295
Egan S, Fernandes ND, Kumar V et al (2014) Bacterial pathogens, virulence mechanism and host
defence in marine macroalgae. Environ Microbiol 16:925–938
Egan S, Harder T, Burke C et al (2013) The seaweed holobiont: understanding seaweed-bacteria
interactions. FEMS Microbiol Rev 37:462–476
Eom SH, Kim YM, Kim SK (2012) Antimicrobial effect of phlorotannins from marine brown
algae. Food Chem Toxicol 50:3251–3255
Falkowski P (2012) The power of plankton. Science 483:7–10
Falkowski PG (1994) The role of phytoplankton photosynthesis in global biogeochemical cycles.
Photosynth Res 39:235–258
Fernandes N, Case RJ, Longford SR et al (2011) Genomes and virulence factors of novel bacterial pathogens causing bleaching disease in the marine red alga Delisea pulchra. PLoS One
6:e27387
Field CB, Behrenfeld MJ, Randerson JT et al (1998) Primary production of the biosphere: integrating terrestrial and oceanic components. Science 281:237–240
Franz AK, Danielewicz MA, Wong DM et al (2013) Phenotypic screening with oleaginous microalgae reveals modulators of lipid productivity. ACS Chem Biol 8:1053–1062
Fu L, Li D, Wu C et al (2012) Effects of algicidal bacterium BS03 (Microbulbifer sp.) on the
growth and antioxidant systems of Alexandrium tamarense. Acta Microbiol Sin 52:784–790
Gachon CMM, Sime-Ngando T, Strittmatter M et al (2010) Algal diseases: spotlight on a black
box. Trends Plant Sci 15:633–640
Gardiner M, Thomas T, Egan S (2015) A glutathione peroxidase (GpoA) plays a role in the pathogenicity of Nautella italica strain R11 towards the red alga Delisea pulchra. FEMS Microbiol
Ecol 91:1–5
Geng H, Belas R (2010) Molecular mechanisms underlying roseobacter-phytoplankton symbioses.
Curr Opin Biotechnol 21:332–338
Goecke F, Labes A, Wiese J et al (2010) Chemical interactions between marine macroalgae and
bacteria. Mar Ecol Prog Ser 409:267–299
Goiris K, Muylaert K, Voorspoels S et al (2014) Detection of flavonoids in microalgae from different evolutionary lineages. J Phycol 50:483–492
González-Fernández C, Ballesteros M (2013) Microalgae autoflocculation: an alternative to highenergy consuming harvesting methods. J Appl Phycol 25:991–999
González JM, Simó R, Massana R et al (2000) Bacterial community structure associated with
a dimethylsulfoniopropionate-producing North Atlantic algal bloom. Appl Environ Microbiol
66:4237–4246
Grami B, Rasconi S, Niquil N et al (2011) Functional effects of parasites on food web properties
during the spring diatom bloom in lake pavin: a linear inverse modeling analysis. PLoS One.
doi:10.1371/journal.pone.0023273
Gray MW (1999) Evolution of organellar genomes. Curr Opin Genet Dev 9:678–687
Green DH, Echavarri-Bravo V, Brennan D et al (2015) Bacterial diversity associated with the coccolithophorid algae Emiliania huxleyi and Coccolithus pelagicus f. Braarudii. Biomed Res Int
2015:194540
Greenwell HC, Laurens LML, Shields RJ et al (2010) Placing microalgae on the biofuels priority
list: a review of the technological challenges. J R Soc Interface 7:703–726
Grossart H-P (1999) Interactions between marine bacteria and axenic various conditions in the lab.
Aquat Microb Ecol 19:1–11
Grossart H-P, Levold F, Allgaier M et al (2005) Marine diatom species harbour distinct bacterial
communities. Environ Microbiol 7:860–873
Grossart HP, Czub G, Simon M (2006) Algae-bacteria interactions and their effects on aggregation
and organic matter flux in the sea. Environ Microbiol 8:1074–1084
Gutierrez CK, Matsui GY, Lincoln DE et al (2009) Production of the phytohormone indole-3acetic acid by estuarine species of the genus vibrio. Appl Environ Microbiol 75:2253–2258
Gutzeit G, Lorch D, Weber A et al (2005) Bioflocculent algal-bacterial biomass improves low-cost
wastewater treatment. Water Sci Technol 52:9–18
14 Bioactive Small Molecules Mediate Microalgal-Bacterial Interactions
Egan S, Fernandes ND, Kumar V et al (2014) Bacterial pathogens, virulence mechanism and host
defence in marine macroalgae. Environ Microbiol 16:925–938
Egan S, Harder T, Burke C et al (2013) The seaweed holobiont: understanding seaweed-bacteria
interactions. FEMS Microbiol Rev 37:462–476
Eom SH, Kim YM, Kim SK (2012) Antimicrobial effect of phlorotannins from marine brown
algae. Food Chem Toxicol 50:3251–3255
Falkowski P (2012) The power of plankton. Science 483:7–10
Falkowski PG (1994) The role of phytoplankton photosynthesis in global biogeochemical cycles.
