293
Amin SA, Green DH, Hart MC, et al (2009a) Photolysis of iron-siderophore chelates promotes
bacterial‚ algal mutualism. Proc Natl Acad Sci U S A 106:17071–17076
Amin SA, Green DH, Küpper FC, et al (2009b) Vibrioferrin, an unusual marine siderophore: iron
binding, photochemistry, and biological implications. Inorg Chem 48:11451–11458
Amin SA, Hmelo LR, van Tol HM, et al (2015) Interaction and signalling between a cosmopolitan
phytoplankton and associated bacteria. Nature 522:98–101
Amin SA, Parker MS, Armbrust EV (2012) Interactions between diatoms and bacteria. Microbiol
Mol Biol Rev 76:667–684
Archibald JM (2009) The puzzle of plastid evolution. Curr Biol 19:R81–R88
Ashen JB, Cohen JD, Goff LJ (1999) GC-SIM-MS detection and quantification of free indole- 3acetic acid in bacterial galls on the marine alga Prionitis lanceolata (Rhodophyta). J Phycol
35:493–500
Azam F, Malfatti F (2007) Microbial structuring of marine ecosystems. Nat Rev Microbiol
5:782–791
Bajguz A, Piotrowska-Niczyporuk A (2013) Synergistic effect of auxins and brassinosteroids
on the growth and regulation of metabolite content in the green alga Chlorella vulgaris
(Trebouxiophyceae). Plant Physiol Biochem 71:290–297
Baker DB, Ray PM (1965) Relation between effects of auxin on cell wall synthesis and cell elongation. Plant Physiol 40:360–368
Bell W, Mitchell R (1972) Chemotactic and growth responses of marine bacteria to algal extracellular products. Mar Biol Lab 143:265–277
Bentzon-Tilia M, Gram L (2017) Biotechnological applications of the Roseobacter clade. In:
Paterson R, Lima N (eds) Bioprospecting: success. Potential and Constraints. Springer
International Publishing, Cham, pp 137–166
Berger M, Neumann A, Schulz S et al (2011) Tropodithietic acid production in Phaeobacter gallaeciensis is regulated by N-acyl homoserine lactone-mediated quorum sensing. J Bacteriol
193:6576–6585
Bhatnagar I, Kim SK (2010) Immense essence of excellence: marine microbial bioactive compounds. Mar Drugs 8:2673–2701
Bidle KD (2015) The molecular ecophysiology of programmed cell death in marine phytoplankton. Annu Rev Mar Sci 7:341–375
Bidle KD, Vardi A (2011) A chemical arms race at sea mediates algal host-virus interactions. Curr
Opin Microbiol 14:449–457
Boerjan W, Ralph J, Baucher M (2003) Lignin biosynthesis. Annu Rev Plant Biol 54:519–546
Bolch CJS, Subramanian TA, Green DH (2011) The toxic dinoflagellate Gymnodinium Catenatum
(Dinophyceae) requires marine bacteria for growth. J Phycol 47:1009–1022
Borowitzka MA (2016) Chemically-mediated interactions in microalgae. In: Borowitzka MA (ed)
The physiology of microalgae. Springer International Publishing, Switzerland, pp 321–357
Borowitzka MA (2013) High-value products from microalgae-their development and commercialisation. J Appl Phycol 25:743–756
Boudet A-M (2000) Lignins and lignification: selected issues. Plant Physiol Biochem 38:81–96
Bowe LM, Coat G, DePamphilis CW (2000) Phylogeny of seed plants based on all three genomic
compartments: extant gymnosperms are monophyletic and Gnetales’ closest relatives are conifers. Proc Natl Acad Sci U S A 97:4092–4097
Bramucci AR, Labeeuw L, Mayers TJ et al (2015) A small volume bioassay to assess bacterial/
phytoplankton co-culture using WATER-pulse-amplitude-modulated (WATER-PAM) fluorometry. J Vis Exp 97:e52455
Bratbak G, Thingstad TF (1985) Phytoplankton-bacteria interactions: an apparent paradox?
