Strain Information: 927/14

Division/Phylum: Haptophyta/Prymnesiophyta    Class: Prymnesiophyceae


Tisochrysis lutea Bendif & Probert (2013)

CCAP 927/14
Isolator: Haines (1977)
Origin: Marine; Tahiti, French Polynesia
Culture: Medium f/2; Bacteria present; sub + cryo
Other: CCMP1324; NEPCC 601; CSIRO CS-177; SMBA 292; T.ISO; tahitian strain; Renamed January 2014 after Bendif et al. 2013.; used in aquaculture; formerly listed as Isochrysis sp., Isochrysis galbana;
Available Images (4):


References [32]   EMBL Links
Rieley G, Teece MA, Peakman TM, Raven AM, Green KJ, Clarke TP, Murray M, Leftley JW, Campbell CN, Harris RP, Parkes RJ & Maxwell JR (1998) Long-chain alkenes of the haptophytes Isochrysis galbana and Emiliania huxleyi. Lipids 33(6): 617-625.
DOI: 10.1007/s11745-998-0248-0

Sayegh FAQ, Radi N & Montagnes DJS (2007) Do strain differences in microalgae alter their relative quality as a food for the rotifer Brachionus plicatilis? Aquaculture 273: 665-678.
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Day JG (1998) Cryo-conservation of microalgae and cyanobacteria. CryoLetters S1: 7-14.
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Troedsson C, Ganot P, Bouquet J-M, Aksnes DL & Thompson EM (2007) Endostyle cell recruitment as a frame of reference for development and growth in the Urochordate Oikopleura dioica. The Biological Bulletin 213: 325-334.
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Christophersen G, Torkildsen L & van der Meeren T (2006) Effect of increased water recirculation rate on algal supply and post-larval performance of scallop (Pecten maximus) reared in a partial open and continuous feeding system. Aquacultural Engineering 35: 271-282.
DOI: 10.1016/j.aquaeng.2006.03.005

Sandaa R-A, Brunvold L, Magnesen T & Bergh ø (2008) Monitoring the opportunistic bacteria Pseudoalteromonas sp. LT-13 in a great scallop, Pecten maximus hatchery. Aquaculture 276: 14-21.
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Kheder RB, Quéré C, Moal J & Robert R (2010) Effect of nutrition on Crassostrea gigas larval development and the evolution of physiological indices. Part B: Effects of temporary food deprivation. Aquaculture 308: 174-182.
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Bougaran G, Bernard O & Sciandra A (2010) Modeling continuous cultures of microalgae colimited by nitrogen and phosphorus. Journal of Theoretical Biology 265: 443-454.
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Kheder RB, Moal J & Robert R (2010) Impact of temperature on larval development and evolution of physiological indices in Crassostrea gigas. Aquaculture 309: 268-289.
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Mairet F, Bernard O, Masci P, Lacour T & Sciandra A (2011) Modelling neutral lipid production by the microalga Isochrysis aff. galbana under nitrogen limitation. Bioresource Technology 102: 142-149.
DOI: 10.1016/j.biortech.2010.06.138

Rico-Villa B, Bernard I, Robert R & Pouvreau S (2010) A dynamic energy budget (DEB) growth model for Pacific oyster larvae, Crassostrea gigas. Aquaculture 305: 84-94.
DOI: 10.1016/j.aquaculture.2010.04.018

Sayegh FAQ & Montagnes DJS (2011) Temperatures shifts induce intraspecific variation in microalgal production and biochemical composition. Bioresource Technology 102: 3007-3013.
DOI: 10.1016/j.biortech.2010.10.01

Forberg T, Arukwe A & Vadstein O (2011) A protocol and cultivation system for gnotobiotic Atlantic cod larvae (Gadus morhua L.) as a tool to study host microbe interactions. Aquaculture 315: 222-227.
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Natrah FMI, Kenmegne MM, Wiyoto W, Sorgeloos P, Bossier P & Defoirdt T (2011) Effects of micro-algae commonly used in aquaculture on acyl-homoserine lactone quorum sensing. Aquaculture 317: 53-57.
DOI: 10.1016/j.aquaculture.2011.04.03

Magnesen T & Jacobsen A (2012) Effect of water recirculation on seawater quality and production of scallop (Pecten maximus) larvae. Aquacultural Engineering 47: 1-6.
DOI: 10.1016/j.aquaeng.2011.12.005

Marchetti J, Bougaran G, Le Dean L, Mégrier C, Lukomska E, Kaas R, Olivo E, Baron R, Robert R & Cadoret JP (2012) Optimizing conditions for the continuous culture of Isochrysis affinis galbana relevant to commercial hatcheries. Aquaculture 326-329: 106-115.
DOI: 10.1016/j.aquaculture.2011.11.020

Jauffrais T, Marcaillou C, Herrenknecht C, Truquet P, Shet V, Nicolau E, Tillmann U & Hess P (2012) Azaspiracid accumulation, detoxification and biotransformation in blue mussels (Mytilus edulis) experimentally fed Azadinium spinosum Toxicon 60: 582-595.
DOI: 10.1016/j.toxicon.2012.04.351

Volkman JK, Jeffrey SW, Nichols PD, Rogers GI & Garland CD (1989) Fatty acid and lipid composition of 10 species of microalgae used in mariculture Journal of Experimental Marine Biology and Ecology 128: 219-240.
DOI: none

