Inter- and intraspecific variation in stomatal pore area index along elevational gradients and its relation to leaf functional traits
Author:
Funder
Deutsche Forschungsgemeinschaft
Eliteförderung des Landes Bayern
Publisher
Springer Science and Business Media LLC
Subject
Plant Science,Ecology
Link
http://link.springer.com/content/pdf/10.1007/s11258-016-0564-2.pdf
Reference52 articles.
1. Adler PB, Fajardo A, Kleinhesselink AR, Kraft NJ (2013) Trait-based tests of coexistence mechanisms. Ecol Lett 16:1294–1306
2. Ashton PMS, Berlyn GP (1994) A comparison of leaf physiology and anatomy of Quercus (section Erythrobalanus-Fagaceae) species in different light environments. Am J Bot 81:589–597
3. Beerling DJ, Chaloner WG (1993) The impact of atmospheric CO2 and temperature changes on stomatal density: observation from Quercus robur lammas leaves. Ann Bot 71:231–235
4. Bond BJ, Farnsworth BT, Coulombe RA, Winner WE (1999) Foliage physiology and biochemistry in response to light gradients in conifers with varying shade tolerance. Oecologia 120:183–192
5. Brodribb TJ, Holbrook NM, Zwieniecki MA, Palma B (2005) Leaf hydraulic capacity in ferns, conifers and angiosperms: impacts on photosynthetic maxima. New Phytol 165:839–846
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