Photosynthesis in Poikilohydric Plants: A Comparison of Lichens and Bryophytes
337
References
Adamson E, Post A, Adamson H (1990) Photosynthesis in Grimmia antarctlCl, an
endemic, antarctic bryophyte, is limited by carbon dioxide. Curr Res Photosynth 4:
639-642
Alpert P (1988) Survival of a desiccation-tolerant moss, Grimmia laevigata, beyond its
observed microdistributionallimits. 1 Bryol 15: 219-227
Badger MR, Price GD (1992) The CO2 concentrating mechanism in cyanobacteria and
microalgae. Physiol Plant 84: 606-615
Badger MR, Pfanz H, Blidel B, Heber U, Lange OL (1993) Evidence for the functioning
of photosynthetic CO2 concentrating mechanisms in lichens containing green algal and
cyanobacterial photobionts. Plant a (in press)
Bain 1, Proctor MCF (1980) The requirements of aquatic bryophytes for free CO2 as an
inorganic carbon source: some experimental evidence. New Phytol 87: 269-283
Bannister P (1976) Introduction to physiological plant ecology. Blackwell, Oxford
Bauer H (1984) Net photosynthetic CO2 compensation concentrations of some lichens.
Z Pfianzenphysiol 114: 45-50
Billings WD, Shauer GR, Trent AN (1973) Temperature effects on growth and respiration of roots and rhizomes in tundra graminoids. In: Bliss LC, Wielgolaski FE (eds)
Primary production and production processes, tundra biome. Proceedings of the conference, Dublin, Ireland, April 1973. Tundra Biome Steering Committee, Dept Botany,
Univ Alberta, Edmonton, Alberta, pp 57-63
Blide! B (1987) Zur Biologie und Systematik der Flechtengattungen Heppia and Peltula
im slidlichen Afrika. Bibl Lichenol 23: 1-150
Buwalda IG (1991) A mathematical model of carbon acquisition and utilisation by
kiwifruit vines. Ecol Model 57: 43-64
Clayton-Greene KA, Collins Nl, Green TGA, Proctor MCF (1985) Surface wax, structure and function in leaves of Polytrichaceae. 1 Bryol 13: 549-562
Collins CR, Farrar IF (1978) Structural resistances to mass transfer in the lichen Xanthoria parietina. New Phytol 81: 71-83
Cowan IR, Lange OL, Green TGA (1992) Carbon dioxide exchange in lichens: determination of transport and carboxylation characteristics. Planta 187: 282-294
Coxson DS, Lancaster 1 (1988) The morphological basis of variation in net photosynthetic
and respiratory responses of the mat-forming lichen species Stereocaulon virgatum and
S. tomentosum. Can 1 Bot 67: 167-176
Coxson DS, Mackey RL (1990) Diel periodicity of photosynthetic response in the subalpine moss Pohlia wahlenbergii. Bryologist 93: 417-422
Crawford RMM (1989) Studies in plant survival. Blackwell, Oxford
Demmig-Adams B, Maguas C, Adams WA, Meyer A, Kilian E, Lange OL (1990) effect
of high light on the efficiency of photochemical energy conversion in a variety of lichen
species with green and blue-green phycobionts. Planta 180: 400-409
Dilks TIK (1976) Measurement of the carbon dioxide compensation point and the rate of
loss of 14C02 in the light and dark in some bryophytes. 1 Exp Bot 27: 98-104
Dilks TJK, Proctor MCF (1979) Photosynthesis, respiration and water content in bryophytes. New Phytol 82: 97-114
Frahm IP (1990a) The ecology of epiphytic bryophytes on Mt Kinabalu, Sabah (Malaysia).
