant breeding and selection, Botanical Guidebooks, 24, 171. ; Kłosowska K. (2009), Wpływ warunków skażonego siedliska poboczy szlaków komunikacyjnych na procesy embriologiczne u wybranych gatunków roślin (<i>Lotus corniculatus</i> L. i <i>Lepidium ruderale</i> L.), Journal of Elementology, 14, 47. ; Kościńska-Pająk M. (2000), Microspores and pollen grain in triploid <i>Chondrilla juncea</i> L. from unpolluted and polluted areas, Acta Biologica Cracoviensia Series Botanica, 42, 2, 135. ; Lankinen Å. (2001), In vitro pollen competitive ability in <i>Viola tricolor</i>: temperature and pollen donor effects, Oecologia, 128, 492. ; Lankinen Å. (2008), Root competition influences pollen competitive ability in <i>Viola tricolor:</i> effects of presence of a competitor beyond resource availability?, Journal of Ecology, 96, 4, 756. ; Malayeri B. (2005), Effect of heavy metals on the developmental stages of ovule and embryonic sac in, Euphorbia cheiradenia. Pakistan Journal of Biological Science, 8, 4, 622. ; Melser C. (2001), Selective seed abortion increases offspring survival in <i>Cynoglossum officinale</i> (Boraginaceae), American Journal of Botany, 88, 6, 1033. ; Mičieta K. (1996), Microspore analysis for genotoxicity of a polluted environment, Environmental and Experimental Botany, 36, 1, 21. ; Nepi M. (2000), Cytochemistry of mature angiosperm pollen, Plant Systematics and Evolution, 222, 45. ; Ostrolucká M. (1989), Differentiation of male reproductive organs and oak fertility in urban environment, Biologia (Bratislava), 44, 9, 793. ; Ostrolucká M. (1995), Vitality of pine pollen (<i>Pinus sylvestris</i> L. and <i>Pinus nigra</i> Arnold) on sites with different ecological conditions, Biologia (Bratislava), 50, 47. ; Rodriguez-Riano T. (2000), A new procedure to asses pollen viability, Sexual Plant Reproduction, 12, 4, 241. ; Shivanna K. (1992), Pollen Biology. A Laboratory Manual. ; Singh R. (2003), Plant Cytogenetics. ; Siuta A. 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(2004), In vitro manipulation of Cucumber (<i>Cucumis sativus</i> L.) pollen and microspores: isolation procedures, viability tests, germination, maturation, Acta Biologica Cracoviensia Series Botanica, 46, 177. ; Walker J. (1975), The bases of angiosperm phylogeny: Palynology, Annals of the Missouri Botanical Garden, 62, 664. ; Wędzony M. (1996), Mikroskopia Fluorescencyjna dla Botaników. Polska Akademia Nauk, Zakład Fizjologii Roślin im. ; Wierzbicka M. (1998), The adaptation of <i>Silene vulgaris</i> to the growth on a calamine waste heap (S Poland), Environmental Pollution, 101, 415. ; Yousefi N. (2009), Effect of heavy metals on the developmental stages of ovule and seed proteins in <i>Chenopodium botrys</i> L. (Chenopodiaceae), Biological Trace Element Research, doi.org/10.1007/212011-009-8386-x

DOI

10.2478/v10182-010-0016-6

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