Pokaż uproszczony rekord

dc.contributor.authorKaźmierczak, Andrzej
dc.contributor.authorZielińska, Katarzyna Maria
dc.contributor.authorMichalska, Ewa
dc.date.accessioned2021-11-15T11:51:38Z
dc.date.available2021-11-15T11:51:38Z
dc.date.issued2021
dc.identifier.citationZielińska, K.M., Kaźmierczak, A. & Michalska, E. Short-term cell death in tissues of Pulsatilla vernalis seeds from natural and ex situ conserved populations. Sci Rep 11, 16840 (2021). https://doi.org/10.1038/s41598-021-95668-2pl_PL
dc.identifier.urihttp://hdl.handle.net/11089/39761
dc.description.abstractPulsatilla vernalis is a IUCN listed species that occurs in mountain and lowland habitats. The seeds collected from different populations are remarkably diverse in their viability depending on locality or year of collection. We aim to analyse seed viability, among others, by investigation of the percentage of alive, dying, and dead cells in embryos and endosperm when comparing the seeds from a wild lowland population and ex situ cultivation of plants of lowland and Alpine origin. The cell death was detected by staining with two fluorescence probes, one penetrating only the changed nuclear membranes, the other penetrating also the unchanged cells. 54.5% of Alpine origin seeds were presumably capable of germination if they were sown after collection, however, four months later only 36.4% had healthy embryos. In the case of lowland wild plants it was 31.8% and 18.2%, and from ex situ, 27.3% and 13.6%, respectively. 27.3% of Alpine origin seeds had embryo in torpedo stage (9.1% in the case of lowland seeds). Mean weight of the former was 2.9 mg (2.0 mg in lowland ones). Our results confirm the significance of seed origin and seed weight on viability, and that Pulsatilla seeds have a short ‘germination time window’.pl_PL
dc.language.isoenpl_PL
dc.publisherSpringer Naturepl_PL
dc.relation.ispartofseriesScientific Reports;11:16840
dc.rightsUznanie autorstwa 4.0 Międzynarodowe*
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/*
dc.subjectConservation biologypl_PL
dc.subjectPhysiologypl_PL
dc.subjectPlant ecologypl_PL
dc.subjectPlant sciencespl_PL
dc.titleShort‑term cell death in tissues of Pulsatilla vernalis seeds from natural and ex situ conserved populationspl_PL
dc.typeArticlepl_PL
dc.page.number12pl_PL
dc.contributor.authorAffiliationDepartment of Cytophysiology, Faculty of Biology and Environmental Protection, University of Lodz, Banacha Str. 12/16, 90‑237, Lodz, Polandpl_PL
dc.contributor.authorAffiliationDepartment of Geobotany and Plant Ecology, Faculty of Biology and Environmental Protection, University of Lodz, Banacha Str. 12/16, 90‑237, Lodz, Polandpl_PL
dc.contributor.authorAffiliationDepartment of Geobotany and Plant Ecology, Faculty of Biology and Environmental Protection, University of Lodz, Banacha Str. 12/16, 90‑237, Lodz, Polandpl_PL
dc.identifier.eissn2045-2322
dc.referencesZielińska, K. M., Kiedrzynski, M., Grzyl, A. & Rewicz, A. Forest roadsides harbour less competitive habitats for a relict mountain plant (Pulsatilla vernalis) in lowlands. Sci. Rep. https://doi.org/10.1038/srep31913 (2016).pl_PL
dc.referencesZielińska, K. M., Kiedrzynski, M., Grzyl, A. & Tomczyk, P. P. Anthropogenic sites maintain the last individuals during the rapid decline of the lowland refugium of the alpine-arctic plant Pulsatilla vernalis (L.) Mill. Pak. J. Bot. 50, 211–215 (2018).pl_PL