Rico-Villa B, Le Coz JR, Mingant C & Robert R (2006) Influence of phytoplankton diet mixtures on microalgae consumption, larval development and settlement of the Pacific oyster Crassostrea gigas (Thunberg) Aquaculture 256: 377-388.
DOI: 10.1016/j.aquaculture.2006.02.015

Gonzalez Araya R, Mingant C, Petton B & Robert R (2012) Influence of diet assemblage on Ostrea edulis broodstock conditioning and subsequent larval development. Aquaculture 364-365: 272-280.
DOI: 10.1016/j.aquaculture.2012.08.036

Jauffrais T, Contreras A, Herrenknecht C, Truquet P, Sechet V, Tillmann U & Hess P (2012) Effect of Azadinium spinosum on the feeding behaviour and azaspiracid accumulation of Mytilus edulis. Aquatic Toxicology 124-125: 179-187.
DOI: 10.1016/j.aquatox.2012.08.016

Lacour T, Sciandra A, Talec A, Mayzaud P & Bernard O (2012) Neutral lipid and carbohydrate productivities as a response to nitrogen status in Isochrysis sp. (T-iso; Haptophyceae): Starvation versus limitation. Journal of Phycology 48: 647-656.
DOI: 10.1111/j.1529-8817.2012.01154.x

Lacour T, Sciandra A, Talec A, Mayzaud P & Bernard O (2012) Diel variations of carbohydrates and neutral lipids in nitrogen-sufficient and nitrogen-starved cyclostat cultures of Isochrysis sp. Journal of Phycology 48: 966-975.
DOI: 10.1111/j.1529-8817.2012.01177.x

Gonzalez-Araya R, Quillien V & Robert R (2013) The effects of eight single microalgal diets on sex-ratio and gonad development throughout European flat oyster (Ostrea edulis L.) conditioning. Aquaculture 400-401: 1-5.
DOI: 10.1016/j.aquaculture.2013.02.036

Jauffrais T, Kilcoyne J, Herrenknecht C, Truquet P, Sechet V, Miles CO & Hess P (2013) Dissolved azaspiracids are absorbed and metabolized by blue mussels (Mytilus edulis). Toxicon 65: 81-89.
DOI: 10.1016/j.toxicon.2013.01.010

Pronker AE, Peene F, Donner S, Wijnhoven S, Geijsen P, Bossier P & Nevejan NM (2013) Hatchery cultivation of the common cockle (Cerastoderma edule L.): From conditioning to grow-out. Aquaculture Research -: 1-11.
DOI: 10.1111/are.12178

van Bergeijk SA, Herandez Javier L, Manchado M & Canavate JP (2013) Uptake of iodide in the marine haptophyte Isochrysis sp. (T.ISO) driven by iodide oxidation. Journal of Phycology 49: 640-647.
DOI: 10.1111/jpy.12073

Bendif EM, Probert I, Schroeder DC & de Vargas C (2013) On the description of Tisochrysis lutea gen. nov. sp. nov. and Isochrysis nuda sp. nov. in the Isochrysidales, and the transfer of Dicrateria to the Prymnesiales (Haptophyta) Journal of Applied Phycology 25: 1763-1776.
DOI: 10.1007/s10811-013-0037-0

Garnier M, Carrier G, Rogniaux H, Nicolau E, Bougaran G, Saint-Jean B & Cadoret JP (2014) Comparative proteomics reveals proteins impacted by nitrogen deprivation in wild-type and high lipid-accumulating mutant strains of Tisochrysis lutea. Journal of Proteomics 105: 107-120.
DOI: 10.1016/j.jprot.2014.02.022

Marti-Solans J, Ferrandez-Roldan A, Godoy-Marin H, Badia-Ramentol J, Torres-Aguila NP, Rodriguez-Mari A, Bouquet JM, Chourrout D, Thompson EM, Albalat R & Canestro C (2014) Oikopleura dioica culturing made easy: A low-cost facility for an emerging animal model in EvoDevo. Genesis -: -.
DOI: 10.1002/dvg.22800

Carrier G, Garnier M, Le Cunff L, Bougaran G, Probert I, De Vargas C, Corre E, Cadoret JP & Saint-Jean B (2014) Comparative transcriptome of wild type and selected strains of the microalgae Tisochrysis lutea provides insights into the genetic basis, lipid metabolism and the life cycle. PLoS ONE 9(1): e86889.
DOI: 10.1371/journal.pone.0086889

Baroukh C, Muñoz-Tamayo R, Steyer J & Bernard O (2014) DRUM: A new framework for metabolic modeling under non-balanced growth. Application to the carbon metabolism of unicellular microalgae. PLoS ONE 9(8): e104499.
DOI: 10.1371/journal.pone.0104499

FJ946913 ()
KC888185 (COX1)
KC888186 (COX1)
FJ946911 (ITS)
KC888152 (LSU (28S))
KC888153 (LSU (28S))
DQ075200 (SSU (18S))
DQ079859 (SSU (18S))
KC888118 (SSU (18S))
KC888119 (SSU (18S))

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For more information, view the key to strain data and list of strains referenced in scientific publications.


Catalogue updated: 24 February 2015