Photosynthesis, Storage, and Allocation
145
Garnier E, Koch GW, Roy J, Mooney HA (1989) Responses of wild plants to nitrate
availability: Relationships between growth rate and nitrate uptake parameters, a case
study with two Bromus species, and a survey. Oecologia 79: 542-550
Hilbert DW (1990) Optimization of plant root: shoot ratios and internal nitrogen concentration. Ann Bot 66: 91-99
Hocking PJ, Meyer CP (1991) Effects of CO2 enrichment and nitrogen stress on growth,
and partitioning of dry matter and nitrogen in wheat and maize. Aust J Plant Physiol
18: 339-356
Ingestad T, McDonald AJS (1989) Interaction between nitrogen and photon flux density
in birch seedlings at steady-state nutrition. Physiol Plant 77: 1-11
Kaiser WM, Brendle-Behnisch E (1991) Rapid modulation of spinach leaf nitrate reductase activity by photosynthesis. Plant Physiol 96: 363-367
Kaiser WM, Forster J (1989) Low CO2 prevents nitrate reduction in leaves. Plant Physiol
91: 970-974
Koch GW, Winner WE, Nardone A, Mooney HA (1987) A system for controlling the
root and shoot environment for plant growth studies. Environ Exp Bot 27: 365-377
Koch GW, Schulze E-D, Percival F, Mooney HA, Chu C (1988) The nitrogen balance
of Raphanus sativus x raphanistrum plants. II. Growth, nitrogen redistribution and
photosynthesis under N0 3 - deprivation. Plant Cell Environ 11: 755-767
Kiippers M, Koch GW, Mooney HA (1988) Compensating effects to growth of changes in
dry matter allocation in response to variation in photosynthetic characteristics induced
by photoperiod, light, and nitrogen. Aust J Plant Physiol15: 287-298
Levin SA, Mooney HA, Field C (1989) The dependence of plant root: shoot ratios on
internal nitrogen concentration. Ann Bot 64: 71-75
Margolis HA, Vezina L-P (1988) Nitrate content, amino acid composition and growth of
yellow birch seedlings in response to light and nitrogen source. Tree Physiol 4: 245-253
McDonald AJS, Ericsson A, Lohammar T (1986) Dependence of starch storage on
nutrient availability and photon flux density in small birch (Betula pendula Roth). Plant
Cell Environ 9: 433-438
Mohr H (1972) Lectures on photomorphogenesis. Springer, Berlin Heidelberg New York
Mooney HA, Winner WE (1991) Partitioning response of plants to stress. In: Mooney
HA, Winner WE, Pell EJ (eds) Integrated responses of plants to stress. Academic
Press, New York, pp 129-142
Mooney HA, Fichtner K, Schulze E-D (1993) Growth, photosynthesis, and content of
carbohydrates and nitrogen in Phaseolus lunatus in relation to resource availability.
Oecologia (submitted)
Poorter H, Remkes C (1990) Leaf area ratio and net assimilation rate of 24 wild species
differing in relative growth rate. Oecologia 83: 553-559
Poorter H, Remkes C, Lambers H (1990) Carbon and nitrogen economy of 24 wild
species differing in relative growth rate. Plant Physiol 73: 553-559
Potter JR, Jones JW (1977) Leaf area partioning as an important factor in growth. Plant
Physiol 59: 10-14
Quick WP, Schurr U, Fichtner K, Schulze E-D, Rodermel SR, Bogorad L, Stitt M
(1991a) The impact of decreased Rubisco on photosynthesis, growth, allocation and
storage in tobacco plants which have been transformed with antisense rbcS. Plant J 1:
51-58
Quick WP, Schurr U, Scheibe R, Schulze E-D, Rodermel SR, Bogorad L, Stitt M (1991b)
Decreased ribulose-l ,5-bisphosphate carboxylase-oxygenase in transgenic tobacco transformed with "antisense" rbcS I. Impact on photosynthesis in ambient growth conditions.
