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The influence of phosphite treatments on oak leaves and damage caused by powdery mildew Erysiphe alphitoides Cover

The influence of phosphite treatments on oak leaves and damage caused by powdery mildew Erysiphe alphitoides

Open Access
|Oct 2017

References

  1. Akhkha A., Boutraa T., Kalaji H., Ahmad P., Dąbrowski P. 2013. Chlorophyll fluorescence: a potential selection criterion for drought tolerance in selected durum wheat (Triticum durum Desf.) cultivars. Signpost Open Access Journal of NanoPhotoBio-Sciences, 1, 147–156.
  2. Baker N.R., Rosenqvist E. 2004. Applications of chlorophyll fluorescence can improve crop production strategies: an examination of future possibilities. Journal of Experimental Botany, 55, 1607–1621.10.1093/jxb/erh19615258166
  3. Borawska-Jarmujłowicz B., Mastalerczuk G., Pietkiewicz S., Kalaji M.H. 2014. Low temperature and hardening effects on photosynthetic apparatus efficiency and survival of forage grass varieties. Plant, Soil and Environment, 60, 177–183.
  4. Desprez-Loustau M.-L., Feau N., Mougou-Hamdane A., Dutech C. 2011. Interspecific and intraspecific diversity in oak powdery mildews in Europe: coevolution history and adaptation to their hosts. Mycoscience, 52, 165–173.10.1007/S10267-010-0100-5
  5. Hardy G.E.St.J., Barrett S., Shearer B.L. 2001. The future of phosphite as a fungicide to control the soil borne plant pathogen Phytophthora cinnamomi in natural ecosystems. Australasian Plant Pathology, 30, 133–139.10.1071/AP01012
  6. Kalaji H.M., Łoboda T., 2010. Fluorescencja chlorofilu w badaniach stanu fizjologicznego roślin. Wydawnictwo SGGW, Warszawa.
  7. Marçais B., Desprez-Loustau M.-L. 2014. European oak powdery mildew: impact on trees, effects of environmental factors, and potential effects of climate change. Annals of Forest Science, 7, 633–642.10.1007/s13595-012-0252-x
  8. Nowakowska J.A., Oszako T., Bieniek J., Rakowski K. 2007. Genetic characterization in relation to the health state of oak populations in the Elbląski and Krotoszyński regions of Poland. Leśne Prace Badawcze, 3, 33–51.
  9. Okorski A., Pszczółkowska A., Oszako T., Nowakowska J. 2015. Current possibilities and prospects of using fungicides in forestry. Leśne Prace Badawcze, 76 (2), 191–206.
  10. Stirbet A., Riznichenko A., Yu G., Rubin A.B., Govindjee. 2014. Modeling chlorophyll a fluorescence transient: relation to photosynthesis. Biochemistry (Moscow), 79 (4), 291–323.
  11. Tkaczyk M., Nowakowska J.A., Oszako T. 2014. Nawozy fosforynowe jako stymulatory wzrostu roślin w szkółkach leśnych. Sylwan, 158 (1), 3−9.
  12. Živčák M., Olšovská K., Slamka P., Galambošová J., Rataj V., Shao H.-B., Kalaji M.H., Brestič M. 2014. Measurements of chlorophyll fluorescence in different leaf positions may detect nitrogen deficiency in wheat. Zemdirbyste-Agriculture, 101, 437–444.
DOI: https://doi.org/10.1515/ffp-2017-0025 | Journal eISSN: 2199-5907 | Journal ISSN: 0071-6677
Language: English
Page range: 239 - 245
Submitted on: Aug 7, 2017
Accepted on: Aug 10, 2017
Published on: Oct 7, 2017
Published by: Forest Research Institute
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2017 Piotr Andrzej Dąbrowski, Hazem Kalaji, Nenad Keča, Tomasz Horaczek, Tomasz Oszako, published by Forest Research Institute
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.