Haplo-diplontic life cycle expands coccolithophore niche

Coccolithophores are globally important marine calcifying phytoplankton that utilize a haplo-diplontic life cycle. The haplo-diplontic life cycle allows coccolithophores to divide in both life cycle phases and potentially expands coccolithophore niche volume. Research has, however, to date largely o...

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Veröffentlicht in:Biogeosciences 2021-02, Vol.18 (3), p.1161-1184
Hauptverfasser: de Vries, Joost, Monteiro, Fanny, Wheeler, Glen, Poulton, Alex, Godrijan, Jelena, Cerino, Federica, Malinverno, Elisa, Langer, Gerald, Brownlee, Colin
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Sprache:eng
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Zusammenfassung:Coccolithophores are globally important marine calcifying phytoplankton that utilize a haplo-diplontic life cycle. The haplo-diplontic life cycle allows coccolithophores to divide in both life cycle phases and potentially expands coccolithophore niche volume. Research has, however, to date largely overlooked the life cycle of coccolithophores and has instead focused on the diploid life cycle phase of coccolithophores. Through the synthesis and analysis of global scanning electron microscopy (SEM) coccolithophore abundance data (n=2534), we find that calcified haploid coccolithophores generally constitute a minor component of the total coccolithophore abundance (â 2 %-15 % depending on season). However, using case studies in the Atlantic Ocean and Mediterranean Sea, we show that, depending on environmental conditions, calcifying haploid coccolithophores can be significant contributors to the coccolithophore standing stock (up to â30 %). Furthermore, using hypervolumes to quantify the niche of coccolithophores, we illustrate that the haploid and diploid life cycle phases inhabit contrasting niches and that on average this allows coccolithophores to expand their niche by â18.8 %, with a range of 3 %-76 % for individual species.
ISSN:1726-4189
1726-4170
1726-4189
DOI:10.5194/bg-18-1161-2021