dc.referencesGrzyl, A. & Ronikier, M. Pulsatilla vernalis (Ranunculaceae) in the Polish lowlands: Current population resources of a declining species. Pol. Bot. J. 56, 185–194 (2011).pl_PL
dc.referencesÅström, S. & Stridh, B. The present status of Pulsatilla vernalis in Sweden. Sven. Bot. Tidskr. 97, 117–126 (2003).pl_PL
dc.referencesChappuis, E. Pulsatilla vernalis. The IUCN Red List of Threatened Species 2014: e.T55730086A55730098. (2014). https://doi.org/10.2305/IUCN.UK.2014-1.RLTS.T55730086A55730098.en. Downloaded on 02 December 2020>.pl_PL
dc.referencesRonikier, M. et al. Phylogeography of Pulsatilla vernalis (L.) Mill. (Ranunculaceae): Chloroplast DNA reveals two evolutionary lineages across central Europe and Scandinavia. J. Biogeogr. 35, 1650–1664. https://doi.org/10.1111/j.1365-2699.2008.01907.x (2008).pl_PL
dc.referencesKiedrzyński, M., Zielińska, K. M., Kiedrzyńska, E. & Rewicz, A. Refugial debate: On small sites according to their function and capacity. Evol. Ecol. 31, 815–827. https://doi.org/10.1007/s10682-017-9913-4 (2017).pl_PL
dc.referencesBetz, C., Scheuerer, M. & Reisch, C. Population reinforcement—A glimmer of hope for the conservation of the highly endangered Spring Pasque flower (Pulsatilla vernalis). Biol. Conserv. 168, 161–167. https://doi.org/10.1016/j.biocon.2013.10.004 (2013).pl_PL
dc.referencesNawrocka-Grześkowiak, U. & Frydel, K. Spring pasque-flower (Pulsatilla vernalis (L.) Miller) localities in the Kaliska Forest District. Zarządzanie Ochroną Przyrody w Lasach 6, 77–84 (2012).pl_PL
dc.referencesGutterman, Y. In Seeds: The Ecology of Regeneration in Plant Communities (ed M. Fenner) 59–84 (CAB International, 2000).pl_PL
dc.referencesLuzuriaga, A. L., Escudero, A. & Perez-Garcia, F. Environmental maternal effects on seed morphology and germination in Sinapis arvensis (Cruciferae). Weed Res. 46, 163–174. https://doi.org/10.1111/j.1365-3180.2006.00496.x (2006).pl_PL
dc.referencesRao, N. K., Dulloo, M. E. & Engels, J. M. M. A review of factors that influence the production of quality seed for long-term conservation in genebanks. Genet. Resour. Crop Evol. 64, 1061–1074. https://doi.org/10.1007/s10722-016-0425-9 (2017).pl_PL
dc.referencesDoniak, M., Barciszewska, M. Z., Kaźmierczak, J. & Kaźmierczak, A. The crucial elements of the 'last step' of programmed cell death induced by kinetin in root cortex of V. faba ssp. minor seedlings. Plant Cell Rep. 33, 2063–2076. https://doi.org/10.1007/s00299-014-1681-9 (2014).pl_PL
dc.referencesDoniak, M., Byczkowska, A. & Kaźmierczak, A. Kinetin-induced programmed death of cortex cells is mediated by ethylene and calcium ions in roots of Vicia faba ssp minor. Plant Growth Regul. 78, 335–343. https://doi.org/10.1007/s10725-015-0096-0 (2016).pl_PL
dc.referencesDoniak, M., Kaźmierczak, A., Byczkowska, A. & Glińska, S. Reactive oxygen species and sugars may be the messengers in kinetin-induced death of field bean root cortex cells. Biol. Plant. 61, 178–186. https://doi.org/10.1007/s10535-016-0654-y (2017).pl_PL
dc.referencesTudela-Isanta, M. et al. Habitat-related seed germination traits in alpine habitats. Ecol. Evol. 8, 150–161. https://doi.org/10.1002/ece3.3539 (2018).pl_PL
