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Characteristics and trends of selected pollen seasons recorded in Parma (Northern Italy) from 1994 to 2011

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Abstract

This study examines variations in the start date, end date, duration, date of peak, peak value and Seasonal Pollen Index (SPI) of airborne pollen seasons recorded in Parma, Northern Italy, in relation to meteorological data (1994–2011). Pollen data were collected in the city of Parma by volumetric spore trap. The following taxa were analysed: Alnus, Ambrosia, Artemisia, Betula, Amaranthaceae, Corylus, Cupressaceae, Plantago, Platanus, Poaceae and Urticaceae. Spearman’s rank correlation tests were used to establish whether significant relationships existed between the different characteristics of the pollen seasons. Simple linear regression analysis was also carried out in order to investigate trends over time. Only 12 % of the 66 characteristics examined showed significant changes over the study period. Temperatures increased significantly during the spring, but this did not appear to have a corresponding impact on seasonal characteristics related to the timing of pollen seasons (i.e. start date, peak date and end date). All of the observed changes were associated with characteristics that can be related to exposure (i.e. duration, peak value and SPI). For arboreal taxa, the SPI of Betula decreased significantly, and Platanus pollen seasons became significantly shorter. For herbaceous species, the SPI and peak values of Artemisia became significantly lower, whereas the SPI and peak values of Ambrosia became significantly higher. The SPI of Poaceae and Urticaceae also decreased significantly. The results of correlation analysis showed that various characteristics of pollen seasons are significantly related. This study provides an essential baseline for determining exposure of the allergic population to allergenic pollen and aids understanding of the incidence of pollinosis in Parma. Gaps still exist in current knowledge; not least, the need to quantify the degree of influence exerted by some of the principal factors driving environmental change, climate and land use.

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References

  • Aasa, A., Jaagus, J., Ahas, R., & Sepp, M. (2004). The influence of atmospheric circulation on plant phenological phases in central and eastern Europe. International Journal of Climatology, 24, 1551–1564.

    Article  Google Scholar 

  • Ahas, R., Aasa, A., Menzel, A., Fedotova, V. G., & Scheifinger, H. (2002). Changes in European spring phenology. International Journal of Climatology, 22, 1727–1738.

    Article  Google Scholar 

  • Albertini, R., Ciancianaini, P., Pinelli, S., Ridolo, E., & Dall’Aglio, P. (2001). Pollens in Parma 1995 to 2000. Allergy, 56(12), 1232–1233.

    Article  CAS  Google Scholar 

  • Albertini, R., Ugolotti, M., Peveri, S., Valenti, M., Usberti, I., Ridolo, E., & Dall’Aglio, P. (2012). Evolution of ragweed pollen concentrations, sensitization and related allergic clinical symptoms in Parma (northern Italy). Aerobiologia, 28(3), 347–354.

    Article  Google Scholar 

  • Allard, H. A. (1945). Flowering behaviour and natural distribution of the eastern ragweeds (Ambrosia) as affected by length of day. Ecology, 26(4), 387–394.

    Article  Google Scholar 

  • APGIII. (2009). An update of the Angiosperm phylogeny group classification for the orders and families of flowering plants: APG III. Botanical Journal of the Linnean Society, 161, 105–121.

    Article  Google Scholar 

  • Ariano, R., Canonica, G. W., & Passalacqua, G. (2010). Possible role of climate changes in variations in pollen seasons and allergic sensitizations during 27 years. Annals of Allergy, Asthma and Immunology, 104(3), 215–222.

    Article  Google Scholar 

  • Beggs, P. J. (2004). Impacts of climate change on aeroallergens: past and future. Clinical and Experimental Allergy, 34(10), 1507–1513.

    Article  CAS  Google Scholar 

  • Beggs, P. J., & Bambrick, H. J. (2005). Is the global rise of asthma an early impact of anthropogenic climate change? Environmental Health Perspectives, 113(8), 915–919.

