2020
DOI: 10.1371/journal.pone.0233189
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Large-scale metabarcoding analysis of epipelagic and mesopelagic copepods in the Pacific

Abstract: A clear insight into the large-scale community structure of planktonic copepods is critical to understanding the mechanisms controlling diversity and biogeography of marine taxa in terms of their high abundance, ubiquity, and sensitivity to environmental changes. Here, we applied a 28S metabarcoding approach to large-scale communities of epipelagic and mesopelagic copepods at 70 stations across the Pacific Ocean and three stations in the Arctic Ocean. Major patterns of community structure and diversity, influe… Show more

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Cited by 29 publications
(22 citation statements)
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“…We suggest that vertical ranges of diel mesoplankton migrations are mostly within the sampled depth ranges of our dataset and, therefore, do not visibly affect mesoplankton structure. Similar conclusions were made by Hirai et al (2020) in the tropical and subtropical Pacific where the epi-and mesopelagic zooplankton differed by taxonomical structure with no influence of diel vertical migrations.…”
Section: The Basic Division Of Assemblages: the Vertical Effect Of Depthsupporting
confidence: 80%
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“…We suggest that vertical ranges of diel mesoplankton migrations are mostly within the sampled depth ranges of our dataset and, therefore, do not visibly affect mesoplankton structure. Similar conclusions were made by Hirai et al (2020) in the tropical and subtropical Pacific where the epi-and mesopelagic zooplankton differed by taxonomical structure with no influence of diel vertical migrations.…”
Section: The Basic Division Of Assemblages: the Vertical Effect Of Depthsupporting
confidence: 80%
“…In fact, the South and the North Atlantic gyral systems harbour sister (Sutton et al, 2017) or cryptic (Kulagin et al, 2021) species and the species-level approach, especially coupled with molecular analyses, might separate the two assemblages from each other. However, this is not guaranteed because even a speciessensitive metabarcoding analysis showed a taxonomical similarity between the northern and southern gyre areas in the Pacific meso-and bathypelagic (Hirai et al, 2020). In any case, no division between the Northern and Southern Atlantic gyres was found in the genus-level taxonomic composition, which suggests that the meso-and bathypelagic assemblages (as well as the epipelagic assemblages) are shaped by trophic rather than by geographic factors.…”
Section: The Basic Division Of Assemblages: the Vertical Effect Of Depthmentioning
confidence: 93%
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“…DNA metabarcoding analysis of the diversity of marine zooplankton has been carried out using a variety of marker gene regions, including COI (Hirai et al 2015;Yang et al 2017;Djurhuus et al 2018), nuclear 18S rRNA (Bucklin et al 2019;Blanco-Bercial 2020), and frequently multiple gene regions used in combination (Sommer et al 2017;Hirai et al 2020;Questel et al 2021). Classification of the resulting sequences for any gene requires a taxonomicallycomprehensive and globally-extensive reference database of sequences determined from morphologically identified specimens, ideally with complete collection metadata (georeferencing).…”
Section: Priorities For Dna Barcoding and Metabarcodingmentioning
confidence: 99%
“…Makers such as the mitochondrial 16S rRNA gene or COI have often been used to recover specific metazoan groups (Djurhuus et al, 2020;West et al, 2020). The 28S rRNA gene has also been used to assess community diversity for metazoans (Machida and Knowlton, 2012), zooplankton (Hirai et al, 2020), or algae (Bittner et al, 2013).…”
Section: Introductionmentioning
confidence: 99%