dc.referencesBaskin, J. M. & Baskin, C. C. A classification system for seed dormancy. Seed Sci. Res. 14, 1–16. https://doi.org/10.1079/ssr2003150 (2004).pl_PL
dc.referencesFinch-Savage, W. E. & Leubner-Metzger, G. Seed dormancy and the control of germination. New Phytol. 171, 501–523. https://doi.org/10.1111/j.1469-8137.2006.01787.x (2006).pl_PL
dc.referencesLatrasse, D., Benhamed, M., Bergounioux, C., Raynaud, C. & Delarue, M. Plant programmed cell death from a chromatin point of view. J. Exp. Bot. 20, 5887–5900 (2016).pl_PL
dc.referencesBaskin, J. M., Baskin, C. C. & Li, X. Taxonomy, anatomy and evolution of physical dormancy in seeds. Plant Species Biol. 15, 139–152. https://doi.org/10.1046/j.1442-1984.2000.00034.x (2000).pl_PL
dc.referencesGrzyl, A. Biology and Ecology of Isolated Populations of Pulsatilla vernalis (L.) Mill. on the Eastern Limits of its RANGE in Poland. (PhD thesis. University of Lodz, Department of Geobotany and Plant Ecology, 2012).pl_PL
dc.referencesGrzyl, A., Kiedrzynski, M., Zielinska, K. M. & Rewicz, A. The relationship between climatic conditions and generative reproduction of a lowland population of Pulsatilla vernalis: The last breath of a relict plant or a fluctuating cycle of regeneration?. Plant Ecol. 215, 457–466. https://doi.org/10.1007/s11258-014-0316-0 (2014).pl_PL
dc.referencesOostermeijer, J. G. B., Vaneijck, M. W. & Dennijs, J. C. M. Offspring fitness in relation to population size and genetic variation in the rare perennial plant species Gentiana pneumonanthe (Gentianaceae). Oecologia 97, 289–296. https://doi.org/10.1007/bf00317317 (1994).pl_PL
dc.referencesOuborg, N. J. & Vantreuren, R. Variation in fitness-related characters among small and large populations of Salvia pratensis. J. Ecol. 83, 369–380. https://doi.org/10.2307/2261591 (1995).pl_PL
dc.referencesFischer, M. & Matthies, D. RAPD variation in relation to population size and plant fitness in the rare Gentianella germanica (Gentianaceae). Am. J. Bot. 85, 811–819. https://doi.org/10.2307/2446416 (1998).pl_PL
dc.referencesFrankham, R., Ballou, J. D. & Briscoe, D. A. Introduction to Conservation Genetics. (Cambridge University Press, 2002).pl_PL
dc.referencesHensen, I., Oberprieler, C. & Wesche, K. Genetic structure, population size, and seed production of Pulsatilla vulgaris Mill. (Ranunculaceae) in Central Germany. Flora 200, 3–14. https://doi.org/10.1016/j.flora.2004.05.001 (2005).pl_PL
dc.referencesJakobsson, A. & Eriksson, O. A comparative study of seed number, seed size, seedling size and recruitment in grassland plants. Oikos 88, 494–502. https://doi.org/10.1034/j.1600-0706.2000.880304.x (2000).pl_PL
dc.referencesMelser, C. & Klinkhamer, P. G. L. Selective seed abortion increases offspring survival in Cynoglossum officinale (Boraginaceae). Am. J. Bot. 88, 1033–1040. https://doi.org/10.2307/2657085 (2001).pl_PL
dc.referencesMeyer, K. M., Soldaat, L. L., Auge, H. & Thulke, H. H. Adaptive and selective seed abortion reveals complex conditional decision making in plants. Am. Nat. 183, 376–383. https://doi.org/10.1086/675063 (2014).pl_PL
dc.referencesBochenková, M., Hejcman, M. & Karlík, P. Effect of plant community on recruitment of Pulsatilla pratensis in dry grassland. Sci. Agric. Bohem. 2012, 127–133. https://doi.org/10.7160/sab.2012.430402 (2012).pl_PL
