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Hydrothermal chimneys host habitat-specific microbial communities: analogues for studying the possible impact of mining seafloor massive sulfide deposits

Authors :
Han, Yuchen
Gonnella, Giorgio
Adam, Nicole
Schippers, Axel
Burkhardt, Lia
Kurtz, Stefan
Schwarz-schampera, Ulrich
Franke, Henrike
Perner, Mirjam
Source :
Scientific Reports, 8 (1). p. 10386., Scientific Reports, Scientific Reports, Vol 8, Iss 1, Pp 1-12 (2018), Scientific Reports (2045-2322) (Nature Publishing Group), 2018-07, Vol. 8, N. 1, P. 10386 (12p.)
Publication Year :
2018
Publisher :
Nature Research, 2018.

Abstract

To assess the risk that mining of seafloor massive sulfides (SMS) from extinct hydrothermal vent environments has for changing the ecosystem irreversibly, we sampled SMS analogous habitats from the Kairei and the Pelagia vent fields along the Indian Ridge. In total 19.8 million 16S rRNA tags from 14 different sites were analyzed and the microbial communities were compared with each other and with publicly available data sets from other marine environments. The chimneys appear to provide habitats for microorganisms that are not found or only detectable in very low numbers in other marine habitats. The chimneys also host rare organisms and may function as a vital part of the ocean’s seed bank. Many of the reads from active and inactive chimney samples were clustered into OTUs, with low or no resemblance to known species. Since we are unaware of the chemical reactions catalyzed by these unknown organisms, the impact of this diversity loss and bio-geo-coupling is hard to predict. Given that chimney structures can be considered SMS analogues, removal of sulfide deposits from the seafloor in the Kairei and Pelagia fields will most likely alter microbial compositions and affect element cycling in the benthic regions and probably beyond.

Details

Database :
OpenAIRE
Journal :
Scientific Reports, 8 (1). p. 10386., Scientific Reports, Scientific Reports, Vol 8, Iss 1, Pp 1-12 (2018), Scientific Reports (2045-2322) (Nature Publishing Group), 2018-07, Vol. 8, N. 1, P. 10386 (12p.)
Accession number :
edsair.pmid.dedup....85dfcf882260d58c6998941917ce5107