    Article  CAS  Google Scholar 

  • Bertin, R. I. (2008). Plant phenology and distribution in relation to recent climate change. The Journal of the Torrey Botanical Society, 135(1), 126–146.

    Article  Google Scholar 

  • Bogawski, P., Grewling, L., Nowak, M., Smith, M. and Jackowiak, B. (2014). Trends in atmospheric concentrations of weed pollen in the context of recent climate warming in Poznań (Western Poland). International Journal of Biometeorology, 58(8),1759–1768.

  • Bousquet, J., Anto, J., Auffray, C., Akdis, M., Cambon-Thomsen, A., Keil, T., et al. (2011). MeDALL (Mechanisms of the Development of ALLergy): an integrated approach from phenotypes to systems medicine. Allergy, 66(5), 596–604.

    Article  CAS  Google Scholar 

  • Buters, J. T. M., Thibaudon, M., Smith, M., Kennedy, R., Rantio-Lehtimaki, A., Albertini, R., et al. (2012). Release of Bet v 1 from birch pollen from 5 European countries. Results from the HIALINE study. Atmospheric Environment, 55, 496–505.

    Article  CAS  Google Scholar 

  • Calderon, M. A., Birk, A. O., Andersen, J. S., & Durham, S. R. (2007). Prolonged preseasonal treatment phase with Grazax sublingual immunotherapy increases clinical efficacy. Allergy, 62(8), 958–961.

    Article  CAS  Google Scholar 

  • Ceter, T., Pinar, N. M., Guney, K., Yildiz, A., Asci, B., & Smith, M. (2012). A 2-year aeropalynological survey of allergenic pollen in the atmosphere of Kastamonu, Turkey. Aerobiologia, 28(3), 355–366.

    Article  Google Scholar 

  • Ciancianaini, P., Albertini, R., Pinelli, S., Lunghi, P., Ridolo, E., & Dall’Aglio, P. (2000). Betulaceae, Corylaceae, Cupressaceae, Fagaceae and Salicaceae around Parma (Northern Italy): Pollen calendars from 1995 to 1997. Aerobiologia, 16(2), 309–312.

    Article  Google Scholar 

  • Comtois, P. (1998). Statistical analysis of aerobiological data. In P. Mandrioli, P. Comtois, & V. Levizzani (Eds.), Methods in aerobiology. Bologna: Pitagora Editrice.

    Google Scholar 

  • Cox, C. S., & Wathes, C. M. (1995). Bioaerosols handbook. Londan: Lewis Publishers.

    Google Scholar 

  • D’Amato, G., Cecchi, L., Bonini, S., Nunes, C., Annesi-Maesano, I., Behrendt, H., et al. (2007). Allergenic pollen and pollen allergy in Europe. Allergy, 62, 976–990.

    Article  Google Scholar 

  • D’Amato, G., Spieksma, F. T. M., Liccardi, G., Jäger, S., Russo, M., Kontou-Fili, K., et al. (1998). Pollen related allergy in Europe. Allergy, 53, 567–578.

    Article  Google Scholar 

  • D’Amato, G., Baena-Cagnani, C. E., Cecchi, L., Annesi-Maesano, I., Nunes, C., Ansotegui, I., et al. (2013). Climate change, air pollution and extreme events leading to increasing prevalence of allergic respiratory diseases. Multidisciplinary Respiratory Medicine, 8(1), 12.

    Article  Google Scholar 

  • Emberlin, J. (1994). The effects of patterns in climate and pollen abundance on allergy. Allergy, 49, 15–20.

    Article  CAS  Google Scholar 

  • Emberlin, J., Detandt, M., Gehrig, R., Jaeger, S., Nolard, N., & Rantio-Lehtimäki, A. (2002). Responses in the start of Betula (birch) pollen seasons to recent changes in spring temperatures across Europe. International Journal of Biometeorology, 46, 159–170.

    Article  CAS  Google Scholar 

  • Emberlin, J., Mullins, J., Cordon, J., Jones, S., Millington, W., Brooke, M., & Savage, M. (1999). Regional variations in grass pollen seasons in the UK, long term trends and forecast models. Clinical and Experimental Allergy, 29, 347–356.

