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Functional Plant Biology Functional Plant Biology Society
Plant function and evolutionary biology

Articles citing this paper

Photoinhibition of Photosynthesis and Its Recovery in Two Maize Hybrids Varying in Low Temperature Tolerance

DH Greer and AK Hardacre
16(2) pp.189 - 198


16 articles found in Crossref database.

Chlorophyll Fluorescence as a Tool in Cereal Crop Research
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Photosynthetica. 2003 41(3). p.321
Photosynthetic performance and resistance to photoinhibition of Zea mays L. leaves grown at sub‐optimal temperature
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Plant, Cell & Environment. 1996 19(1). p.85
Genotype‐specific differences in chilling tolerance of maize in relation to chilling‐induced changes in water status and abscisic acid accumulation
Capell Bernd, Dörffling Karl
Physiologia Plantarum. 1993 88(4). p.638
Leaf photosynthetic parameters of two maize (Zea mays) cultivars in response to various patterns of chilling temperatures and photon flux densities
SAROPULOS A S, DRENNAN D S H
Annals of Applied Biology. 2002 141(3). p.237
Chilling-induced changes to carotenoid composition, photosynthesis and the maximum quantum yield of photosystem II photochemistry in two maize genotypes differing in tolerance to low temperature
Haldimann Pierre
Journal of Plant Physiology. 1997 151(5). p.610
Ecophysiology of Photosynthesis (1995)
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Photosynthetic Parameters of Maize (Zea mays L.) Inbred Lines and F1 Hybrids: Their Different Response to, and Recovery from Rapid or Gradual Onset of Low-temperature Stress
Holá D., Langrová K., Kočová M., Rothová O.
Photosynthetica. 2003 41(3). p.429
Genotypic variation within Zea mays for susceptibility to and rate of recovery from chill‐induced photoinhibition of photosynthesis
Aguilera C., Stirling C. M., Long S. P.
Physiologia Plantarum. 1999 106(4). p.429
The Effect of Low Growth Temperature on Hill Reaction and Photosystem 1 Activities and Pigment Contents in Maize Inbred Lines and Their F1 Hybrids
Körnerová M., Holá D.
Photosynthetica. 1999 37(3). p.477
Photosynthesis and non-photochemical excitation quenching components of chlorophyll excitation in maize and field bean during chilling at different photon flux density
Kościelniak J., Biesaga-Kościelniak J.
Photosynthetica. 2006 44(2). p.174
Effect of shading and air temperature on leaf photosynthesis, fluorescence and growth in lily plants
Sorrentino G., Cerio L., Alvino A.
Scientia Horticulturae. 1997 69(3-4). p.259
Effects of Cold-Hardening on Chilling-Induced Photoinhibition of Photosynthesis and on Xanthophyll Cycle Pigments in Sweet Pepper
Liu Peng, Meng Qing-Wei, Zou Qi, Zhao Shi-Jie, Liu Qing-Zhong
Photosynthetica. 2001 39(3). p.467
The effects of development at sub‐optimal growth temperatures on photosynthetic capacity and susceptibility to chilling‐dependent photoinhibition in Zea mays
Nie Gui‐Ying, Long Steve P., Baker Neil R.
Physiologia Plantarum. 1992 85(3). p.554
The influence of low-temperature on the photochemical activity of chloroplasts and activity of antioxidant enzymes in maize leaves
Kočová M., Holá D., Wilhelmová N., Rothová O.
Biologia plantarum. 2009 53(3). p.475
Cold Stress Effects on PSI Photochemistry in Zea mays: Differential Increase of FQR-Dependent Cyclic Electron Flow and Functional Implications
Savitch Leonid V., Ivanov Alexander G., Gudynaite-Savitch Loreta, Huner Norman P. A., Simmonds John
Plant and Cell Physiology. 2011 52(6). p.1042
Molecular Processes of Photosynthesis (1994)
Chow W.S.

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