Plant a 183: 542-554
Quick WP, Fichtner K, Schulze E-D, Wendler R, Leegood RC, Mooney H, Rodermel SR,
Bogorad L, Stitt M (1992) Decreased ribulose-l ,5-bisphosphate carboxylase-oxygenase in
transgenic tobacco transformed with "antisense" rbcS IV. Impact on photosynthesis in
conditions of altered nitrogen supply. Plant a 188: 522-531
Raper CD Jr, Weeks WW, Downs RJ, Johnson WH (1973) Chemical properties of tobacco
leaves as affected by carbon dioxide depletion and light intensity. Agron J 65: 988-992
145
Garnier E, Koch GW, Roy J, Mooney HA (1989) Responses of wild plants to nitrate
availability: Relationships between growth rate and nitrate uptake parameters, a case
study with two Bromus species, and a survey. Oecologia 79: 542-550
Hilbert DW (1990) Optimization of plant root: shoot ratios and internal nitrogen concentration. Ann Bot 66: 91-99
Hocking PJ, Meyer CP (1991) Effects of CO2 enrichment and nitrogen stress on growth,
and partitioning of dry matter and nitrogen in wheat and maize. Aust J Plant Physiol
18: 339-356
Ingestad T, McDonald AJS (1989) Interaction between nitrogen and photon flux density
in birch seedlings at steady-state nutrition. Physiol Plant 77: 1-11
Kaiser WM, Brendle-Behnisch E (1991) Rapid modulation of spinach leaf nitrate reductase activity by photosynthesis. Plant Physiol 96: 363-367
Kaiser WM, Forster J (1989) Low CO2 prevents nitrate reduction in leaves. Plant Physiol
91: 970-974
Koch GW, Winner WE, Nardone A, Mooney HA (1987) A system for controlling the
root and shoot environment for plant growth studies. Environ Exp Bot 27: 365-377
Koch GW, Schulze E-D, Percival F, Mooney HA, Chu C (1988) The nitrogen balance
of Raphanus sativus x raphanistrum plants. II. Growth, nitrogen redistribution and
photosynthesis under N0 3 - deprivation. Plant Cell Environ 11: 755-767
Kiippers M, Koch GW, Mooney HA (1988) Compensating effects to growth of changes in
dry matter allocation in response to variation in photosynthetic characteristics induced
by photoperiod, light, and nitrogen. Aust J Plant Physiol15: 287-298
Levin SA, Mooney HA, Field C (1989) The dependence of plant root: shoot ratios on
internal nitrogen concentration. Ann Bot 64: 71-75
Margolis HA, Vezina L-P (1988) Nitrate content, amino acid composition and growth of
yellow birch seedlings in response to light and nitrogen source. Tree Physiol 4: 245-253
McDonald AJS, Ericsson A, Lohammar T (1986) Dependence of starch storage on
nutrient availability and photon flux density in small birch (Betula pendula Roth). Plant
Cell Environ 9: 433-438
Mohr H (1972) Lectures on photomorphogenesis. Springer, Berlin Heidelberg New York
Mooney HA, Winner WE (1991) Partitioning response of plants to stress. In: Mooney
HA, Winner WE, Pell EJ (eds) Integrated responses of plants to stress. Academic
Press, New York, pp 129-142
Mooney HA, Fichtner K, Schulze E-D (1993) Growth, photosynthesis, and content of
carbohydrates and nitrogen in Phaseolus lunatus in relation to resource availability.
Oecologia (submitted)
Poorter H, Remkes C (1990) Leaf area ratio and net assimilation rate of 24 wild species
differing in relative growth rate. Oecologia 83: 553-559
Poorter H, Remkes C, Lambers H (1990) Carbon and nitrogen economy of 24 wild
species differing in relative growth rate. Plant Physiol 73: 553-559
Potter JR, Jones JW (1977) Leaf area partioning as an important factor in growth. Plant
Physiol 59: 10-14
Quick WP, Schurr U, Fichtner K, Schulze E-D, Rodermel SR, Bogorad L, Stitt M
(1991a) The impact of decreased Rubisco on photosynthesis, growth, allocation and
storage in tobacco plants which have been transformed with antisense rbcS. Plant J 1:
51-58
Quick WP, Schurr U, Scheibe R, Schulze E-D, Rodermel SR, Bogorad L, Stitt M (1991b)
Decreased ribulose-l ,5-bisphosphate carboxylase-oxygenase in transgenic tobacco transformed with "antisense" rbcS I. Impact on photosynthesis in ambient growth conditions.
Plant a 183: 542-554
Quick WP, Fichtner K, Schulze E-D, Wendler R, Leegood RC, Mooney H, Rodermel SR,
Bogorad L, Stitt M (1992) Decreased ribulose-l ,5-bisphosphate carboxylase-oxygenase in
transgenic tobacco transformed with "antisense" rbcS IV. Impact on photosynthesis in
conditions of altered nitrogen supply. Plant a 188: 522-531
Raper CD Jr, Weeks WW, Downs RJ, Johnson WH (1973) Chemical properties of tobacco
leaves as affected by carbon dioxide depletion and light intensity. Agron J 65: 988-992
