Chlorophyll fluorescence of stem cambial tissue reflects dormancy development in Juglans nigra seedlings
Author:
Publisher
Springer Science and Business Media LLC
Subject
Forestry
Link
http://link.springer.com/content/pdf/10.1007/s11056-012-9334-8.pdf
Reference29 articles.
1. Binder WD, Fielder P, Mohammed GH, L’hirondelle SJ (1996) Applications of chlorophyll fluorescence for stock quality assessment with different types of fluorometers. New For 13:63–89
2. Cabral R, O’Reilly C (2005) The physiological responses of oak seedlings to warm storage. Can J For Res 35:2413–2422
3. Corcuera L, Gil-Pelegrin E, Notivol E (2011) Intraspecific variation in Pinus pinaster PSII photochemical efficiency in response to winter stress and freezing temperatures. Plos One 6(12):e28772. doi: 10.1371/journal.pone.0028772
4. Damesin C (2003) Respiration and photosynthesis characteristics of current-year stems of Fagus sylvatica: from the seasonal pattern to an annual balance. New Phytol 158:465–475
5. Dey DC, Jacobs D, McNabb K, Miller G, Baldwin V, Foster G (2008) Artificial regeneration of major oak (Quercus) species in the eastern United States—a review of the literature. For Sci 54:77–106
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