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An application of canonical variate analysis in profile comparison of dry matter content of white clover between ozone-sensitive and ozone-resistant clones exposed in ambient air conditions


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Anderson T.W. (2003): An Introduction to Multivariate Statistical Analysis. Third Edition, John Wiley and Sons, New York.Search in Google Scholar

Borowiak K., Kayzer D., Budka A., Zbierska J. (2011): Study of changes in the degree of tobacco leaf injury caused by tropospheric ozone. Biometrical Letters 48(1): 55-66.Search in Google Scholar

Borowiak K., Kayzer D., Budka A., Zbierska J., Drzewiecka K., Bandurska H., Goliński P. (2012): Cumulative tropospheric ozone effect on visible tobacco leaf injury. Fresenius Environmental Bulletin 21(2a): 509-517.Search in Google Scholar

Budka A., Borowiak K., Zbierska J., Kayzer D., Krzesinski W. (2011): Investigations of multidimensional linear model for comparison of tropospheric ozone-caused tobacco leaf injury degree between rural and urban exposure sites. Fresenius Environmental Bulletin 20(4): 969-975.Search in Google Scholar

Caliński T., Świetlicka-Grala J., Grala B. (1975): Analiza doświadczeń z roślinami wieloletnimi i wielopokosowymi [Analysis of experiments with perennial and multi-cut plants]. Biuletyn Oceny Odmian 1(6): 117-138.Search in Google Scholar

Elagöz V., Manning W.J. (2005): Responses of sensitive and tolerant bush beans (Phaseolus vulgaris L.) to ozone in open-top chambers are influenced by phenotypic differences, morphological characteristics, and the chamber environment. Environmental Pollution 136: 371-383.10.1016/j.envpol.2005.01.021Search in Google Scholar

Feng Z.Z., Kobayashi K., and Ainsworth E.A. (2008): Impact of elevated ozone concentration on growth, physiology and yield of wheat (Triticum aestivum L.): a meta-analysis. Global Change Biology 14: 2696-2708.10.1111/j.1365-2486.2008.01673.xSearch in Google Scholar

Fumagilli I., Mignanego L., Mills G. (2003): Ozone biomonitoring with clover clones: yield loss and carryover effect under high ambient ozone levels in northern Italy. Agriculture, Ecosystems and Environment 95: 119-128.10.1016/S0167-8809(02)00099-3Search in Google Scholar

Hassan I.A., Tewfik I. (2006): CO2 photoassimilation, chlorophyll fluorescence, lipid peroxidation and yield in cotton (Gossypium hirsutum L. cv Giza 65) in response to O3. World Review of Science, Technology and Sustainable Development 3(1): 70-78.10.1504/WRSTSD.2006.008764Search in Google Scholar

Heagle A.S., Miller J.E., Chevone B.I., Dreschel T.W., Manning W.J., McCool P.M., Morrison C.L., Neely G.E., Rebbeck J. (1995): Response of a white clover indicator system to tropospheric ozone at eight locations in the United States. Water, Air and Soil Pollution 85: 1373-1378.10.1007/BF00477173Search in Google Scholar

ICP Vegetation (2003): Experimental Protocol for the 2003 Season. International Cooperation Programme on effects of air pollution on natural vegetation and crops. Working group on effects. Centre of ecology and Hydrology. Bangor. Great Britain.Search in Google Scholar

Kayzer D., Borowiak K., Budka A., Zbierska J. (2009): Study of interaction in bioindication research on tobacco plant injuries caused by ground level ozone. Environmetrics 20: 666-675.10.1002/env.970Search in Google Scholar

Klumpp A., Ansel W., Klumpp G., Calatayud V., Garrec J.P., He S., Peñuelas J. Ribas À., Ro–Poulsen H., Rasmussen S., Sanz M.J., Vergne P. (2006): Ozone pollution and ozone biomonitoring in European cities. Part I: Ozone concentrations and cumulative exposure indices at urban and suburban sites – Atmos. Environ. 40: 7963-7974.10.1016/j.atmosenv.2006.07.017Search in Google Scholar

Köllner B., Krause G.H.M. (2002): Assessment of the response of the NC-S/NC-R clover clone system to ambient ozone levels at the Ruhr Valley. Water, Air and Soil Pollution 137: 63-79.10.1023/A:1015506514632Search in Google Scholar

Lejeune M., Caliński T. (2000): Canonical analysis applied to multivariate analysis of variance. Journal of Multivariate Analysis 72: 100-119.10.1006/jmva.1999.1852Search in Google Scholar

McKeon J.J. (1974): F approximations to the distribution of Hotelling’s T02. Biometrika 61: 381-383.Search in Google Scholar

Morrison D.F. (1967): Multivariate Statistical Methods. New York.Search in Google Scholar

Nussbaum S., Geissmann M., Fuhrer J. (1995): Ozone-exposure-response relationships for mixture of perennial ryegrass and white clover depend on ozone exposure patterns. Atmospheric Environment 29: 989-995.10.1016/1352-2310(94)00368-USearch in Google Scholar

Postiglione L., Fagnano M., Merola G. (2000): Response to ambient ozone of two white clover (Trifolium repens L. cv. “Regal”) clones, one resistant and one sensitive, grown in a Mediterranean environment. Environmental Pollution 109: 525-531.10.1016/S0269-7491(00)00056-7Search in Google Scholar

Rai R., Agrawal M., Agrawal S.B. (2007): Assessment of yield losses in tropical wheat using open top chambers. Atmospheric Environment 41: 9543-9554.10.1016/j.atmosenv.2007.08.038Search in Google Scholar

Seber G.A.F. (1980): The Linear Hypothesis: A General Theory. Charles Griffin. London.Search in Google Scholar

Seber G.A.F. (1984): Multivariate Observations. Wiley. New York.10.1002/9780470316641Search in Google Scholar

Shi G., Yang L., Wang Y., Kobayashi K., Zhu J., Tang H., Pan S., Chen T., Liu G., Wang Y. (2009): Impact of elevated ozone concentration on yield of four Chinese rice cultivars under fully open-air field conditions. Agriculture, Ecosystems and Environment 131: 178–184.10.1016/j.agee.2009.01.009Search in Google Scholar

Van Dingenen R., Dentener F.J., Frank R., Maurten C.K., Emberson L., Cofala J. (2009): The global impact of ozone on agricultural crop yield under current and future air quality legislation. Atmospheric Environment 43: 604-618.10.1016/j.atmosenv.2008.10.033Search in Google Scholar

Vandermeiren K., Black C., Pleijel H., De Temmerman L. (2005): Impact of rising tropospheric ozone on potato: effects on photosynthesis, growth, productivity and yield quality. Plant, Cell and Environment 28: 982-996.10.1111/j.1365-3040.2005.01316.xSearch in Google Scholar

eISSN:
1896-3811
Language:
English
Publication timeframe:
2 times per year
Journal Subjects:
Life Sciences, Bioinformatics, other, Mathematics, Probability and Statistics, Applied Mathematics