154
help to unravel plant dynamic and complex responses to changing environments.
Such knowledge is extremely crucial for predicting impacts of global climate change
on seagrasses.
References
Abal EG, Loneragan N, Bowen P, Perry C, Udy J, Dennison WC (1994) Biological and morphological responses of the seagrass Zostera capricorni Aschers. to light intensity. J Exp Mar Biol
Ecol 178:113–129
Abogadallah GM (2011) Differential regulation of photorespiratory gene expression by moderate
and severe salt and drought stress in relation to oxidative stress. Plant Sci 180:540–547
Ainsworth EA, Rogers A, Vodkin LO, Walter A, Schurr U (2006) The effects of elevated CO 2
concentration on soybean gene expression. An analysis of growing and mature leaves. Plant
Physiol 142:135–147
Alexandre A, Silva J, Buapet P, Björk M, Santos R (2012) Effects of CO 2 enrichment on photosynthesis, growth, and nitrogen metabolism of the seagrass Zostera noltii. Ecol Evol 2:2620–2630
Allen JE (2003) Cyclic, pseudocyclic and noncyclic photophosphorylation: new links in the chain.
Trends Plant Sci 8:15–19
Alvarez-Legorreta T, Mendoza-Cozat D, Moreno-Sanchez R, Gold-Bouchot G (2008) Thiol peptides induction in the seagrass Thalassia testudinum (Banks ex König) in response to cadmium
exposure. Aquat Toxicol 86:12–19
Andrews TJ, Abel KM (1979) Photosynthetic carbon metabolism in seagrass: C labeling evidence
for the C3 pathway. Plant Physiol 63:650–656
Armstrong J, Afreen-Zobayed F, Armstrong W (1996) Phragmites die-back: sulphide- and acetic
acid-induced bud and root death, lignifications, and blockages within aeration and vascular
systems. New Phytol 134:601–614
Baba M, Suzuki I, Shiraiwa Y (2011) Proteomic analysis of high-CO 2 -inducible extracellular proteins in the unicellular green alga, Chlamydomonas reinhardtii. Plant Cell Physiol
52:1302–1314
Badger MR, Von Caemmerer S, Ruuska S, Nakano H (2000) Electron flow to oxygen in higher
plants and algae: rates and control of direct photoreduction (Mehler reaction) and rubisco
oxygenase. Philos Trans R Soc Lond B Biol Sci 355:1433–1445
Bailey S, Walters RG, Jansson S, Horton P (2001) Acclimation of Arabidopsis thaliana to the light
environment: the existence of separate low light and high light responses. Planta 213:794–801
Barón M, Arellano JB, Gorgé JL (1995) Copper and photosystem II: a controversial relationship.
Physiol Plant 94:174–180
Bauwe H, Hagemann M, Fernie AR (2010) Photorespiration: players, partners and origin. Trends
Plant Sci 15:330–336
Beer S (1989) Photosynthesis and photorespiration in marine angiosperms. Aquat Bot 34:153–166
Beer S, Eshel A, Waisel Y (1980) Carbon metabolism in seagrasses activities of carbon fixing
enzymes in relation to internal salt concentrations. J Exp Bot 31:1027–1033
Beer S, Rehnberg J (1997) The acquisition of inorganic carbon by the seagrass Zostera marina.
Aquat Bot 56:277–283
Beer S, Waisel Y (1979) Some photosynthetic carbon fixation properties of seagrasses. Aquat Bot
7:129–138
Beer S, Wetzel RG (1982) Photosynthetic carbon fixation pathways in Zostera marina and three
Florida seagrasses. Aquat Bot 13:141–146
Benedict CR, Scott JR (1976) Photosynthetic carbon metabolism of a marine grass. Plant Physiol
57:876–880
Benedict CR, Wong WWL, Wong IHH (1980) Fractionation of the stable isotopes of inorganic
carbon by seagrasses. Plant Physiol 65:512–517
P. Buapet
help to unravel plant dynamic and complex responses to changing environments.
