114
Hay ME (1996) Marine chemical ecology: what’s known and what’s next? J Exp Mar Biol Ecol
200:103–134
Holopainen JK (2004) Multiple functions of inducible plant volatiles. Trends Plant Sci 9:529–533
Kawasaki W, Matsui K, Akakabe Y, Itai N, Kajiwara T (1998) Volatiles from Zostera marina.
Phytochemistry 47(1):27–29
Kim GH, Lee IK (1989) Mixed phases reproduction of Platythamnion yezoense Inagaki in culture.
Korean J Phycol 4(2):111–119
Klaschka U, Kolossa-Gehring M (2007) Fragrances in the environment: pleasant odours for
nature? Environ Sci Pollut Res 14:44–52
Krupina MV, Dathe W (1991) Occurrence of jasmonic acid in the red alga Gelidium latifolium. Z
Naturforsch 46:1127–1129
Küpper FC, Gaquerel E, Cosse A, Adas F, Peters AF, Müller DG, Kloareg B, Salaün JP, Potin P
(2009) Free fatty acids and methyl jasmonate trigger defense reactions in Laminaria digitata.
Plant Cell Physiol 50(4):789–800
La Barre S, Potin P, Leblanc C, Delage L (2010) The halogenated metabolism of brown algae
(Phaeophyta), its biological importance and its environmental significance. Mar Drugs
8(4):988–1010. doi:10.3390/md8040988
Leedham Elvidge EC, Phang SM, Sturges WT, Malin G (2015) The effect of desiccation on the
emission of volatile bromocarbons from two common temperate macroalgae. Biogeosciences
12:387–398
Liechti R, Farmer EE (2006) Jasmonate biochemical pathway. Sci STKE 322:1–3
Liechti R, Gfeller A, Farmer EE (2006) Jasmonate signaling pathway. Sci STKE 14. doi:10.1126/
stke.3222006cm2
Loreto F, Schnitzler JP (2010) Abiotic stress and induced BVOCS. Trends Plant Sci 15:154–166
Manley SL, Goodwin K, North WJ (1992) Laboratory production of bromoform, methylene
bromide, and methyl iodide by macroalgae and distribution in nearshore southern California
waters. Limnol Oceanogr 37:1652–1659
Matsui K (2006) Green leaf volatiles: hydroperoxide lyase pathway of oxylipin metabolism. Curr
Opin Plant Biol 9:274–280
Miller G, Suzuki N, Ciftci-Yilmaz S, Mittler R (2010) Reactive oxygen species homeostasis and
signaling during drought and salinity stresses. Plant Cell Environ 33:453–467
Montero-Fernández M, Robaina RR, Garcia-Jimenez P (2016) In silico characterization of DNA
motifs associated with the differential expression of the ornithine decarboxylase gene during in vitro cystocarp development in the red seaweed Grateloupia imbricata. J Plant Physiol
195:31–38
Mtolera MSP, Collén J, Pedersén M, Ekdahl A, Abrahamsson K, Semesi AK (1996) Stressinduced production of volatile halogenated organic compounds in Eucheuma denticulatum
(Rhodophyta) caused by elevated pH and high light intensities. Eur J Phycol 32(1):89–95
Müller DG (1989) The role of pheromones in sexual reproduction of brown algae. In: Coleman
AW, Goff LJ, Stein-Taylor JR (eds) Algae as experimental systems. Alna r Liss, Inc, New York,
pp 201–213
Niki T, Kunugi M, Otsuki A (2000) DMSP-lyase activity in five marine phytoplankton species: its
potential importance in DMS production. Mar Biol 136:759–764
Osborne DJ, McManus MT (2005) Hormones, signals and target cells in plant development.
Cambridge University Press, Cambridge
Otte ML, Wilson G, Morris JT, Moran BM (2004) Dimethylsulphoniopropionate (DMSP) and
related compounds in higher plants. J Exp Bot 55:1919–1925
Paul C, Pohnert G (2011) Production and role of volatile halogenated compounds from marine
algae. Nat Prod Rep 28:186–195
Pirjola L, O’Dowd CD, Brooks IM, Kulmala M (2000) Can new particle formation occur in the
clean marine boundary layer? J Geophys Res 105:26531–26546
Plettner I, Steinke M, Malin G (2005) Ethene (ethylene) production in the marine macroalga Ulva
(Enteromorpha) intestinales L. (Chlorophyta, Ulvophyceae): effect of light stress and coproduction with dimethylsulphide. Plant Cell Environ 28:1136–1145
P. Garcia-Jimenez and R.R. Robaina
Hay ME (1996) Marine chemical ecology: what’s known and what’s next? J Exp Mar Biol Ecol
200:103–134
Holopainen JK (2004) Multiple functions of inducible plant volatiles. Trends Plant Sci 9:529–533
Kawasaki W, Matsui K, Akakabe Y, Itai N, Kajiwara T (1998) Volatiles from Zostera marina.
