Exploring the Physiological Multiplicity of Native Microalgae from the Ecuadorian Highland, Italian Lowland and Indoor Locations in Response to UV-B
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C. Chiellini | L. Guglielminetti | Thais Huarancca Reyes | C. Sandoval | Cristina Echeverría | Emilio Barozzi
[1] C. Chiellini,et al. UV-B Irradiation Effect on Microalgae Performance in the Remediation of Effluent Derived from the Cigarette Butt Cleaning Process , 2022, Plants.
[2] Gao-hong Wang,et al. Cell damage repair mechanism in a desert green algae Chlorella sp. against UV-B radiation. , 2022, Ecotoxicology and environmental safety.
[3] C. Chiellini,et al. Remediation Capacity of Different Microalgae in Effluents Derived from the Cigarette Butt Cleaning Process , 2022, Plants.
[4] Y. Wang,et al. Balancing Damage via Non-Photochemical Quenching, Phenolic Compounds and Photorespiration in Ulva prolifera Induced by Low-Dose and Short-Term UV-B Radiation , 2022, International journal of molecular sciences.
[5] C. Chiellini,et al. Evaluation of Nutraceutical Properties of Eleven Microalgal Strains Isolated from Different Freshwater Aquatic Environments: Perspectives for Their Application as Nutraceuticals , 2022, Foods.
[6] Bioprospecting of Microorganism‐Based Industrial Molecules , 2021 .
[7] Juliana Botelho Moreira,et al. Microalgae‐Based UV Protection Compounds , 2021, Bioprospecting of Microorganism‐Based Industrial Molecules.
[8] Bojian Zhong,et al. Origin and adaptive evolution of UV RESISTANCE LOCUS 8-mediated signaling during plant terrestrialization. , 2021, Plant physiology.
[9] Eric J. Pedersen,et al. Ecological resilience in tropical Andean lakes: A paleolimnological perspective , 2021, Limnology and Oceanography.
[10] J. Minagawa,et al. UV-A/B radiation rapidly activates photoprotective mechanisms in Chlamydomonas reinhardtii , 2020, bioRxiv.
[11] M. El-sheekh,et al. Effect of UV-B radiation on amino acids profile, antioxidant enzymes and lipid peroxidation of some cyanobacteria and green algae , 2020, International journal of radiation biology.
[12] R. P. Rastogi,et al. Resilience and self-regulation processes of microalgae under UV radiation stress , 2020, Journal of Photochemistry and Photobiology C: Photochemistry Reviews.
[13] A. Pompeiano,et al. Photosynthetic performance of five cool-season turfgrasses under UV-B exposure. , 2020, Plant physiology and biochemistry : PPB.
[14] N. Salinas,et al. Physiological responses of maca (Lepidium meyenii Walp.) plants to UV radiation in its high-altitude mountain ecosystem , 2020, Scientific Reports.
[15] Jincai Ma,et al. Antioxidant response mechanism of freshwater microalgae species to reactive oxygen species production: a mini review , 2020, Chemistry and Ecology.
[16] A. Sellstedt,et al. Effects of light intensity on growth and lipid production in microalgae grown in wastewater , 2020, Biotechnology for Biofuels.
[17] G. P. Williams,et al. Effect of UV-β radiation on the Growth, Pigment production and Macromolecular contents in Marine microalgae , 2019, Research Journal of Pharmacy and Technology.
[18] L. Guglielminetti,et al. Differential effects of sodium chloride on germination and post-germination stages of two tomato genotypes , 2019, Scientia Horticulturae.
[19] A. Pompeiano,et al. Photosynthetic and Growth Responses of Arundo donax L. Plantlets Under Different Oxygen Deficiency Stresses and Reoxygenation , 2019, Front. Plant Sci..
[20] Rashmi Chandra,et al. Factors affecting the induction of UV protectant and lipid productivity in Lyngbya for sequential biorefinery product recovery. , 2019, Bioresource technology.
[21] J. Beardall,et al. Cell size, photosynthesis and the package effect: an artificial selection approach. , 2018, The New phytologist.
[22] L. Ferro,et al. Isolation and characterization of microalgal strains for biomass production and wastewater reclamation in Northern Sweden , 2018 .
[23] J. Herndon,et al. Deadly Ultraviolet UV-C and UV-B Penetration to Earth’s Surface: Human and Environmental Health Implications , 2018 .
[24] A. Ranieri,et al. Physiological effects of short acute UVB treatments in Chenopodium quinoa Willd , 2018, Scientific Reports.
[25] Leonardo Brantes Bacellar Mendes,et al. Exploring the metabolic and physiological diversity of native microalgal strains (Chlorophyta) isolated from tropical freshwater reservoirs , 2017 .
[26] L. Navarro,et al. Diversidad de microalgas y cianobacterias en muestras provenientes de diferentes provincias del Ecuador, destinadas a una colección de cultivos. , 2017 .
[27] You Wang,et al. ROS and calcium signaling mediated pathways involved in stress responses of the marine microalgae Dunaliella salina to enhanced UV-B radiation. , 2017, Journal of photochemistry and photobiology. B, Biology.
[28] Xurong Xu,et al. Protection of Photosynthetic Algae against Ultraviolet Radiation by One-Step CeO2 Shellization. , 2017, Langmuir : the ACS journal of surfaces and colloids.
[29] K. Niyogi,et al. UV-B photoreceptor-mediated protection of the photosynthetic machinery in Chlamydomonas reinhardtii , 2016, Proceedings of the National Academy of Sciences.