dc.referencesGhazoul, J. & Satake, A. Nonviable seed set enhances plant fitness: The sacrificial sibling hypothesis. Ecology 90, 369–377. https://doi.org/10.1890/07-1436.1 (2009).pl_PL
dc.referencesLaitinen, P. The Effects of Forest Fires on the Persistence of Pulsatilla vernalis (L.) Mill. edn, (Ms. thesis, University of Jyväskylä, Faculty of Mathematics and Science, Department of Biological and Environmental Science, 2008) [in Finnish with an English abstract].pl_PL
dc.referencesSkalická, R., Karlík, P., Hejcman, M. & Bochenková, M. In 17th Symposium of the European Grassland Federation. 388–390.pl_PL
dc.referencesArathi, H. S., Ganeshaiah, K. N., Shaanker, R. U. & Hedge, S. G. Seed abortion in Pongamia pinnata (Fabaceae). Am. J. Bot. 86, 659–662. https://doi.org/10.2307/2656574 (1999).pl_PL
dc.referencesBrookes, R. H., Jesson, L. K. & Burd, M. A test of simultaneous resource and pollen limitation in Stylidium armeria. New Phytol. 179, 557–565. https://doi.org/10.1111/j.1469-8137.2008.02453.x (2008).pl_PL
dc.referencesYang, C. F., Sun, S. G. & Guo, Y. H. Resource limitation and pollen source (self and outcross) affecting seed production in two louseworts, Pedicularis siphonantha and P. longiflora (Orobanchaceae). Bot. J. Linn. Soc. 147, 83–89. https://doi.org/10.1111/j.1095-8339.2005.00363.x (2005).pl_PL
dc.referencesCendán, C., Sampedro, L. & Zas, R. The maternal environment determines the timing of germination in Pinus pinaster. Environ. Exp. Bot. 94, 66–72. https://doi.org/10.1016/j.envexpbot.2011.11.022 (2013).pl_PL
dc.referencesLi, R. et al. Effects of cultivar and maternal environment on seed quality in Vicia sativa. Front. Plant Sci. 8. https://doi.org/10.3389/fpls.2017.01411 (2017).pl_PL
dc.referencesValencia-Diaz, S. & Montaña, C. Temporal variability in the maternal environment and its effect on seed size and seed quality in Flourensia cernua DC. (Asteraceae). J. Arid Environ. 63, 686–695. https://doi.org/10.1016/j.jaridenv.2005.03.024 (2005).pl_PL
dc.referencesChinnusamy, V., Gong, Z. Z. & Zhu, J. K. Abscisic acid-mediated epigenetic processes in plant development and stress responses. J. Integr. Plant Biol. 50, 1187–1195. https://doi.org/10.1111/j.1744-7909.2008.00727.x (2008).pl_PL
dc.referencesButuzova, O. G. Peculiarities of seed formation in Pulsatilla vulgaris and Helleborus niger (Ranunculaceae) with embryo postdevelopment. Botanicheskii Zhurnal (St. Petersburg) 103, 313—330 (2018) [in Russian].pl_PL
dc.referencesDuncan, C., Schultz, N., Lewandrowski, W., Good, M. K. & Cook, S. Lower dormancy with rapid germination is an important strategy for seeds in an arid zone with unpredictable rainfall. PLoS ONE 14. https://doi.org/10.1371/journal.pone.0218421 (2019).pl_PL
dc.referencesGremer, J. R., Kimball, S. & Venable, D. L. Within and among year germination in Sonoran Desert winter annuals: bet hedging and predictive germination in a variable environment. Ecol. Lett. 19, 1209–1218. https://doi.org/10.1111/ele.12655 (2016).pl_PL
dc.referencesVenable, D. L. Bet hedging in a guild of desert annuals. Ecology 88, 1086–1090. https://doi.org/10.1890/06-1495 (2007).pl_PL
dc.referencesEvans, M. E. K. & Dennehy, J. J. Germ banking: Bet-hedging and variable release from egg and seed dormancy. Q. R. Biol. 80, 431–451. https://doi.org/10.1086/498282 (2005).pl_PL