Such knowledge is extremely crucial for predicting impacts of global climate change
on seagrasses.
References
Abal EG, Loneragan N, Bowen P, Perry C, Udy J, Dennison WC (1994) Biological and morphological responses of the seagrass Zostera capricorni Aschers. to light intensity. J Exp Mar Biol
Ecol 178:113–129
Abogadallah GM (2011) Differential regulation of photorespiratory gene expression by moderate
and severe salt and drought stress in relation to oxidative stress. Plant Sci 180:540–547
Ainsworth EA, Rogers A, Vodkin LO, Walter A, Schurr U (2006) The effects of elevated CO 2
concentration on soybean gene expression. An analysis of growing and mature leaves. Plant
Physiol 142:135–147
Alexandre A, Silva J, Buapet P, Björk M, Santos R (2012) Effects of CO 2 enrichment on photosynthesis, growth, and nitrogen metabolism of the seagrass Zostera noltii. Ecol Evol 2:2620–2630
Allen JE (2003) Cyclic, pseudocyclic and noncyclic photophosphorylation: new links in the chain.
Trends Plant Sci 8:15–19
Alvarez-Legorreta T, Mendoza-Cozat D, Moreno-Sanchez R, Gold-Bouchot G (2008) Thiol peptides induction in the seagrass Thalassia testudinum (Banks ex König) in response to cadmium
exposure. Aquat Toxicol 86:12–19
Andrews TJ, Abel KM (1979) Photosynthetic carbon metabolism in seagrass: C labeling evidence
for the C3 pathway. Plant Physiol 63:650–656
Armstrong J, Afreen-Zobayed F, Armstrong W (1996) Phragmites die-back: sulphide- and acetic
acid-induced bud and root death, lignifications, and blockages within aeration and vascular
systems. New Phytol 134:601–614
Baba M, Suzuki I, Shiraiwa Y (2011) Proteomic analysis of high-CO 2 -inducible extracellular proteins in the unicellular green alga, Chlamydomonas reinhardtii. Plant Cell Physiol
52:1302–1314
Badger MR, Von Caemmerer S, Ruuska S, Nakano H (2000) Electron flow to oxygen in higher
plants and algae: rates and control of direct photoreduction (Mehler reaction) and rubisco
oxygenase. Philos Trans R Soc Lond B Biol Sci 355:1433–1445
Bailey S, Walters RG, Jansson S, Horton P (2001) Acclimation of Arabidopsis thaliana to the light
environment: the existence of separate low light and high light responses. Planta 213:794–801
Barón M, Arellano JB, Gorgé JL (1995) Copper and photosystem II: a controversial relationship.
Physiol Plant 94:174–180
Bauwe H, Hagemann M, Fernie AR (2010) Photorespiration: players, partners and origin. Trends
Plant Sci 15:330–336
Beer S (1989) Photosynthesis and photorespiration in marine angiosperms. Aquat Bot 34:153–166
Beer S, Eshel A, Waisel Y (1980) Carbon metabolism in seagrasses activities of carbon fixing
enzymes in relation to internal salt concentrations. J Exp Bot 31:1027–1033
Beer S, Rehnberg J (1997) The acquisition of inorganic carbon by the seagrass Zostera marina.
Aquat Bot 56:277–283
Beer S, Waisel Y (1979) Some photosynthetic carbon fixation properties of seagrasses. Aquat Bot
7:129–138
Beer S, Wetzel RG (1982) Photosynthetic carbon fixation pathways in Zostera marina and three
Florida seagrasses. Aquat Bot 13:141–146
Benedict CR, Scott JR (1976) Photosynthetic carbon metabolism of a marine grass. Plant Physiol
57:876–880
Benedict CR, Wong WWL, Wong IHH (1980) Fractionation of the stable isotopes of inorganic
carbon by seagrasses. Plant Physiol 65:512–517
P. Buapet