Photosynth Res 39:235–258
Fernandes N, Case RJ, Longford SR et al (2011) Genomes and virulence factors of novel bacterial pathogens causing bleaching disease in the marine red alga Delisea pulchra. PLoS One
6:e27387
Field CB, Behrenfeld MJ, Randerson JT et al (1998) Primary production of the biosphere: integrating terrestrial and oceanic components. Science 281:237–240
Franz AK, Danielewicz MA, Wong DM et al (2013) Phenotypic screening with oleaginous microalgae reveals modulators of lipid productivity. ACS Chem Biol 8:1053–1062
Fu L, Li D, Wu C et al (2012) Effects of algicidal bacterium BS03 (Microbulbifer sp.) on the
growth and antioxidant systems of Alexandrium tamarense. Acta Microbiol Sin 52:784–790
Gachon CMM, Sime-Ngando T, Strittmatter M et al (2010) Algal diseases: spotlight on a black
box. Trends Plant Sci 15:633–640
Gardiner M, Thomas T, Egan S (2015) A glutathione peroxidase (GpoA) plays a role in the pathogenicity of Nautella italica strain R11 towards the red alga Delisea pulchra. FEMS Microbiol
Ecol 91:1–5
Geng H, Belas R (2010) Molecular mechanisms underlying roseobacter-phytoplankton symbioses.
Curr Opin Biotechnol 21:332–338
Goecke F, Labes A, Wiese J et al (2010) Chemical interactions between marine macroalgae and
bacteria. Mar Ecol Prog Ser 409:267–299
Goiris K, Muylaert K, Voorspoels S et al (2014) Detection of flavonoids in microalgae from different evolutionary lineages. J Phycol 50:483–492
González-Fernández C, Ballesteros M (2013) Microalgae autoflocculation: an alternative to highenergy consuming harvesting methods. J Appl Phycol 25:991–999
González JM, Simó R, Massana R et al (2000) Bacterial community structure associated with
a dimethylsulfoniopropionate-producing North Atlantic algal bloom. Appl Environ Microbiol
66:4237–4246
Grami B, Rasconi S, Niquil N et al (2011) Functional effects of parasites on food web properties
during the spring diatom bloom in lake pavin: a linear inverse modeling analysis. PLoS One.
doi:10.1371/journal.pone.0023273
Gray MW (1999) Evolution of organellar genomes. Curr Opin Genet Dev 9:678–687
Green DH, Echavarri-Bravo V, Brennan D et al (2015) Bacterial diversity associated with the coccolithophorid algae Emiliania huxleyi and Coccolithus pelagicus f. Braarudii. Biomed Res Int
2015:194540
Greenwell HC, Laurens LML, Shields RJ et al (2010) Placing microalgae on the biofuels priority
list: a review of the technological challenges. J R Soc Interface 7:703–726
Grossart H-P (1999) Interactions between marine bacteria and axenic various conditions in the lab.
Aquat Microb Ecol 19:1–11
Grossart H-P, Levold F, Allgaier M et al (2005) Marine diatom species harbour distinct bacterial
communities. Environ Microbiol 7:860–873
Grossart HP, Czub G, Simon M (2006) Algae-bacteria interactions and their effects on aggregation
and organic matter flux in the sea. Environ Microbiol 8:1074–1084
Gutierrez CK, Matsui GY, Lincoln DE et al (2009) Production of the phytohormone indole-3acetic acid by estuarine species of the genus vibrio. Appl Environ Microbiol 75:2253–2258
Gutzeit G, Lorch D, Weber A et al (2005) Bioflocculent algal-bacterial biomass improves low-cost
wastewater treatment. Water Sci Technol 52:9–18
14 Bioactive Small Molecules Mediate Microalgal-Bacterial Interactions
