294
Brown JW, Sorhannus U (2010) A molecular genetic timescale for the diversification of autotrophic stramenopiles (Ochrophyta): substantive underestimation of putative fossil ages. PLoS
One 5:e12759. doi:10.1371/journal.pone.0012759
Bruhn JB, Nielsen KF, Hjelm M et al (2005) Ecology, inhibitory activity, and morphogenesis of
a marine antagonistic bacterium belonging to the Roseobacter clade. Appl Environ Microbiol
71:7263–7270
Burki F (2014) The eukaryotic tree of life from a global phylogenomic perspective. Cold Spring
Harb Perspect Biol 6:a016147
Burkill PH, Archer SD, Robinson C et al (2002) Dimethyl sulphide biogeochemistry within a coccolithophore bloom (DISCO): an overview. Deep Res Part II Top Stud Oceanogr 49:2863–2885
Cabello AM, Cornejo-Castillo FM, Raho N et al (2015) Global distribution and vertical patterns of
a prymnesiophyte–cyanobacteria obligate symbiosis. ISME J 10:693–706
Carney LT, Lane TW (2014) Parasites in algae mass culture. Front Microbiol 5:1–8
Case RJ, Longford SR, Campbell AH et al (2011) Temperature induced bacterial virulence and
bleaching disease in a chemically defended marine macroalga. Environ Microbiol 13:529–537
Chisti Y (2007) Biodiesel from microalgae. Biotechnol Adv 25:294–306
Cho DH, Ramanan R, Heo J et al (2015) Enhancing microalgal biomass productivity by engineering a microalgal-bacterial community. Bioresour Technol 175:578–585
Cho JY (2012) Algicidal activity of marine Alteromonas sp. KNS-16 and isolation of active compounds. Biosci Biotechnol Biochem 76:1452–1458
Cole J (1982) Interactions between bacteria and algae in aquatic ecosystems. Annu Rev Ecol Syst
13:291–314
Cooper MB, Smith AG (2015) Exploring mutualistic interactions between microalgae and bacteria
in the omics age. Curr Opin Plant Biol 26:147–153
Croft MT, Lawrence AD, Raux-Deery E et al (2005) Algae acquire vitamin B12 through a symbiotic relationship with bacteria. Nature 438:90–93
Croft MT, Warren MJ, Smith AG (2006) Algae need their vitamins. Eukaryot Cell 5:1175–1183
Cude WN, Mooney J, Tavanaei AA et al (2012) Production of the antimicrobial secondary metabolite indigoidine contributes to competitive surface colonization by the marine roseobacter
Phaeobacter sp. strain Y4I. Appl Environ Microbiol 78:4771–4780
De-Bashan LE, Antoun H, Bashan Y (2008) Involvement of indole-3-acetic acid produced by the
growth-promoting bacterium Azospirillum Spp. in promoting growth of Chlorella Vulgaris.
J Phycol 44:938–947
De Nys R, Steinberg PD, Willemsen P et al (1995) Broad spectrum effects of secondary metabolites from the red alga Delisea pulchra in antifouling assays. Biofouling 8:259–271
Demuez M, González-Fernández C, Ballesteros M (2015) Algicidal microorganisms and secreted
algicides: new tools to induce microalgal cell disruption. Biotechnol Adv 33:1615–1625
Derelle R, Torruella G, Klimeš V et al (2015) Bacterial proteins pinpoint a single eukaryotic root.
Proc Natl Acad Sci U S A 112:E693–E699
Dickschat JS, Zell C, Brock NL (2010) Pathways and substrate specificity of DMSP catabolism in
marine bacteria of the Roseobacter clade. Chembiochem 11:417–425
Diggle SP, Matthijs S, Wright VJ et al (2007) The Pseudomonas aeruginosa 4-quinolone signal
molecules HHQ and PQS play multifunctional roles in quorum sensing and iron entrapment.
Chem Biol 14:87–96
Dittami SM, Barbeyron T, Boyen C et al (2014) Genome and metabolic network of “Candidatus
Phaeomarinobacter ectocarpi” Ec32, a new candidate genus of Alphaproteobacteria frequently
associated with brown algae. Front Genet 5:1–13
Doornbos RF, van Loon LC, Bakker PAHM (2012) Impact of root exudates and plant defense signaling on bacterial communities in the rhizosphere. A review. Agron Sustain Dev 32:227–243
Douzery EJP, Snell EA, Bapteste E et al (2004) The timing of eukaryotic evolution: does a relaxed
molecular clock reconcile proteins and fossils? Proc Natl Acad Sci U S A 101:15386–15391
Durham BP, Sharma S, Luo H et al (2015) Cryptic carbon and sulfur cycling between surface