    Article  CAS  Google Scholar 

  • Emberlin, J., Savage, M., & Jones, S. (1993). Annual variations in grass pollen seasons in London 1961–1990: Trends and forecast models. Clinical and Experimental Allergy, 23, 911–918.

    Article  CAS  Google Scholar 

  • Fernández-Llamazares, Á., Belmonte, J., Delgado, R., & De Linares, C. (2014). A statistical approach to bioclimatic trend detection in the airborne pollen records of Catalonia (NE Spain). International Journal of Biometeorology, 58(3), 371–382.

    Article  Google Scholar 

  • Fitter, A. H., & Fitter, R. S. R. (2002). Rapid changes in flowering time in British plants. Science, 296, 1689–1691.

    Article  CAS  Google Scholar 

  • Frei, T., & Leuschner, R. (2000). A change from grass pollen induced allergy to tree pollen induced allergy: 30 years of pollen observation in Switzerland. Aerobiologia, 16(3–4), 407–416.

    Article  Google Scholar 

  • Frenguelli, G., Tedeschini, E., Veronesi, F., & Bricchi, E. (2002). Airborne pine (Pinus spp.) pollen in the atmosphere of Perugia (Central Italy): Behaviour of pollination in the two last decades. Aerobiologia, 18(3–4), 223–228.

    Article  Google Scholar 

  • Galán, C., Antunes, C., Brandao, R., Torres, C., Garcia-Mozo, H., Caeiro, E., et al. (2013). Airborne olive pollen counts are not representative of exposure to the major olive allergen Ole e 1. Allergy, 68(6), 809–812.

    Article  Google Scholar 

  • Galán, C., Cariñanos, P., Garcia Mozo, H., Alcazar, P., & Dominguez-Vilches, E. (2001). Model for forecasting Olea europaea L. airborne pollen in South–west Andalusia, Spain. International Journal of Biometeorology, 45, 59–63.

    Article  Google Scholar 

  • Gokmen, N. M., Ersoy, R., Gulbahar, O., Ardeniz, O., Sin, A., Unsel, M., & Kokuludag, A. (2012). Desensitization effect of preseasonal seven-injection allergoid immunotherapy with olive pollen on basophil activation: The efficacy of olive pollen-specific preseasonal allergoid immunotherapy on basophils. International Archives of Allergy and Immunology, 159(1), 75–82.

    Article  CAS  Google Scholar 

  • Grewling, Ł., Jackowiak, B., Nowak, M., Uruska, A., & Smith, M. (2012). Variations and trends of birch pollen seasons during 15 years (1996–2010) in relation to weather conditions in Poznań (Western Poland). Grana, 51(4), 280–292.

    Article  Google Scholar 

  • Hirst, J. M. (1952). An automatic volumetric spore trap. The Annals of Applied Biology, 39(2), 257–265.

    Article  Google Scholar 

  • Horak, F., Jaeger, S., Worm, M., Melac, M., & Didier, A. (2009). Implementation of pre-seasonal sublingual immunotherapy with a five-grass pollen tablet during optimal dosage assessment. Clinical and Experimental Allergy, 39(3), 394–400.

    Article  CAS  Google Scholar 

  • Huynen, M., Menne, B., Behrendt, H., Bertollini, R., Bonini, S., Brandao, R., Brown-Fährlander, C., Clot, B., D’Ambrosio, C., De Nuntiis, P., Ebi, K. L., Emberlin, J., Orbanne, E. E., Galán, C., Jäger, S., Kovats, S., Mandrioli, P., Martens, P., Menzel, A., Nyenzi, B., Rantio Lehtimäki, A., Ring, J., Rybnicek, O., Traidl-Hoffmann, Van Vliet, A., Voigt, T., Weiland, S. and Wickman, M. (2003). Phenology and human health: Allergic disorders. Rome, Italy: Report of a WHO meeting.

