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Environmental and bioclimatic factors influencing yeasts and molds distribution...

Cogliati, M.; Arikan-Akdagli, S.; Barac, A.; Bostanaru, A. C.; Brito, S.; Çerikçioğlu, N.; Efstratiou, M. A.; Ergin, Ç.; Esposto, M. C.; Frenkel, M.

The present study employed data collected during the Mycosands survey to investigate the environmental factors influencing yeasts and molds distribution along European shores applying a species distribution modelling approach. Occurrence data were compared to climatic datasets (temperature, precipitation, and solar radiation), soil datasets (chemical and physical properties), and water datasets (temperature, sa...


Environmental and bioclimatic factors influencing yeasts and molds distribution...

Cogliati, M.; Arikan-Akdagli, S.; Barac, A.; Bostanaru, A. C.; Brito, S.; Çerikçioğlu, N.; Efstratiou, M. A.; Ergin, Ç.; Esposto, M. C.; Frenkel, M.

The present study employed data collected during the Mycosands survey to investigate the environmental factors influencing yeasts and molds distribution along European shores applying a species distribution modelling approach. Occurrence data were compared to climatic datasets (temperature, precipitation, and solar radiation), soil datasets (chemical and physical properties), and water datasets (temperature, sa...

Date: 2023   |   Origin: Repositório da UTAD

Environmental and bioclimatic factors influencing yeasts and molds distribution...

Cogliati, M.; Arikan-Akdagli, S.; Barac, A.; Bostanaru, A.C.; Brito, S.; Çerikçioğlu, N.; Efstratiou, M.A.; Ergin, Ç.; Esposto, M.C.; Frenkel, M.

The present study employed data collected during the Mycosands survey to investigate the environmental factors influencing yeasts and molds distribution along European shores applying a species distribution modelling approach. Occurrence data were compared to climatic datasets (temperature, precipitation, and solar radiation), soil datasets (chemical and physical properties), and water datasets (temperature, sa...


Mycosands: Fungal diversity and abundance in beach sand and recreational waters...

Brandão, J.; Gangneux, J.P.; Arikan-Akdagli, S.; Barac, A.; Bostanaru, A.C.; Brito, S.; Bull, M.; Çerikçioğlu, N.; Chapman, B.; Efstratiou, M.A.

The goal of most studies published on sand contaminants is to gather and discuss knowledge to avoid faecal contamination of water by run-offs and tide retractions. Other life forms in the sand, however, are seldom studied but always pointed out as relevant. The Mycosands initiative was created to generate data on fungi in beach sands and waters, of both coastal and freshwater inland bathing sites. A team of med...


Fungal contaminants – a paradoxal void in safety regulation of drinking water a...

Sabino, R.; Novak Babič, M.; Gunde-Cimerman, N.; Veríssimo, C.; Viegas, C.; Várgha, M.; Meyer, W.; Brandão, J.

Although exposure to fungi and their metabolites, by inhalation, contact and ingestion has often been addressed, it rarely made way into safety regulation. The EU drinking water directive 98/83/EC and the national legislation in the European countries - with very few exceptions - fails to address fungi explicitly. The same is valid also for European regulatory Directive 2006/7/EC, currently undergoing its secon...


Fungal contaminants: a paradoxal void in safety regulation of drinking water an...

Brandão, J. C.; Sabino, Raquel; Novak-Babic, M.; Gunde-Cimerman, N.; Veríssimo, Carla; Viegas, Carla; Vargha, M.; Meyer, W.

Objectives: The United Nations sustainable development goal #3, aims to “By 2030, substantially reduce the number of deaths and illnesses from hazardous chemicals and air, water and soil pollution and contamination” (New York, September 2015). This study’s objective is to assess the European drinking and bathing water regulations and detect missing fungal parameters that may affect human health.


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