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Plant Phenology in Western Canada: Trends and Links to the View From Space

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Abstract

One feature of climate change is the trends to earlier spring onset in many north temperate areas of the world. The timing of spring flowering and leafing of perennial plants is largely controlled by temperature accumulation; both temperature and phenological records illustrate changes in recent decades. Phenology studies date back over a century, with extensive databases existing for western Canada. Earlier spring flowering has been noted for many woody plants, with larger trends seen for species that develop at spring's start. Implications for ecosystems of trends to earlier spring arrival include changes in plant species composition, changes in timing and distribution of pests and disease, and potentially disrupted ecological interactions. While Alberta has extensive phenology databases (for species, years, and geographic coverage) for recent decades, these data cannot provide continuous ground coverage. There is great potential for phenological data to provide ground validation for satellite imagery interpretation, especially as new remote sensors are becoming available. Phenological networks are experiencing a resurgence of interest in Canada (www.plantwatch.ca) and globally, and linking these ground-based observations with the view from space will greatly enhance our capacity to track the biotic response to climate changes.

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References

  • Beaubien, E. G.: 1991a, ‘Phenology of vascular plant flowering in Edmonton and across Alberta’, MSc thesis. Dept. of Botany, University of Alberta, Edmonton, Alberta.

    Google Scholar 

  • Beaubien, E. G.: 1991b, ‘Phenology, the potential for education’, in Proceedings of the second endangered species and prairie conservation workshop, Regina, Saskatchewan, January, 1989. G.L. Holroyd, G. Burns, and H.C. Smith (ed.) Provincial Museum of Alberta Natural History Occasional Paper #15. Edmonton, Alberta. pp. 117–121.

  • Beaubien, E. G.: 1996, ‘Plantwatch, a model to initiate phenology in school classes’, Phenology and Seasonality 1, 33–35.

    Google Scholar 

  • Beaubien, E. G. and Freeland, H. J.: 2000, ‘Spring phenology trends in Alberta, Canada: links to ocean temperature’, Intern. J. Biometeorol. 44, 53–59.

    Google Scholar 

  • Beaubien, E. G. and Johnson, D. L.: 1994, ‘Flowering plant phenology and weather in Alberta, Canada’, Intern. J. Biometeorol. 38, 23–27.

    Google Scholar 

  • Bradley, N. L., Leopold, A. C., Ross, J. and Huffaker, W.: 1999, ‘Phenological changes reflect climate change in Wisconsin’, Proceedings of the National Academy of Sciences, USA. 96, 9701–9704.

    Google Scholar 

  • Cayan, D. R., Kammerdiener, S. A., Dettinger, M. D., Caprio, J. M. and Peterson, D. H.: 2001, ‘Changes in the Onset of Spring in the Western United States’, Bull. Am. Meteorol. Soc. 82, 399–415.

    Google Scholar 

  • Chmielewski, F.-M. and Rötzer, T.: 2001, ‘Response of tree phenology to climate change across Europe’, Agricult. Forest Meteorol. 108, 101–112.

    Google Scholar 

  • Chuine, I. and Beaubien, E.: 2001, ‘Phenology is a major determinant of tree species range’, Ecol. Lett. 4, 500–510.

    Google Scholar 

  • Defries, R., Hansen, N., and Townsend, J.: 1995, ‘Global discrimination of land-cover types from metrics derived from AVHRR Pathfinder data’, Remote Sens. Environ. 54, 209–226.

    Google Scholar 

  • Deutscher Wetterdienst. circa 1995. Economic Benefit of the Agrometeorology Service.

  • Eidenshink, J. R. and Faundeen, J. R.: 1994, ‘The 1-km AVHRR global land data set: first stages in implementation’, Intern. J. Remote Sens. 15/17, 3443–3463.

    Google Scholar 

  • GeoComp: 1997, http://ceocat.ccrs.nrcan.gc.ca/client_acc/guides/geocomp/geocomp.html Accessed 2002–03–11.