  • Jäger, S., Nilsson, S., Berggren, B., Pessi, A.-M., Helander, M., & Ramford, H. (1996). Trends in some airborne tree pollen in the Nordic countries and Austria, 1980–1993: A comparison between Stockholm, Trondheim, Turku and Vienna. Grana, 35, 171–178.

    Article  Google Scholar 

  • Myszkowska, D., Jenner, B., Stepalska, D., & Czarnobilska, E. (2011). The pollen season dynamics and the relationship among some season parameters (start, end, annual total, season phases) in Krakow, Poland, 1991–2008. Aerobiologia, 27(3), 229–238. (Bologna).

    Article  Google Scholar 

  • Negrini, A. C., Negrini, S., Giunta, V., Quaglini, S., & Ciprandi, G. (2011). Thirty-year survey on airborne pollen concentrations in Genoa, Italy: Relationship with sensitizations, meteorological data, and air pollution. American Journal of Rhinology & Allergy, 25(6), e232–e241.

    Article  Google Scholar 

  • Newnham, R. M., Sparks, T. H., Skjoth, C. A., Head, K., Adams-Groom, B., & Smith, M. (2013). Pollen season and climate: Is the timing of birch pollen release in the UK approaching its limit? International Journal of Biometeorology, 57(3), 391–400.

    Article  CAS  Google Scholar 

  • Pasqualini, S., Tedeschini, E., Frenguelli, G., Wopfner, N., Ferreira, F., D’Amato, G., & Ederli, L. (2011). Ozone affects pollen viability and NAD(P)H oxidase release from Ambrosia artemisiifolia pollen. Environmental Pollution, 159(10), 2823–2830.

    Article  CAS  Google Scholar 

  • Piotrowska, K., & Kubik-Komar, A. (2012). The effect of meteorological factors on airborne Betula pollen concentrations in Lublin (Poland). Aerobiologia, 28(4), 467–479.

    Article  Google Scholar 

  • Rasmussen, A. (2002). The effects of climate change on the birch pollen season in Denmark. Aerobiologia, 18, 253–265.

    Article  Google Scholar 

  • Ridolo, E., Albertini, R., Giordano, D., Soliani, L., Usberti, I., & Dall’Aglio, P. P. (2007). Airborne pollen concentrations and the incidence of allergic asthma and rhinoconjunctivitis in northern Italy from 1992 to 2003. International Archives of Allergy and Immunology, 142(2), 151–157.

    Article  CAS  Google Scholar 

  • Rosenzweig, C., Casassa, G., Karoly, D. J., Imeson, A., Liu, C., Menzel, A., Rawlins, S., Root, T. L., Seguin, B.& Tryjanowski, P., (Eds.) (2007). Assessment of observed changes and responses in natural and managed systems. Climate change 2007: Impacts, adaptation and vulnerability. contribution of working group ii to the fourth assessment report of the intergovernmental panel on climate change. Cambridge, UK, Cambridge University Press.

  • Rosenzweig, C., Karoly, D., Vicarelli, M., Neofotis, P., Wu, Q., Casassa, G., et al. (2008). Attributing physical and biological impacts to anthropogenic climate change. Nature, 453(7193), 353–357.

    Article  CAS  Google Scholar 

  • Sánchez-Mesa, J. A., Smith, M., Emberlin, J., Allitt, U., & Caulton, E. (2003). Characteristics of grass pollen seasons in areas of southern Spain and the United Kingdom. Aerobiologia, 19, 243–250.

    Article  Google Scholar 

  • Schappi, G. F., Suphioglu, C., Taylor, P. E., & Knox, R. B. (1997). Concentrations of the major birch tree allergen Bet v 1 in pollen and respirable fine particles in the atmosphere. Journal of Allergy and Clinical Immunology, 100(5), 656–661.

    Article  CAS  Google Scholar 

  • Smith, M., Cecchi, L., Skjoth, C. A., Karrer, G., & Sikoparija, B. (2013). Common ragweed: A threat to environmental health in Europe. Environment International, 61, 115–126.

