Agatz A, Hammers-Wirtz M, Gabsi F, Ratte HT, Brown CD, Preuss TG (2012) Promoting effects on reproduction increase population vulnerability of Daphnia magna. Env Tox Chem 31:1604–1610
Article
CAS
Google Scholar
Ahlgren G, Lundstedt L, Brett M, Forsberg C (1990) Lipid composition and food quality of some freshwater phytoplankton for cladoceran zooplankter. J Plankton Res 12:809–818
Article
CAS
Google Scholar
Andersen T, Hessen DO (1991) Carbon, nitrogen, and phosphorus content of freshwater zooplankton. Limnol Oceanogr 36:807–814
Article
CAS
Google Scholar
Bawa AS, Anilakumar KR (2013) Genetically modified foods: safety, risks and public concerns—a review. J Food Sci Technol 50:1035–1046
Article
CAS
PubMed
Google Scholar
Becker C, Boersma M (2003) Resource quality effects on life histories of Daphnia. Limnol Oceanogr 48:700–706
Article
Google Scholar
Branstrator DK, Lehman JT (1991) Invertebrate predation in Lake Michigan: regulation of Bosmina longirostris by Leptodora kindtii. Limnol Oceanogr 36:483–495
Article
Google Scholar
Brooks JL, Dodson SI (1965) Predation, body size and composition of plankton. Science 150:28–35
Article
CAS
PubMed
Google Scholar
Chávez MN, Schenck TL, Hopfner U, Centeno-Cerdas C, Somlai-Schweiger I, Schwarz C, Machens H-G, Heikenwalder M, Bono MR, Allende ML, Nickelsen J, Egaña JT (2016) Towards autotrophic tissue engineering: photosynthetic gene therapy for regeneration. Biomaterials 75:25–36
Article
CAS
PubMed
Google Scholar
Cooper SD (1983) Selective predation on cladocerans by common pond insects. Can J Zool 61:879–886
Article
Google Scholar
Coso S, Bovay E, Petrova TV (2014) Pressing the right buttons: signaling in lymphangiogenesis. Blood 123:2614–2624
Article
CAS
PubMed
Google Scholar
Cripps G, Lindeque P, Flynn K (2014) Parental exposure to elevated pCO2 influences the reproductive success of copepods. J Plankton Res 36:1165–1174
Article
CAS
PubMed
PubMed Central
Google Scholar
De Bie T, De Meester L, Brendonck L, Martens K, Goddeeris B, Ercken D, Hample H, Denys L, Vanhecke L, Van der Gucht K, Van Wichelen J, Wyverman W, Declerck SAJ (2012) Body size and dispersal mode as key traits determining metacommunity structure of aquatic organisms. Ecol Lett 15:740–747
Article
PubMed
Google Scholar
Dodson SI, Havel JE (1988) Indirect prey effects: some morphological and life history responses of Daphnia pulex exposed to Notonecta undulata. Limnol Oceanogr 33:1274–1285
Article
Google Scholar
Ebert D (2005) Ecology, epidemiology, and evolution of parasitism in Daphnia. Page Evolution. National Library of Medicine (US), National Center for Biotechnology Information Bethesda, Maryland, USA, US.
Elser JJ, Dobberfuhl DR, MacKay NA, Schampel JH (1996) Organism size, life history, and N:P stoichiometry: toward a unified view of cellular and ecosystem processes. BioScience 46:674–684
Article
Google Scholar
Fenchel TOM, Finlay BJ (2004) The ubiquity of small species: patterns of local and global diversity. BioScience 54:777–784
Article
Google Scholar
Figuerola J, Green AJ (2002) Dispersal of aquatic organisms by waterbirds: a review of past research and priorities for future studies. Freshw Biol 47:483–494
Article
Google Scholar
Frost PC, Ebert D, Larson JH, Marcus MA, Wagner ND, Zalewski A (2010) Transgenerational effects of poor elemental food quality on Daphnia magna. Oecologia 162:865–872
Article
PubMed
Google Scholar
Flynn KJ, Mitra A, Greenwell HC, Sui J (2013) Monster potential meets potential monster: pros and cons of deploying genetically modified microalgae for biofuels production. Interface Focus, 3(1): 20120037.
