4.7 Article

Morphological and molecular identification reveals that waters from an isolated oasis in Tamanrasset (extreme South of Algerian Sahara) are colonized by opportunistic and pollution-tolerant diatom species

期刊

ECOLOGICAL INDICATORS
卷 121, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.ecolind.2020.107104

关键词

Diatoms; Sahara; Oasis; Gueltates Afilal; NGS; SEM; Cosmopolitanism; Mesosaprobic; Polysaprobic

资金

  1. Ministry of Science and Higher Education of the Institute of Marine and Environmental Sciences of the University of Szczecin
  2. Horizon 2020 Research and Innovation Programme GHaNA (The Genus Haslea, New marine resources for blue biotechnology and Aquaculture) [734708/GHANA/H2020-MSCA-RISE-2016]
  3. Polish Ministry of Science and Higher Education

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The study successfully identified diatom specimens from deep Sahara using modern taxonomical tools, demonstrating the possibility of cultivating such material in laboratories for biogeographical and bioindication experiments. The results suggest that European identification keys can be effective when applied to diatoms from the Sahara.
A water sample was obtained from an arheic oasis in the deep Sahara Desert, the Gueltates Afilal in Tamanrasset (Algeria). Five diatom strains were isolated, cultivated and identified as Tryblionella apiculata, Nitzschia supralitorea, Fistulifera saprophila, Navicula veneta and Thalassiosira pseudonana using a combination of scanning electron microscopy and next generation sequencing. The diatoms identified are opportunistic and cosmopolitan species with known tolerances to organic pollution and variations in salinities, often found in meso- and polysaprobic zones in Europe. Their complete organellar genomes have been sequenced and some exhibit features never observed among diatoms before. To our knowledge this is the first time that living specimens of diatoms from the deep Sahara are identified using modern taxonomical tools in the frame of a study which also demonstrates the possibility to cultivate such material in laboratories for further experiments on biogeography and bioindication. Our study also suggests that European identification keys can be effective when employed on diatoms from the Sahara.

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