  • GeoGratis: 2001, http://geogratis.cgdi.gc.ca/frames.html

  • Lechowicz, M. J.: 2001, ‘Phenology’. Encyclopedia of Global Environmental Change, Volume 2.The Earth System: biological and ecological dimensions of global environmental change. Wiley, London.

    Google Scholar 

  • Lieth, H.: 1996, ‘The Phenology Study Group’. Phenology and Seasonality 1, 1, 3–4.

    Google Scholar 

  • Markon, C. J. and Peterson, A. M.: 2002, ‘The utility of estimate net primary productivity Over Alaska using baseline AVHRR data’, Intern. J. Remote Sens. 23, 4571–4596.

    Google Scholar 

  • Menzel, A. and Fabian, P.: 1999, ‘Growing season extended in Europe’, Nature 397, 659.

    Google Scholar 

  • Menzel, A., Estrella, N. and Fabian, P.: 2001, ‘Spatial and temporal variability of the phonological seasons in Germany from 1951 to 1996’, Glob. Change Biol. 7, 657–666.

    Google Scholar 

  • MODIS: 2002, http://edcdaac.usgs.gov/modis/dataprod.html Accessed 2002–11–07.

  • Myneni, R. B, Keeling, C. D., Tucker, C. J., Asrars. G and Nemanii, R. R.: 1997, ‘Increased plant growth in the northern high latitudes from 1981 to 1991’, Nature 386, 698–701.

    Google Scholar 

  • Peñuelas, J. and Filella, I.: 2001, ‘Responses to a Warming World’, Science 294, 793–795.

    Google Scholar 

  • Pitelka, L. F. and the Plant Migration Workshop Group.: 1997, ‘Plant Migration and Climate Change’, Am. Sci. 85, 464–473.

    Google Scholar 

  • Rathcke, B. and Lacey, E. P.: 1985, ‘Phenological patterns of terrestrial plants’, Ann. Rev. Ecol. Syst. 16, 179–214.

    Google Scholar 

  • Reed, B. C., Brown, J. F., Vanderzee, D., Loveland, T. R., Merchant, J. W. and Ohlen, D. O.: 1994, ‘Measuring phenological variability from satellite imagery’, J. Veget. Sci. 5:5, 703–714.

    Google Scholar 

  • Russell, R. C.: 1962, ‘Phenological records of the prairie flora’, Can. Plant Disease Survey 42(3), 162–166.

    Google Scholar 

  • Schaber, J. and Badeck, F-W.: 2002, ‘Evaluation of methods for the combination of phonological times series and outlier detection’, Tree Physiology 22, 973–982.

    Google Scholar 

  • Schwartz, M. D.: 1998, ‘Green-wave phenology’, Nature 394, 839–840.

    Google Scholar 

  • Schwartz, M. D. and Reiter, B. E.: 2000, ‘Changes in North American spring’, Intern. J. Climatol. 20, 929–932.

    Google Scholar 

  • SPOTImage: 2002, http://www.spot.com/home/proser/listvege/welcome.htm Accessed 2002–11–07.

  • Tieszen, K. L., Reed, B. C., Bliss, N. S., Wylie, B. N. and Dehong, D. M.: 1997, ‘NDVI, C3 and C4 production and distribution in Great Plains grassland land cover types’, Ecol. Applic. 7(1), 59–78.

    Google Scholar 

  • Zhang, X., Vincent, L. A., Hogg, W. D. and Niitsoo, A.: 2000, ‘Temperature and precipitation trends in Canada during the 20th century’, Atmosphere-Ocean 38(3), 395–429.

    Google Scholar 

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Beaubien, E.G., Hall-Beyer, M. Plant Phenology in Western Canada: Trends and Links to the View From Space. Environ Monit Assess 88, 419–429 (2003). https://doi.org/10.1023/A:1025597829895

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  • DOI: https://doi.org/10.1023/A:1025597829895