[30] L. Lamattina,et al. A Comprehensive Phylogeny Reveals Functional Conservation of the UV-B Photoreceptor UVR8 from Green Algae to Higher Plants , 2016, Front. Plant Sci..
[31] É. Hideg,et al. UV-B effects on leaves-Oxidative stress and acclimation in controlled environments. , 2016, Plant science : an international journal of experimental plant biology.
[32] M. Goldschmidt-Clermont,et al. UV-B Perception and Acclimation in Chlamydomonas reinhardtii[OPEN] , 2016, Plant Cell.
[33] A. Rivera,et al. Dunaliella tertiolecta (Chlorophyta) Avoids Cell Death Under Ultraviolet Radiation By Triggering Alternative Photoprotective Mechanisms , 2015, Photochemistry and Photobiology.
[34] J. Beardall,et al. Interactive Effects of Temperature and UV Radiation on Photosynthesis of Chlorella Strains from Polar, Temperate and Tropical Environments: Differential Impacts on Damage and Repair , 2015, PloS one.
[35] You Wang,et al. Effect of enhanced UV-B radiation on photosynthetic characteristics of marine microalgae Dunaliella salina (Chlorophyta, Chlorophyceae) , 2015 .
[36] K. Gao,et al. Response of Growth and Photosynthesis of Emiliania huxleyi to Visible and UV Irradiances under Different Light Regimes , 2015, Photochemistry and photobiology.
[37] S. Flint,et al. Solar ultraviolet radiation and ozone depletion-driven climate change: effects on terrestrial ecosystems , 2014, Photochemical & Photobiological Sciences.
[38] Jiao Wang,et al. UV-B resistance as a criterion for the selection of desert microalgae to be utilized for inoculating desert soils , 2013, Journal of Applied Phycology.
[39] G. Torzillo,et al. Photosynthesis in Microalgae , 2013 .
[40] Qiang Hu,et al. Handbook of Microalgal Culture: Applied Phycology and Biotechnology , 2013 .
[41] Marcel A K Jansen,et al. UV-B exposure, ROS, and stress: inseparable companions or loosely linked associates? , 2013, Trends in plant science.
[42] G. M. Ross,et al. Management of oxidative stress by microalgae. , 2013, Canadian journal of physiology and pharmacology.
[43] Eberhard Schäfer,et al. Perception of UV-B by the Arabidopsis UVR8 Protein , 2011, Science.
[44] H. Dahms,et al. UV radiation in marine ectotherms: molecular effects and responses. , 2010, Aquatic toxicology.
[45] Robert E. Jinkerson,et al. Genetic Engineering of Algae for Enhanced Biofuel Production , 2010, Eukaryotic Cell.
[46] Juan Yu,et al. Changes in ultrastructure and responses of antioxidant systems of algae (Dunaliella salina) during acclimation to enhanced ultraviolet-B radiation. , 2009, Journal of photochemistry and photobiology. B, Biology.
[47] Edward J Oakeley,et al. Interaction of COP1 and UVR8 regulates UV‐B‐induced photomorphogenesis and stress acclimation in Arabidopsis , 2009, The EMBO journal.
[48] K. Hughes. Solar UV-B radiation, associated with ozone depletion, inhibits the Antarctic terrestrial microalga, Stichococcus bacillaris , 2006, Polar Biology.
[49] L. An,et al. Effects of Enhanced Ultraviolet-B Radiation on Algae and Cyanobacteria , 2005, Critical reviews in microbiology.
[50] David W. Johnson,et al. Response of terrestrial microorganisms to ultraviolet-B radiation in ecosystems. , 2003, Research in microbiology.
[51] Y. Chisti,et al. A mechanistic model of photosynthesis in microalgae. , 2003, Biotechnology and bioengineering.
[52] P. Juneau,et al. PAM Fluorometry in the Determination of the Sensitivity of Chlorella vulgaris, Selenastrum capricornutum, and Chlamydomonas reinhardtii to Copper , 2002, Archives of environmental contamination and toxicology.
[53] D. Hanelt,et al. Effects of ultraviolet radiation on photosynthesis and related enzyme reactions of marine macroalgae , 2000, Planta.
[54] F. Skoog,et al. A revised medium for rapid growth and bio assays with tobacco tissue cultures , 1962 .
[55] É. Hideg,et al. Editorial: Interactive effects of UV-B radiation in a complex environment. , 2019, Plant physiology and biochemistry : PPB.
[56] Diogo Estêvão. Production of UV-B screens and changes in photosynthetic efficiency in Antarctic Nostoc commune colonies and a lichen Xanthoria elegans depend on a dose and duration of UV-B stress , 2015 .
[57] C. Bock,et al. A phylogenetic study on Scenedesmaceae with the description of a new species of Pectinodesmus and the new genera Verrucodesmus and Chodatodesmus (Chlorophyta, Chlorophyceae) , 2013 .
[58] S. Talebi,et al. A Review of Effect of Light on Microalgae Growth , 2012 .
[59] F. Venezia,et al. GEOCHEMICAL AND ENVIRONMENTAL STUDY OF A COASTAL ECOSYSTEM: MASSACIUCCOLI LAKE (NORTHERN TUSCANY, ITALY) , 2009 .
[60] M. Kawachi,et al. Traditional Microalgae Isolation Techniques , 2005 .
[61] J. Sullivan. Effects of increasing UV-B radiation and atmospheric CO2 on photosynthesis and growth: implications for terrestrial ecosystems , 2004, Plant Ecology.
[62] H. Lichtenthaler. CHLOROPHYLL AND CAROTENOIDS: PIGMENTS OF PHOTOSYNTHETIC BIOMEMBRANES , 1987 .