ATALA, Cristian. Water transport and gas exchange in the non-vascular plant Dendroligotrichum dendroides (Brid. ex Hedw.)Broth. (Polytrichaceae, Bryophyta). Gayana Bot. [online].
2011,
vol.68, n.1, pp. 89-92.
ISSN 0717-6643.Â
doi: 10.4067/S0717-66432011000100008.
|
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Brodribb, T.J., T.S. Feild & G.J. Jordan. 2007. Leaf Maximum Photosynthetic Rate and Venation Are Linked by Hydraulics. Plant Physiology 144: 1890-1898. [ Links ] Buch, H. 1945. Über die wasser-und mineralstoffversorgung der moose. Part 1. Commentationes Biologicae Societas Scientiarum Fennicae 9(16): 1-44. [ Links ] Buch H. 1947. Über die wasser-und mineralstoffversorgung der moose. Part 2. Commentationes Biologicae Societas Scientiarum Fennicae 9(20): 1-61. [ Links ] Castri, F. di, & E.R. Hajek. 1976. Bioclimatología de Chile. Editorial Universidad Católica de Chile, Santiago, Chile. 128 pp. [ Links ] Givnish, T.J. 1988. Adaptation to sun and shade: a whole-plant perspective. Australian Journal of Plant Physiology 15: 63-92. [ Links ] Hébant, C. 1975. Organization of the conducting tissue-system in the sporophytes of Dawsonia and Dendroligotrichum (Polytrichales, Musci). Journal of the Hattori Botanical Laboratory 39: 235-254. [ Links ] Hubbard, R.M., V. Stiller, M.G. Ryan & J.S. Sperry. 2001. Stomatal conductance and photosynthesis vary linearly with plant hydraulic conductance in ponderosa pine. Plant Cell & Environment 24: 113-121. [ Links ] Longton, R.E. 1981. Physiological ecology of mosses. In: R.J. Taylor & S.E. Leviton (eds.), The mosses of North America, pp. 77-113. American Academy of Science, Pacific Division,Washington, USA. [ Links ] Longton, R.E. 1988. The biology of polar bryophytes and lichens. Cambridge University Press, Cambridge, UK. 391 pp. [ Links ] Meinzer, F.C. & D.A. Grantz. 1990. Stomatal and hydraulic conductance in growing sugarcane: stomatal adjustment to water transport capacity. Plant Cell & Environment 13: 383-388. [ Links ] Müller, F. 2009. An updated checklist of the mosses of Chile. Archive for Bryology 58: 1-124. [ Links ] Proctor, M.C.F. 1981. Physiological ecology of bryophytes. Advances in Bryology 1: 79-166. [ Links ] Proctor, M.C.F. 1982. Physiological ecology: water relations, light and temperature responses, carbon balance. In: A.J.E. Smith (ed.), Bryophyte Ecology, pp. 333-381. Chapman & Hall, London, UK. [ Links ] Proctor M.C.F. 2000. Physiological Ecology. In: A.J. Shawn & B. Goffinet, Bryophyte Biology, pp. 225-247. Cambridge University Press, Cambridge, UK. [ Links ] Proctor, M.C.F., R. Ligrone & J.G. Duckett. 2007. Desiccation tolerance in the moss Polytrichum formosum: physiological and fine-structural changes during desiccation and recovery. Annals of Botany 99: 75-93. [ Links ] Sperry, J.S. & W.T. Pockman. 1993. Limitation of transpiration by hydraulic conductance and xylem cavitation in Betula occidentalis. Plant Cell & Environment 16: 279-287. [ Links ] Tansley, A.G. & E. Chick. 1901. Notes on the conducting tissue-system in Bryophyta. Annals of Botany 15: 1-38. [ Links ] Valladares, F. & Ü. Niinemets. 2008. Shade tolerance, a key plant trait of complex nature and consequences. Annual Review of Ecology, Systematics and Evolution 39: 237-257. [ Links ] Vogel, S. 2003. Comparative Biomechanics: Life's Physical World. Princeton University Press, Princeton, NJ. 580 pp. [ Links ] Zeiger, E., G. Farquhar & I. Cowan. 1987. Stomatal Function. Stanford University Press, Stanford, CA. 520 pp. [ Links ] Zhu, S.-D. & K.-F. Cao. 2009. Hydraulic properties and photosynthetic rates in co-occurring lianas and trees in a seasonal tropical rainforest in southwestern China. Plant Ecology 204: 295-304. [ Links ] |