Phytochemistry 47(1):27–29
Kim GH, Lee IK (1989) Mixed phases reproduction of Platythamnion yezoense Inagaki in culture.
Korean J Phycol 4(2):111–119
Klaschka U, Kolossa-Gehring M (2007) Fragrances in the environment: pleasant odours for
nature? Environ Sci Pollut Res 14:44–52
Krupina MV, Dathe W (1991) Occurrence of jasmonic acid in the red alga Gelidium latifolium. Z
Naturforsch 46:1127–1129
Küpper FC, Gaquerel E, Cosse A, Adas F, Peters AF, Müller DG, Kloareg B, Salaün JP, Potin P
(2009) Free fatty acids and methyl jasmonate trigger defense reactions in Laminaria digitata.
Plant Cell Physiol 50(4):789–800
La Barre S, Potin P, Leblanc C, Delage L (2010) The halogenated metabolism of brown algae
(Phaeophyta), its biological importance and its environmental significance. Mar Drugs
8(4):988–1010. doi:10.3390/md8040988
Leedham Elvidge EC, Phang SM, Sturges WT, Malin G (2015) The effect of desiccation on the
emission of volatile bromocarbons from two common temperate macroalgae. Biogeosciences
12:387–398
Liechti R, Farmer EE (2006) Jasmonate biochemical pathway. Sci STKE 322:1–3
Liechti R, Gfeller A, Farmer EE (2006) Jasmonate signaling pathway. Sci STKE 14. doi:10.1126/
stke.3222006cm2
Loreto F, Schnitzler JP (2010) Abiotic stress and induced BVOCS. Trends Plant Sci 15:154–166
Manley SL, Goodwin K, North WJ (1992) Laboratory production of bromoform, methylene
bromide, and methyl iodide by macroalgae and distribution in nearshore southern California
waters. Limnol Oceanogr 37:1652–1659
Matsui K (2006) Green leaf volatiles: hydroperoxide lyase pathway of oxylipin metabolism. Curr
Opin Plant Biol 9:274–280
Miller G, Suzuki N, Ciftci-Yilmaz S, Mittler R (2010) Reactive oxygen species homeostasis and
signaling during drought and salinity stresses. Plant Cell Environ 33:453–467
Montero-Fernández M, Robaina RR, Garcia-Jimenez P (2016) In silico characterization of DNA
motifs associated with the differential expression of the ornithine decarboxylase gene during in vitro cystocarp development in the red seaweed Grateloupia imbricata. J Plant Physiol
195:31–38
Mtolera MSP, Collén J, Pedersén M, Ekdahl A, Abrahamsson K, Semesi AK (1996) Stressinduced production of volatile halogenated organic compounds in Eucheuma denticulatum
(Rhodophyta) caused by elevated pH and high light intensities. Eur J Phycol 32(1):89–95
Müller DG (1989) The role of pheromones in sexual reproduction of brown algae. In: Coleman
AW, Goff LJ, Stein-Taylor JR (eds) Algae as experimental systems. Alna r Liss, Inc, New York,
pp 201–213
Niki T, Kunugi M, Otsuki A (2000) DMSP-lyase activity in five marine phytoplankton species: its
potential importance in DMS production. Mar Biol 136:759–764
Osborne DJ, McManus MT (2005) Hormones, signals and target cells in plant development.
Cambridge University Press, Cambridge
Otte ML, Wilson G, Morris JT, Moran BM (2004) Dimethylsulphoniopropionate (DMSP) and
related compounds in higher plants. J Exp Bot 55:1919–1925
Paul C, Pohnert G (2011) Production and role of volatile halogenated compounds from marine
algae. Nat Prod Rep 28:186–195
Pirjola L, O’Dowd CD, Brooks IM, Kulmala M (2000) Can new particle formation occur in the
clean marine boundary layer? J Geophys Res 105:26531–26546
Plettner I, Steinke M, Malin G (2005) Ethene (ethylene) production in the marine macroalga Ulva
(Enteromorpha) intestinales L. (Chlorophyta, Ulvophyceae): effect of light stress and coproduction with dimethylsulphide. Plant Cell Environ 28:1136–1145
P. Garcia-Jimenez and R.R. Robaina
