129
be used in large-scale experiments through the recombination-based strategy to
illustrate the seagrass stress degree due to light attenuation.
For the appropriate use of seagrasses as marine bioindicators for the assessment
of the environmental status in support of the Marine Strategy Framework Directive
(MSFD) implementation, it is important to distinguish between anthropogenicinduced impacts and climatic long-term environmental changes in order to improve
management and conservation activities.
References
Aquino RS, Landeira-Fernandez AM, Valente AP, Andrade LR, Mourao PAS (2005) Occurrence of
sulfated galactans in marine angiosperms: evolutionary implications. Glycobiology 15:11–20
Arabidopsis Genome I (2000) Analysis of the genome sequence of the flowering plant Arabidopsis
thaliana. Nature 408:796–815
Arnold T, Mealey C, Leahey H, Miller AW, Hall-Spencer JM, Milazzo M, Maers K (2012) Ocean
acidification and the loss of phenolic substances in marine plants. PLoS One 7:e35107
Bortesi L, Fischer R (2015) The CRISPR/Cas9 system for plant genome editing and beyond.
Biotechnol Adv 33:41–52
Boyd PW (2011) Beyond ocean acidification. Nat Geosci 4:273–274
Campbell SJ, Mckenzie LJ, Kerville SP (2006) Photosynthetic responses of seven tropical seagrasses to elevated seawater temperature. J Exp Mar Biol Ecol 330:455–468
Costanza R, D’Arge R, De Groot R, Farber S, Grasso M, Hannon B, Limburg K, Naeem S, O’Neill
RV, Paruelo J, Raskin RG, Sutton P, Van den Belt M (1998) The value of the world’s ecosystem
services and natural capital (Reprinted from Nature, vol 387, pg 253, 1997). Ecol Econ 25:3–15
Cramer G, Urano K, Delrot S, Pezzotti M, Shinozaki K (2011) Effects of abiotic stress on plants:
a systems biology perspective. BMC Plant Biol 11:163
Dalla Via J, Sturmbauer C, Schonweger G, Sotz E, Mathekowitsch S, Stifter M, Reinhard R (1998)
Light gradients and meadow structure in Posidonia oceanica: ecomorphological and functional
correlates. Mar Ecol Prog Ser 163:267–278
Dattolo E, Gu J, Bayer PE, Mazzuca S, Scrra IA, Spadafora A, Bernado L, Natali L, Cavallini
A, Procaccini G (2013) Acclimation to different depths by the marine angiosperm Posidonia
oceanica: transcriptomic and proteomic profiles. Front Plant Sci 195:1–15
Dattolo E, Ruocco M, Brunet C, Lorenti M, Lauritano C, D’Esposito D, De Luca P, Sanges R,
Mazzuca S, Procaccini G (2014) Response of the seagrass Posidonia oceanica to different
light environments: insights from a combined molecular and photo-physiological study. Mar
Environ Res 101:225–236
Dennison WC, Alberte RS (1986) Photoadaptation and growth of Zostera marina L. (eelgrass)
transplants along a depth gradient. J Exp Mar Biol Ecol 98:265–282
D’Esposito D, Orru L, Dattolo E, Bernardo L, Lamontara A, Orsini L, Serra IA, Mazzuca S,
Procaccini G (2016) Annotation of “de novo” transcriptome in the seagrass Posidonia oceanica
and SSR markers development. Sci Data Nat 3:160115
Kuo J, Den Hartog C (2007) Seagrasses morphology, anatomy, and ultrastructure. In: AWD L et al
(eds) Seagrasses: biology, ecology and conservation. Springer, Dordrecht
Delker C, Stenzel I, Hause B, Miersch O, Freussner I, Wasternack C (2006) Jasmonate biosynthesis in Arabidopsis thaliana—enzymes, products, regulation. Plant Biol 8:297–306
Dillies MA, Rau A, Aubert J, Hennequet-Antier C, Jeanmougin M, Servant N, Keime C, Marot
G, Castel D, Estelle J, Guernec G, Jagla B, Jouneau L, Laloe D, Le Gall C, Schaeffer B, Le
Crom S, Guedj M, Jaffrezic F, French Statomique C (2013) A comprehensive evaluation of
6 Abiotic Stress of Seagrasses
be used in large-scale experiments through the recombination-based strategy to
illustrate the seagrass stress degree due to light attenuation.
