Air Pollution, Photosynthesis and Forest Decline: Interactions and Consequences
295
Lendzian KJ (1984) Permeability of plant cuticles to gaseous air pollutants. In: Koziol
MJ, Whatley FR (eds) Gaseous air pollutants and plant metabolism. Butterworths,
London, pp 77-81
Lendzian KJ, Kerstiens G (1988) Interactions between plant cuticles an gaseous air
pollutants. Aspects App Bioi 17: 97-104
Lendzian KJ, Kerstiens G (1991) Sorption and transport of gases and vapors in plant
cuticles. Rev Environ Contam Toxicol 121: 65-128
Luwe MWF, Takahama U, Heber U (1993) Role of ascorbate in detoxifying ozone in the
apoplast of spinach leaves. Plant Physiol 101: 969-976
Matyssek R, Giinthardt-Goerg MS, Saurer M, Keller T (1992) Seasonal growth, Ii 13 C in
leaves and stem, and phloem structure of birch (Betula pendula) under low ozone
concentrations. Trees 6: 69-76
Mitterhuber E, Pfanz H, Kaiser WM (1989) Leaching of solutes by the action of acidic
rain: a comparison of efflux from twigs and single needles of Picea abies (L.) Karst.
Plant Cell Environ 12: 93-100
Nobel PS (1983) Biophysical plant physiology and ecology. Freeman, New York
Oren R, Schulze ED (1989) Nutritional disharmony and forest decline: a conceptual
model. In: Schulze ED, Lange OL, Oren R (eds) Forest decline and air pollution.
Ecological Studies 77. Springer, Berlin Heidelberg New York, pp 425-443
Pfanz H, Beyschlag W (1991) Photosynthetic performance of Norway spruce (Picea abies
(L.) Karst.) in relation to the nutrient status of the needles. A study in the forests
of the Ore Mountains. In: PBWU (ed) Expertentagung Waldschaden im ostlichen
Mitteleuropa und in Bayern. GSF-Ber 24/91: 523-527
Pfanz H, Beyschlag W (1993) Photosynthetic performance and nutrient status of Norway
spruce [Picea abies (L.) Karst.] in the forests of the Ore Mountains (Erzgebirge). Trees
7: 115-122
Pfanz H, Heber U (1986) Buffer capacities of leaf cells and leaf cell organelles in relation
to fluxes of potentially acidic air pollutants. Plant Physiol 81: 597-602
Pfanz H, Heber U (1989) Determination of extra- and intracellular pH values in relation
to the action of acidic gases on cells. In: Linshens HF, Jackson IF (eds) Gases in plant
and microbial cells. Mod Meth Plant Anal NS, vol 9. Springer, Berlin Heidelberg New
York, pp 322-343
Pfanz H, Oppmann B (1991) The possible role of apoplastic peroxidases in detoxifying
the air pollutant sulfur dioxide. In: Lobarzewski J, Greppin H, Peuel C, Gaspar
Th (eds) Biochemical, molecular, and physiological aspects of plant peroxidases.
University of Geneva, pp 401-417
Pfanz H, Martinoia E, Lange OL, Heber U (1987) MesophyU resistances to S02 fluxes
into leaves. Plant Physiol 85: 922-927
Pfanz H, Dietz K-J, Weinerth I, Oppmann B (1990) Detoxification of sulfur dioxide by
apoplastic peroxidases. In: Rennenberg H, Brunold Ch, De Kok IJ, Stulen I (eds)
Sulfur nutrition and assimilation in higher plants; fundamental, environmental and
agricultural aspects. SPB Acad Publ, The Hague, pp 229-233
Polle A, Chakrabarti K, Rennenberg H (1991) Entgiftung von Peroxyden in Fichtennadeln
(Picea abies L.) am Schwerpunktsstandort Kalkalpen (Wank). In: PBWU (ed) Proc 2.
Statusseminar der PBWU zum Forschungsschwerpunkt "Waldschaden", Projektgruppe
Bayern zur Erforschung der Wirkung von Umweltschadstoffen. GSF-Ber 26/91: 151-160
Raven JA (1986) Biochemical disposal of excess H+ in growing plants. New Phytol 104:
175-206
Reich PB, Amundson RG (1985) Ambient levels of ozone reduce net photosynthesis in
tree and crop species. Science 230: 566-570
Rennenberg H (1984) The fate of excess sulfur in higher plants. Annu Rev Plant Physiol
35: 121-153
Sandermann H, Schmitt R, Heller W, Rosemann D, Langebartels C (1989) Ozoneinduced early biochemical reactions in conifers. In: Longhurst JWS (ed) Acid deposition.