Nova Hedwigia 51: 121-132
Frahm IP (1990b) The effect of light and temperature on the growth of bryophytes of
tropical rain forests. Nova Hedwigia 51: 151-164
Green TGA (1981) Photosynthesis of antarctic bryophytes: field studies in the McMurdo
Dry Valley region. In: Carr Dl (ed) XIIIth International Botanical Congress, Sydney
Abstracts, p 290
Green TGA, Snelgar WP (1981a) Carbon dioxide exchange in lichens: apparent photorespiration and possible role of CO2 refixation in some members of the Stictaceae
(Lichenes). 1 Exp Bot 32: 661-668
337
References
Adamson E, Post A, Adamson H (1990) Photosynthesis in Grimmia antarctlCl, an
endemic, antarctic bryophyte, is limited by carbon dioxide. Curr Res Photosynth 4:
639-642
Alpert P (1988) Survival of a desiccation-tolerant moss, Grimmia laevigata, beyond its
observed microdistributionallimits. 1 Bryol 15: 219-227
Badger MR, Price GD (1992) The CO2 concentrating mechanism in cyanobacteria and
microalgae. Physiol Plant 84: 606-615
Badger MR, Pfanz H, Blidel B, Heber U, Lange OL (1993) Evidence for the functioning
of photosynthetic CO2 concentrating mechanisms in lichens containing green algal and
cyanobacterial photobionts. Plant a (in press)
Bain 1, Proctor MCF (1980) The requirements of aquatic bryophytes for free CO2 as an
inorganic carbon source: some experimental evidence. New Phytol 87: 269-283
Bannister P (1976) Introduction to physiological plant ecology. Blackwell, Oxford
Bauer H (1984) Net photosynthetic CO2 compensation concentrations of some lichens.
Z Pfianzenphysiol 114: 45-50
Billings WD, Shauer GR, Trent AN (1973) Temperature effects on growth and respiration of roots and rhizomes in tundra graminoids. In: Bliss LC, Wielgolaski FE (eds)
Primary production and production processes, tundra biome. Proceedings of the conference, Dublin, Ireland, April 1973. Tundra Biome Steering Committee, Dept Botany,
Univ Alberta, Edmonton, Alberta, pp 57-63
Blide! B (1987) Zur Biologie und Systematik der Flechtengattungen Heppia and Peltula
im slidlichen Afrika. Bibl Lichenol 23: 1-150
Buwalda IG (1991) A mathematical model of carbon acquisition and utilisation by
kiwifruit vines. Ecol Model 57: 43-64
Clayton-Greene KA, Collins Nl, Green TGA, Proctor MCF (1985) Surface wax, structure and function in leaves of Polytrichaceae. 1 Bryol 13: 549-562
Collins CR, Farrar IF (1978) Structural resistances to mass transfer in the lichen Xanthoria parietina. New Phytol 81: 71-83
Cowan IR, Lange OL, Green TGA (1992) Carbon dioxide exchange in lichens: determination of transport and carboxylation characteristics. Planta 187: 282-294
Coxson DS, Lancaster 1 (1988) The morphological basis of variation in net photosynthetic
and respiratory responses of the mat-forming lichen species Stereocaulon virgatum and
S. tomentosum. Can 1 Bot 67: 167-176
Coxson DS, Mackey RL (1990) Diel periodicity of photosynthetic response in the subalpine moss Pohlia wahlenbergii. Bryologist 93: 417-422
Crawford RMM (1989) Studies in plant survival. Blackwell, Oxford
Demmig-Adams B, Maguas C, Adams WA, Meyer A, Kilian E, Lange OL (1990) effect
of high light on the efficiency of photochemical energy conversion in a variety of lichen
species with green and blue-green phycobionts. Planta 180: 400-409
Dilks TIK (1976) Measurement of the carbon dioxide compensation point and the rate of
loss of 14C02 in the light and dark in some bryophytes. 1 Exp Bot 27: 98-104
Dilks TJK, Proctor MCF (1979) Photosynthesis, respiration and water content in bryophytes. New Phytol 82: 97-114
Frahm IP (1990a) The ecology of epiphytic bryophytes on Mt Kinabalu, Sabah (Malaysia).
Nova Hedwigia 51: 121-132
Frahm IP (1990b) The effect of light and temperature on the growth of bryophytes of
tropical rain forests. Nova Hedwigia 51: 151-164
Green TGA (1981) Photosynthesis of antarctic bryophytes: field studies in the McMurdo
Dry Valley region. In: Carr Dl (ed) XIIIth International Botanical Congress, Sydney
Abstracts, p 290
Green TGA, Snelgar WP (1981a) Carbon dioxide exchange in lichens: apparent photorespiration and possible role of CO2 refixation in some members of the Stictaceae
(Lichenes). 1 Exp Bot 32: 661-668