dc.referencesGoldberg, R. B., de Paiva, G. & Yadegari, R. Plant embryogenesis - zygote to seed. Science 266, 605–614. https://doi.org/10.1126/science.266.5185.605 (1994).pl_PL
dc.referencesLester, R. N. & Kang, J. H. Embryo and endosperm function and failure in Solanum species and hybrids. Ann. Bot. 82, 445–453. https://doi.org/10.1006/anbo.1998.0695 (1998).pl_PL
dc.referencesLopes, M. A. & Larkins, B. A. Endosperm origin, development, and function. Plant Cell 5, 1383–1399. https://doi.org/10.1105/tpc.5.10.1383 (1993).pl_PL
dc.referencesYan, D. W., Duermeyer, L., Leoveanu, C. & Nambara, E. The functions of the endosperm during seed germination. Plant Cell Physiol. 55, 1521–1533. https://doi.org/10.1093/pcp/pcu089 (2014).pl_PL
dc.referencesWillis, C. G. et al. The evolution of seed dormancy: Environmental cues, evolutionary hubs, and diversification of the seed plants. New Phytol. 203, 300–309. https://doi.org/10.1111/nph.12782 (2014).pl_PL
dc.referencesPoisot, T., Bever, J. D., Nemri, A., Thrall, P. H. & Hochberg, M. E. A conceptual framework for the evolution of ecological specialisation. Ecol. Lett. 14, 841–851. https://doi.org/10.1111/j.1461-0248.2011.01645.x (2011).pl_PL
dc.referencesPfeifer, E., Holderegger, R., Matthies, D. & Rutishauser, R. Investigation on the population biology of a flagship species of dry meadows: Pulsatilla vulgaris Mill. in north-eastern Switzerland. Bot. Helvet. 112, 153–171 (2002).pl_PL
dc.referencesGargiulo, R. et al. Conservation of the threatened species, Pulsatilla vulgaris Mill. (Pasqueflower), is aided by reproductive system and polyploidy. J. Hered. 110, 618–628. https://doi.org/10.1093/jhered/esz035 (2019).pl_PL
dc.referencesSeglias, A. E., Williams, E., Bilge, A. & Kramer, A. T. Phylogeny and source climate impact seed dormancy and germination of restoration-relevant forb species. PLoS ONE 13. https://doi.org/10.1371/journal.pone.0191931 (2018).pl_PL
dc.referencesByczkowska, A., Kunikowska, A. & Kaźmierczak, A. Determination of ACC-induced cell-programmed death in roots of Vicia faba ssp. minor seedlings by acridine orange and ethidium bromide staining. Protoplasma 250, 121–128. https://doi.org/10.1007/s00709-012-0383-9 (2013).pl_PL
dc.referencesDray, S. & Dufour, A. B. The ade4 package: Implementing the duality diagram for ecologists. J. Stat. Softw. 22, 1–20. https://doi.org/10.18637/jss.v022.i04 (2007).pl_PL
dc.referencesKassambara, A. & Mundt, F. factoextra: Extract and Visualize the Results of Multivariate Data Analyses. R package version 1.0.7. https://CRAN.R-project.org/package=factoextra (2020).pl_PL
dc.referencesWickham, H. ggplot2: Elegant Graphics for Data Analysis (Springer, 2016).pl_PL
dc.referencesOksanen, J. et al. vegan: Community Ecology Package. R package version 2.5-6. https://CRAN.R-project.org/package=vegan (2019).pl_PL
dc.referencesFox, F. & Weisberg, S. An {R} Companion to Applied Regression, Third Edition. (Sage, 2019). https://socialsciences.mcmaster.ca/jfox/Books/Companion/.pl_PL
dc.identifier.doi10.1038/s41598-021-95668-2
dc.disciplinenauki biologicznepl_PL


Pliki tej pozycji

Thumbnail
Thumbnail

Pozycja umieszczona jest w następujących kolekcjach

Pokaż uproszczony rekord

Uznanie autorstwa 4.0 Międzynarodowe
Poza zaznaczonymi wyjątkami, licencja tej pozycji opisana jest jako Uznanie autorstwa 4.0 Międzynarodowe