Sources, effects and controls. The British Library, London, pp 243-254
295
Lendzian KJ (1984) Permeability of plant cuticles to gaseous air pollutants. In: Koziol
MJ, Whatley FR (eds) Gaseous air pollutants and plant metabolism. Butterworths,
London, pp 77-81
Lendzian KJ, Kerstiens G (1988) Interactions between plant cuticles an gaseous air
pollutants. Aspects App Bioi 17: 97-104
Lendzian KJ, Kerstiens G (1991) Sorption and transport of gases and vapors in plant
cuticles. Rev Environ Contam Toxicol 121: 65-128
Luwe MWF, Takahama U, Heber U (1993) Role of ascorbate in detoxifying ozone in the
apoplast of spinach leaves. Plant Physiol 101: 969-976
Matyssek R, Giinthardt-Goerg MS, Saurer M, Keller T (1992) Seasonal growth, Ii 13 C in
leaves and stem, and phloem structure of birch (Betula pendula) under low ozone
concentrations. Trees 6: 69-76
Mitterhuber E, Pfanz H, Kaiser WM (1989) Leaching of solutes by the action of acidic
rain: a comparison of efflux from twigs and single needles of Picea abies (L.) Karst.
Plant Cell Environ 12: 93-100
Nobel PS (1983) Biophysical plant physiology and ecology. Freeman, New York
Oren R, Schulze ED (1989) Nutritional disharmony and forest decline: a conceptual
model. In: Schulze ED, Lange OL, Oren R (eds) Forest decline and air pollution.
Ecological Studies 77. Springer, Berlin Heidelberg New York, pp 425-443
Pfanz H, Beyschlag W (1991) Photosynthetic performance of Norway spruce (Picea abies
(L.) Karst.) in relation to the nutrient status of the needles. A study in the forests
of the Ore Mountains. In: PBWU (ed) Expertentagung Waldschaden im ostlichen
Mitteleuropa und in Bayern. GSF-Ber 24/91: 523-527
Pfanz H, Beyschlag W (1993) Photosynthetic performance and nutrient status of Norway
spruce [Picea abies (L.) Karst.] in the forests of the Ore Mountains (Erzgebirge). Trees
7: 115-122
Pfanz H, Heber U (1986) Buffer capacities of leaf cells and leaf cell organelles in relation
to fluxes of potentially acidic air pollutants. Plant Physiol 81: 597-602
Pfanz H, Heber U (1989) Determination of extra- and intracellular pH values in relation
to the action of acidic gases on cells. In: Linshens HF, Jackson IF (eds) Gases in plant
and microbial cells. Mod Meth Plant Anal NS, vol 9. Springer, Berlin Heidelberg New
York, pp 322-343
Pfanz H, Oppmann B (1991) The possible role of apoplastic peroxidases in detoxifying
the air pollutant sulfur dioxide. In: Lobarzewski J, Greppin H, Peuel C, Gaspar
Th (eds) Biochemical, molecular, and physiological aspects of plant peroxidases.
University of Geneva, pp 401-417
Pfanz H, Martinoia E, Lange OL, Heber U (1987) MesophyU resistances to S02 fluxes
into leaves. Plant Physiol 85: 922-927
Pfanz H, Dietz K-J, Weinerth I, Oppmann B (1990) Detoxification of sulfur dioxide by
apoplastic peroxidases. In: Rennenberg H, Brunold Ch, De Kok IJ, Stulen I (eds)
Sulfur nutrition and assimilation in higher plants; fundamental, environmental and
agricultural aspects. SPB Acad Publ, The Hague, pp 229-233
Polle A, Chakrabarti K, Rennenberg H (1991) Entgiftung von Peroxyden in Fichtennadeln
(Picea abies L.) am Schwerpunktsstandort Kalkalpen (Wank). In: PBWU (ed) Proc 2.
Statusseminar der PBWU zum Forschungsschwerpunkt "Waldschaden", Projektgruppe
Bayern zur Erforschung der Wirkung von Umweltschadstoffen. GSF-Ber 26/91: 151-160
Raven JA (1986) Biochemical disposal of excess H+ in growing plants. New Phytol 104:
175-206
Reich PB, Amundson RG (1985) Ambient levels of ozone reduce net photosynthesis in
tree and crop species. Science 230: 566-570
Rennenberg H (1984) The fate of excess sulfur in higher plants. Annu Rev Plant Physiol
35: 121-153
Sandermann H, Schmitt R, Heller W, Rosemann D, Langebartels C (1989) Ozoneinduced early biochemical reactions in conifers. In: Longhurst JWS (ed) Acid deposition.
Sources, effects and controls. The British Library, London, pp 243-254