Analysis of a model system with both competition and commensalism. Mar Ecol Prog Ser
25:23–30
Brinkhoff T, Bach G, Heidorn T et al (2004) Antibiotic production by a Roseobacter clade- affiliated
species from the German Wadden Sea and its antagonistic effects on indigenous isolates. Appl
Environ Microbiol 70:2560–2565
14 Bioactive Small Molecules Mediate Microalgal-Bacterial Interactions
Amin SA, Green DH, Hart MC, et al (2009a) Photolysis of iron-siderophore chelates promotes
bacterial‚ algal mutualism. Proc Natl Acad Sci U S A 106:17071–17076
Amin SA, Green DH, Küpper FC, et al (2009b) Vibrioferrin, an unusual marine siderophore: iron
binding, photochemistry, and biological implications. Inorg Chem 48:11451–11458
Amin SA, Hmelo LR, van Tol HM, et al (2015) Interaction and signalling between a cosmopolitan
phytoplankton and associated bacteria. Nature 522:98–101
Amin SA, Parker MS, Armbrust EV (2012) Interactions between diatoms and bacteria. Microbiol
Mol Biol Rev 76:667–684
Archibald JM (2009) The puzzle of plastid evolution. Curr Biol 19:R81–R88
Ashen JB, Cohen JD, Goff LJ (1999) GC-SIM-MS detection and quantification of free indole- 3acetic acid in bacterial galls on the marine alga Prionitis lanceolata (Rhodophyta). J Phycol
35:493–500
Azam F, Malfatti F (2007) Microbial structuring of marine ecosystems. Nat Rev Microbiol
5:782–791
Bajguz A, Piotrowska-Niczyporuk A (2013) Synergistic effect of auxins and brassinosteroids
on the growth and regulation of metabolite content in the green alga Chlorella vulgaris
(Trebouxiophyceae). Plant Physiol Biochem 71:290–297
Baker DB, Ray PM (1965) Relation between effects of auxin on cell wall synthesis and cell elongation. Plant Physiol 40:360–368
Bell W, Mitchell R (1972) Chemotactic and growth responses of marine bacteria to algal extracellular products. Mar Biol Lab 143:265–277
Bentzon-Tilia M, Gram L (2017) Biotechnological applications of the Roseobacter clade. In:
Paterson R, Lima N (eds) Bioprospecting: success. Potential and Constraints. Springer
International Publishing, Cham, pp 137–166
Berger M, Neumann A, Schulz S et al (2011) Tropodithietic acid production in Phaeobacter gallaeciensis is regulated by N-acyl homoserine lactone-mediated quorum sensing. J Bacteriol
193:6576–6585
Bhatnagar I, Kim SK (2010) Immense essence of excellence: marine microbial bioactive compounds. Mar Drugs 8:2673–2701
Bidle KD (2015) The molecular ecophysiology of programmed cell death in marine phytoplankton. Annu Rev Mar Sci 7:341–375
Bidle KD, Vardi A (2011) A chemical arms race at sea mediates algal host-virus interactions. Curr
Opin Microbiol 14:449–457
Boerjan W, Ralph J, Baucher M (2003) Lignin biosynthesis. Annu Rev Plant Biol 54:519–546
Bolch CJS, Subramanian TA, Green DH (2011) The toxic dinoflagellate Gymnodinium Catenatum
(Dinophyceae) requires marine bacteria for growth. J Phycol 47:1009–1022
Borowitzka MA (2016) Chemically-mediated interactions in microalgae. In: Borowitzka MA (ed)
The physiology of microalgae. Springer International Publishing, Switzerland, pp 321–357
Borowitzka MA (2013) High-value products from microalgae-their development and commercialisation. J Appl Phycol 25:743–756
Boudet A-M (2000) Lignins and lignification: selected issues. Plant Physiol Biochem 38:81–96
Bowe LM, Coat G, DePamphilis CW (2000) Phylogeny of seed plants based on all three genomic
compartments: extant gymnosperms are monophyletic and Gnetales’ closest relatives are conifers. Proc Natl Acad Sci U S A 97:4092–4097
Bramucci AR, Labeeuw L, Mayers TJ et al (2015) A small volume bioassay to assess bacterial/
phytoplankton co-culture using WATER-pulse-amplitude-modulated (WATER-PAM) fluorometry. J Vis Exp 97:e52455
Bratbak G, Thingstad TF (1985) Phytoplankton-bacteria interactions: an apparent paradox?
Analysis of a model system with both competition and commensalism. Mar Ecol Prog Ser
25:23–30
Brinkhoff T, Bach G, Heidorn T et al (2004) Antibiotic production by a Roseobacter clade- affiliated
species from the German Wadden Sea and its antagonistic effects on indigenous isolates. Appl
Environ Microbiol 70:2560–2565
14 Bioactive Small Molecules Mediate Microalgal-Bacterial Interactions