    Article  CAS  Google Scholar 

  • Smith, M., Emberlin, J., Stach, A., Czamecka-Operacz, M., Jenerowicz, D., & Silny, W. (2007). Regional importance of Alnus pollen as an aeroallergen: A comparative study of Alnus pollen counts from Worcester (UK) and Poznat (Poland). Annals of Agricultural and Environmental Medicine, 14(1), 123–128.

    Google Scholar 

  • Smith, M., Jäger, S., Berger, U., Šikoparija, B., Hallsdottir, M., Sauliene, I., et al. (2014). Geographic and temporal variations in pollen exposure across Europe. Allergy, 69(7), 913–923.

    Article  CAS  Google Scholar 

  • Solomon, S., Qin, D., Manning, M., Chen, Z., Marquis, M., Averyt, K. B., Tignor, M. & Miller, H. L., (Eds.) (2007). Contribution of working group I to the fourth assessment report of the intergovernmental panel on climate change. Cambridge, United Kingdom and New York, NY, USA, Cambridge University Press.

  • Stach, A., Emberlin, J., Smith, M., Adams-Groom, B., & Myszkowska, D. (2008). Factors that determine the severity of Betula spp. pollen seasons in Poland (Poznań and Krakow) and the United Kingdom (Worcester and London). International Journal of Biometeorology, 52(4), 311–321.

    Article  CAS  Google Scholar 

  • Thackeray, S. J., Sparks, T. H., Frederiksen, M., Burthe, S., Bacon, P. J., Bell, J., et al. (2010). Trophic level asynchrony in rates of phenological change for marine, freshwater and terrestrial environments. Global Change Biology, 16, 3304–3313.

    Article  Google Scholar 

  • Travaglini, A., Albertini, R. and Zieger, E. (2009). Manuale di gestione e qualità della rete italiana di monitoraggio in Aerobiologia (R.I.M.A.®). Bologna: Associazione Italiana di Aerobiologia. ISBN 978-88-900277-1-0: 1–148.

  • Voltolini, S., Minale, P., Troise, C., Bignardi, D., Modena, P., Arobba, D., & Negrini, A. (2000). Trend of herbaceous pollen diffusion and allergic sensitisation in Genoa, Italy. Aerobiologia, 16(2), 245–249.

    Article  Google Scholar 

  • Walther, G.-R., Post, E., Convey, P., Menzel, A., Parmesan, C., Beebee, T. J. C., et al. (2002). Ecological responses to recent climate change. Nature, 416, 389–395.

    Article  CAS  Google Scholar 

  • Zar, J. H. (1999). Biostatistical analysis (4th ed.). Englewood Cliffs, NJ: Prentice Hall Publishers.

    Google Scholar 

  • Ziello, C., Sparks, T. H., Estrella, N., Belmonte, J., Bergmann, K. C., Bucher, E., et al. (2012). Changes to airborne pollen counts across europe. PLoS One, 7(4), e34076. doi:10.1371/journal.pone.0034076.

    Article  CAS  Google Scholar 

  • Ziska, L., Knowlton, K., Rogers, C., Dalan, D., Tierney, N., Elder, M. A., et al. (2011). Recent warming by latitude associated with increased length of ragweed pollen season in central North America. Proceedings of the national academy of sciences of the United States of America, 108(10), 4248–4251.

    Article  CAS  Google Scholar 

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Acknowledgments

The authors would like to thank Paolo Fantini (Physics Department of the University of Parma) for providing meteorological data. The authors are also grateful to the ITALIAN AEROBIOLOGY ASSOCIATION (AIA), which funded a Postdoctoral Fellowship in Aerobiology research and CATALANO FOUNDATION for its contributions.

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Correspondence to Roberto Albertini.

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Ugolotti, M., Pasquarella, C., Vitali, P. et al. Characteristics and trends of selected pollen seasons recorded in Parma (Northern Italy) from 1994 to 2011. Aerobiologia 31, 341–352 (2015). https://doi.org/10.1007/s10453-015-9368-4

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