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Chiara Lauritano 2Post Doc
Integrative Marine Ecology Department

Tel. +39 081 5833221
Fax: +39 081 7641355
e-mail chiara.lauritano(at)szn.it
Skype: chiara.lauritano


Download Curriculum Vitae

Supervisor: Adrianna Ianora
Appointed on project: PharmaSea


Research Interests

My expertise is in marine biotechnology and molecular biology. I am currently studying bioactivity and gene expression in microalgae producing secondary metabolites with pharmaceutical potential within the framework of the EU project PharmaSea (http://www.pharma-sea.eu/). I am responsible for the growth and genotyping of the microalgal species, for the transcriptome and gene expression analyses, and for the chemical preparation of extracts for screening on different assays (Antioxidant, Anticancer, Anti-inflammatory).
I am also interested in gene expression responses to biotic and abiotic stressors in various marine organisms.

Selected Publications

Lauritano C., Borra M., Carotenuto Y., Biffali E., Miralto A., Procaccini G., Ianora A. (2011). First molecular evidence of diatom effects in the copepod Calanus helgolandicus. Journal of Experimental Marine Biology and Ecology 404(1-2): 79-86.

Lauritano C., Carotenuto Y., Procaccini G., Miralto A. and Ianora A. (2012). Copepod population-specific response to a toxic diatom diet. PLoS One, 7(10): e47262.

Carotenuto Y., Dattolo E., Lauritano C., Pisano F., Sanges R., Miralto A., Procaccini G. and Ianora A. (2014). Insight into the transcriptome of the copepod Calanus helgolandicus feeding on the diatom Skeletonema marinoi by means of suppression subtractive hybridization. Harmful Algae, 31: 153–162.

Lauritano C., Carotenuto Y., Vitiello V., Buttino I., Romano G. Hwang J.S. and Ianora A. (2015). Effects of the oxylipin-producing diatom Skeletonema marinoi on reproduction and gene expression levels in of the calanoid copepod Calanus sinicus. Marine Genomics. pii: S1874-7787(15)00008-2. doi: 10.1016/j.margen.2015.01.007.

Lauritano C., Orefice I., Procaccini G., Romano G., Ianora A. (2015). Key Genes as Stress Indicators in the Ubiquitous Diatom Skeletonema marinoi. BMC Genomics, 16: 411.

Lauritano C., Ruocco M., Dattolo E., Buia M.C., Silva J., Santos R., Olivé I., Costa M.M., Procaccini G. (2015). Response of key stress-related genes of the seagrass Posidonia oceanica in the vicinity of submarine volcanic vents, Biogeosciences, 12: 4185–4194.

Olsen J.L., Rouzé P., Verhelst B., Lin Y.C., Bayer T., Collen J., Dattolo E., De Paoli E., Dittami S., Maumus F., Michel G., Kersting A., Lauritano C., et al. (2016) The genome of the seagrass Zostera marina reveals angiosperm adaptation to the sea, Nature, 530:331–335. doi:10.1038/nature16548.

Lauritano C., Romano G., Roncalli V., Amoresano A., Fontanarosa C., Bastianini M., Braga F., Carotenuto Y., Ianora A. (2016) New oxylipins produced at the end of a diatom bloom and their effects on copepod reproductive success and gene expression levels. Harmful Algae. 55: 221–229.

Lauritano C., Andersen J.H., Hansen E., Albrigtsen M., Escalera L., Esposito F., Helland K., Hanssen K.Ø., Romano G., Ianora A. (2016) Bioactivity screening of microalgae for antioxidant, anti-inflammatory, anticancer, anti-diabetes and antibacterial activities. Frontiers in Marine Science. 3:68. doi: 10.3389/fmars.2016.00068.

Lauritano C., Ianora A. (2016) Marine Organisms with Anti-diabetes properties. Marine Drugs. In press

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