Galbraith M (1967) Size-selective predation on Daphnia by Rainbow Trout and Yellow Perch. Trans Am Fish Soc 96:1–10
Article
Google Scholar
Ginjupalli GK, Baldwin WS (2013) The time-and age-dependent effects of the juvenile hormone analog pesticide, pyriproxyfen on Daphnia magna reproduction. Chemosphere 92:1260–1266
Article
CAS
PubMed
PubMed Central
Google Scholar
Gong Y, Hu H, Gao YXX, Gao H (2011) Microalgae as platforms for production of recombinant proteins and valuable compounds: progress and prospects. J Ind Microbiol Biotechnol 38:1879–1890
Article
CAS
PubMed
Google Scholar
Gorr TA, Cahn JD, Yamagata H, Bunn HF (2004) Hypoxia-induced synthesis of hemoglobin in the crustacean Daphnia magna is hypoxia-inducible factor-dependent. J Biol Chem 279:36038–36047
Article
CAS
PubMed
Google Scholar
Gressel J, van der Vlugt CJB, Bergmans HEN (2013) Environmental risks of large scale cultivation of microalgae: mitigation of spills. Algal Res 2:286–298
Article
Google Scholar
Griesbeck C, Kobl I, Heitzer M (2006) Chlamydomonas reinhardtii. Mol Biotechnol 34:213–223
Article
CAS
PubMed
Google Scholar
Guillard RR, Lorenzen CJ (1972) Yellow-green algae with chlorophyllide c. J Appl Phycol 8:10–14
CAS
Google Scholar
Haney JF, Hall DJ (1973) Sugar-coated Daphnia : a preservation technique for Cladocera. Limnol Oceanogr 18:331–333
Article
Google Scholar
Harris EH (2001) Chlamydomonas as model organism. Annu Rev Plant Physiol Plant Mol Biol 52:363–406
Article
CAS
PubMed
Google Scholar
Harris EH (2009) The Chlamydomonas sourcebook: introduction to Chlamydomonas and its laboratory use, Second edn. Elsevier/Academic Press, Oxford
Google Scholar
Henley WJ, Litaker RW, Novoveská L, Duke CS, Quemada HD, Sayre RT (2013) Initial risk assessment of genetically modified (GM) microalgae for commodity-scale biofuel cultivation. Algal Res 2:66–77
Article
Google Scholar
Hewett JP, Wolfe AK, Bergmann RA, Stelling SC, Davis KL (2016) Human health and environmental risks posed by synthetic biology R&D for energy applications: a literature analysis. Appl Biosafety 21:77–184
Article
Google Scholar
Holmes DIR, Zachary I (2005) The vascular endothelial growth factor (VEGF) family: angiogenic factors in health and disease. Genome Biol 6:209
Article
PubMed
PubMed Central
Google Scholar
Horne RW, Davies DR, Norton K, Gurney-Smith M (1971) Electron microscope and optical diffraction studies on isolated cell walls from Chlamydomonas. Nature 232:493–495
Article
CAS
PubMed
Google Scholar
James C (2011) Global status of commercialized biotech/GM crops: 2011. ISAAA Brief No. 43. ISAAA: Ithaca, NY.
Jeschke JM, Tollrian R (2000) Density-dependent effects of prey defences. Oecologia 123:391–396
Article
CAS
PubMed
Google Scholar
Khattak HK, Prater C, Wagner ND, Frost PC (2018) The threshold elemental ratio of carbon and phosphorus of Daphnia magna and its connection to animal growth. Scien Rep 8:9673
Article
CAS
Google Scholar
Kim D-H, Kim YT, Cho JJ, Bae J-H, Hur S-B, Hwang I, Choi T-J (2002) Stable integration and functional expression of flounder growth hormone gene in transformed microalga, Chlorella ellipsoidea. Mar Biotechnol 4:63–73
Article
CAS
Google Scholar
Krebs CJ (1989) Ecological Methodology. HarperCollins, New York.