ocean plankton. Proc Natl Acad Sci 112:453–457
L. Labeeuw et al.
Brown JW, Sorhannus U (2010) A molecular genetic timescale for the diversification of autotrophic stramenopiles (Ochrophyta): substantive underestimation of putative fossil ages. PLoS
One 5:e12759. doi:10.1371/journal.pone.0012759
Bruhn JB, Nielsen KF, Hjelm M et al (2005) Ecology, inhibitory activity, and morphogenesis of
a marine antagonistic bacterium belonging to the Roseobacter clade. Appl Environ Microbiol
71:7263–7270
Burki F (2014) The eukaryotic tree of life from a global phylogenomic perspective. Cold Spring
Harb Perspect Biol 6:a016147
Burkill PH, Archer SD, Robinson C et al (2002) Dimethyl sulphide biogeochemistry within a coccolithophore bloom (DISCO): an overview. Deep Res Part II Top Stud Oceanogr 49:2863–2885
Cabello AM, Cornejo-Castillo FM, Raho N et al (2015) Global distribution and vertical patterns of
a prymnesiophyte–cyanobacteria obligate symbiosis. ISME J 10:693–706
Carney LT, Lane TW (2014) Parasites in algae mass culture. Front Microbiol 5:1–8
Case RJ, Longford SR, Campbell AH et al (2011) Temperature induced bacterial virulence and
bleaching disease in a chemically defended marine macroalga. Environ Microbiol 13:529–537
Chisti Y (2007) Biodiesel from microalgae. Biotechnol Adv 25:294–306
Cho DH, Ramanan R, Heo J et al (2015) Enhancing microalgal biomass productivity by engineering a microalgal-bacterial community. Bioresour Technol 175:578–585
Cho JY (2012) Algicidal activity of marine Alteromonas sp. KNS-16 and isolation of active compounds. Biosci Biotechnol Biochem 76:1452–1458
Cole J (1982) Interactions between bacteria and algae in aquatic ecosystems. Annu Rev Ecol Syst
13:291–314
Cooper MB, Smith AG (2015) Exploring mutualistic interactions between microalgae and bacteria
in the omics age. Curr Opin Plant Biol 26:147–153
Croft MT, Lawrence AD, Raux-Deery E et al (2005) Algae acquire vitamin B12 through a symbiotic relationship with bacteria. Nature 438:90–93
Croft MT, Warren MJ, Smith AG (2006) Algae need their vitamins. Eukaryot Cell 5:1175–1183
Cude WN, Mooney J, Tavanaei AA et al (2012) Production of the antimicrobial secondary metabolite indigoidine contributes to competitive surface colonization by the marine roseobacter
Phaeobacter sp. strain Y4I. Appl Environ Microbiol 78:4771–4780
De-Bashan LE, Antoun H, Bashan Y (2008) Involvement of indole-3-acetic acid produced by the
growth-promoting bacterium Azospirillum Spp. in promoting growth of Chlorella Vulgaris.
J Phycol 44:938–947
De Nys R, Steinberg PD, Willemsen P et al (1995) Broad spectrum effects of secondary metabolites from the red alga Delisea pulchra in antifouling assays. Biofouling 8:259–271
Demuez M, González-Fernández C, Ballesteros M (2015) Algicidal microorganisms and secreted
algicides: new tools to induce microalgal cell disruption. Biotechnol Adv 33:1615–1625
Derelle R, Torruella G, Klimeš V et al (2015) Bacterial proteins pinpoint a single eukaryotic root.
Proc Natl Acad Sci U S A 112:E693–E699
Dickschat JS, Zell C, Brock NL (2010) Pathways and substrate specificity of DMSP catabolism in
marine bacteria of the Roseobacter clade. Chembiochem 11:417–425
Diggle SP, Matthijs S, Wright VJ et al (2007) The Pseudomonas aeruginosa 4-quinolone signal
molecules HHQ and PQS play multifunctional roles in quorum sensing and iron entrapment.
Chem Biol 14:87–96
Dittami SM, Barbeyron T, Boyen C et al (2014) Genome and metabolic network of “Candidatus
Phaeomarinobacter ectocarpi” Ec32, a new candidate genus of Alphaproteobacteria frequently
associated with brown algae. Front Genet 5:1–13
Doornbos RF, van Loon LC, Bakker PAHM (2012) Impact of root exudates and plant defense signaling on bacterial communities in the rhizosphere. A review. Agron Sustain Dev 32:227–243
Douzery EJP, Snell EA, Bapteste E et al (2004) The timing of eukaryotic evolution: does a relaxed
molecular clock reconcile proteins and fossils? Proc Natl Acad Sci U S A 101:15386–15391
Durham BP, Sharma S, Luo H et al (2015) Cryptic carbon and sulfur cycling between surface
ocean plankton. Proc Natl Acad Sci 112:453–457
L. Labeeuw et al.