For the appropriate use of seagrasses as marine bioindicators for the assessment
of the environmental status in support of the Marine Strategy Framework Directive
(MSFD) implementation, it is important to distinguish between anthropogenicinduced impacts and climatic long-term environmental changes in order to improve
management and conservation activities.
References
Aquino RS, Landeira-Fernandez AM, Valente AP, Andrade LR, Mourao PAS (2005) Occurrence of
sulfated galactans in marine angiosperms: evolutionary implications. Glycobiology 15:11–20
Arabidopsis Genome I (2000) Analysis of the genome sequence of the flowering plant Arabidopsis
thaliana. Nature 408:796–815
Arnold T, Mealey C, Leahey H, Miller AW, Hall-Spencer JM, Milazzo M, Maers K (2012) Ocean
acidification and the loss of phenolic substances in marine plants. PLoS One 7:e35107
Bortesi L, Fischer R (2015) The CRISPR/Cas9 system for plant genome editing and beyond.
Biotechnol Adv 33:41–52
Boyd PW (2011) Beyond ocean acidification. Nat Geosci 4:273–274
Campbell SJ, Mckenzie LJ, Kerville SP (2006) Photosynthetic responses of seven tropical seagrasses to elevated seawater temperature. J Exp Mar Biol Ecol 330:455–468
Costanza R, D’Arge R, De Groot R, Farber S, Grasso M, Hannon B, Limburg K, Naeem S, O’Neill
RV, Paruelo J, Raskin RG, Sutton P, Van den Belt M (1998) The value of the world’s ecosystem
services and natural capital (Reprinted from Nature, vol 387, pg 253, 1997). Ecol Econ 25:3–15
Cramer G, Urano K, Delrot S, Pezzotti M, Shinozaki K (2011) Effects of abiotic stress on plants:
a systems biology perspective. BMC Plant Biol 11:163
Dalla Via J, Sturmbauer C, Schonweger G, Sotz E, Mathekowitsch S, Stifter M, Reinhard R (1998)
Light gradients and meadow structure in Posidonia oceanica: ecomorphological and functional
correlates. Mar Ecol Prog Ser 163:267–278
Dattolo E, Gu J, Bayer PE, Mazzuca S, Scrra IA, Spadafora A, Bernado L, Natali L, Cavallini
A, Procaccini G (2013) Acclimation to different depths by the marine angiosperm Posidonia
oceanica: transcriptomic and proteomic profiles. Front Plant Sci 195:1–15
Dattolo E, Ruocco M, Brunet C, Lorenti M, Lauritano C, D’Esposito D, De Luca P, Sanges R,
Mazzuca S, Procaccini G (2014) Response of the seagrass Posidonia oceanica to different
light environments: insights from a combined molecular and photo-physiological study. Mar
Environ Res 101:225–236
Dennison WC, Alberte RS (1986) Photoadaptation and growth of Zostera marina L. (eelgrass)
transplants along a depth gradient. J Exp Mar Biol Ecol 98:265–282
D’Esposito D, Orru L, Dattolo E, Bernardo L, Lamontara A, Orsini L, Serra IA, Mazzuca S,
Procaccini G (2016) Annotation of “de novo” transcriptome in the seagrass Posidonia oceanica
and SSR markers development. Sci Data Nat 3:160115
Kuo J, Den Hartog C (2007) Seagrasses morphology, anatomy, and ultrastructure. In: AWD L et al
(eds) Seagrasses: biology, ecology and conservation. Springer, Dordrecht
Delker C, Stenzel I, Hause B, Miersch O, Freussner I, Wasternack C (2006) Jasmonate biosynthesis in Arabidopsis thaliana—enzymes, products, regulation. Plant Biol 8:297–306
Dillies MA, Rau A, Aubert J, Hennequet-Antier C, Jeanmougin M, Servant N, Keime C, Marot
G, Castel D, Estelle J, Guernec G, Jagla B, Jouneau L, Laloe D, Le Gall C, Schaeffer B, Le
Crom S, Guedj M, Jaffrezic F, French Statomique C (2013) A comprehensive evaluation of
6 Abiotic Stress of Seagrasses
