Comparing needle and shoot phenology with xylem development on three conifer species in Italy
Author:
Publisher
Springer Science and Business Media LLC
Subject
Ecology,Forestry
Link
http://www.springerlink.com/index/pdf/10.1051/forest/2008088
Reference49 articles.
1. Abe H., Funada R., Ohtani J., and Fukazawa K., 1997. Changes in the arrangement of cellulose microfibrils associated with the cessation of cell expansion in tracheids. Trees 11: 328–332.
2. Aloni R., 2001. Foliar and axial aspects of vascular differentiation: hypotheses and evidence. J. Plant Growth Regul. 20: 22–34.
3. Anfodillo T., Rento S., Carraro V., Furlanetto L., Urbinati C., and Carrer M., 1998. Tree water relations and climatic variations at the alpine timberline: seasonal changes of sap flux and xylem water potential in Larix decidua Miller, Picea abies (L.) Karst. and Pinus cembra L. Ann. Sci. For. 55: 159–172.
4. Antonova G.F. and Shebeko V.V., 1981. Applying cresyl violet in studying wood formation, Khimiya Drevesiny 4: 102–105.
5. Avery G.S., Burkholder P.R., and Creighton H.B., 1937. Production and distribution of growth hormone in shoots of Aesculus and Malus, and its probable role in stimulating cambial activity. Am. J. Bot. 24: 51–58.
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