Lampert W, Trubetskova I (1996) Juvenile growth rate as a measure of fitness in Daphnia. Funct Ecol:631–635
Lang WC, Chrispeels MJ (1976) Biosynthesis and release of cell wall-like glycoproteins during the vegetative cell cycle of Chlamydomonas reinhardii. Planta 129:183–189
Article
CAS
PubMed
Google Scholar
León-Bañares R, González-Ballester D, Galván A, Fernández E (2004) Transgenic microalgae as green cell-factories. Trends Biotechnol 22:45–52
Article
CAS
PubMed
Google Scholar
Löffler A, Wolinska J, Keller B, Rothhaupt KO, Spaak P (2004) Life history patterns of parental and hybrid Daphnia differ between lakes. Freshw Biol 49:1372–1380
Article
CAS
Google Scholar
Ma JK-C, Drake PMW, Christou P (2003) The production of recombinant pharmaceutical proteins in plants. Nat Rev Genet 4:794–805
Article
CAS
PubMed
Google Scholar
Martin-Creuzburg D, Wacker A, Von Elert E (2005) Life history consequences of sterol availability in the aquatic keystone species Daphnia. Oecologia 144:362–372
Article
PubMed
Google Scholar
Mitchell SF, Trainor FR, Rich PH, Goulden CE (1992) Growth of Daphnia magna in the laboratory in relation to the nutritional state of its food species, Chlamydomonas reinhardtii. J Plankton Res 14:379–391
Article
Google Scholar
Neupert J, Karcher D, Bock R (2009) Generation of Chlamydomonas strains that efficiently express nuclear transgenes. Plant J 57:1140–1150
Article
CAS
PubMed
Google Scholar
Porter KG (1973) The selective effects of grazing by zooplankton on the phytoplankton of Fuller Pond. Yale University.
Porter KG, Orcutt JD (1980) Nutritional adequacy, manageability, and toxicity as factors that determine the food quality of green and blue-green algae for Daphnia. In: Keerfoot C (ed) Evolution and ecology of zooplankton communities. University Press of New England, Hanover, pp 268–281
Google Scholar
Snow AA, Smith VH (2012) Genetically engineered algae for biofuels: a key role for ecologists. BioScience 62:765
Article
Google Scholar
Sommer U (1992) Phosphorus-limited Daphnia: intraspecific facilitation instead of competition. Limnol Oceanogr 37:966–973
Article
Google Scholar
Specht E, Miyake-Stoner S, Mayfield S (2010) Micro-algae come of age as a platform for recombinant protein production. Biotechnol Lett 32:1373–1383
Article
CAS
PubMed
PubMed Central
Google Scholar
Sterner RW (1993) Daphnia growth on varying quality of Scenedesmus: mineral limitation of zooplankton. Ecology 74:2351–2360
Article
Google Scholar
Sterner RW, Hagemeier DD, Smith WL, Smith RF (1993) Phytoplankton nutrient limitation and food quality for Daphnia. Limnol Oceanogr 38:857–871
Article
Google Scholar
Stibor H, MachaCek J (1998) The influence of fish-exuded chemical signals on the carbon budget of Daphnia. Limnol Oceanogr 43:997–1000
Article
CAS
Google Scholar
Szyjka SJ, Mandal S, Schoepp NG, Tyler BM, Yohn CB, Poon YS, Mayfield SP (2017) Evaluation of phenotype stability and ecological risk of a genetically engineered alga in open pond production. Algal Res 24:378–386
Article
Google Scholar
Sun XM, Ren LJ, Zhao QY, Ji XJ, Huang H (2018) Microalgae for the production of lipid and carotenoids: a review with focus on stress regulation and adaptation. Biotechnol biofuels, 11(1):272.
Usher PK, Ross AB, Camargo-Valero MA, Tomlin AS, Gale WF (2014) An overview of the potential environmental impacts of large-scale microalgae cultivation. Biofuels 5:331–349
Article
CAS
Google Scholar
Van Donk E, Lürling M, Hessen DO, Lokhorst GM (1997) Altered cell wall morphology in nutrient-deficient phytoplankton and its impact on grazers. Limnol Oceanogr 42:357–364
Article
Google Scholar
Vanni MJ, Lampert W (1992) Food quality effects on life history traits and fitness in the generalist herbivore Daphnia. Oecologia 92:48–57
Article
PubMed
Google Scholar
Vitt UA, Hsu SY, Hsueh AJ (2001) Evolution and classification of cystine knot-containing hormones and related extracellular signaling molecules. Mol Endocrinol 15:681–694
Article
CAS
PubMed
Google Scholar
Wetzel RG, Likens GE (1991) Limnological analyses. Springer, New York
Book
Google Scholar
Wijffels RH, Kruse O, Hellingwerf KJ (2013) Potential of industrial biotechnology with cyanobacteria and eukaryotic microalgae. Curr Opin Biotechnol 24:405–413
Article
CAS
PubMed
Google Scholar
Zhang C, Wohlhueter R, Zhang H (2016) Genetically modified foods: a critical review of their promise and problems. Food Science Human Wellness 5:116–123
Article
Google Scholar