A Pseudo-nitzschia metabarcoding approach with a calibrated ITS1 reference sequence database applied in the Taiwan Strait

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

  • Biaobiao Niu
  • Jinxiu Pang
  • Lundholm, Nina
  • Cuiwen Liang
  • Sing Tung Teng
  • Qixiang Zheng
  • Xin Guo
  • Yang Li
Pseudo-nitzschia is a cosmopolitan phytoplankton genus of which some species can form blooms and produce the neurotoxin domoic acid (DA). Identification of Pseudo-nitzschia is generally based on field material or strains followed by morphological and/or molecular characterization. However, this process is time-consuming and laborious, and can not obtain a relatively complete and reliable profile of the Pseudo-nitzschia community, because species with low abundance in the field or potentially unavailable for culturing may easily be overlooked. In the present study, specific ITS primer sets were designed and evaluated using in silico matching. The primer set ITS-84F/456R involving the complete ITS1 region was found optimal. Based on matching with a Pseudo-nitzschia ITS1 reference sequence database carefully-calibrated in this study, a metabarcoding approach using annotated amplicon sequence variants (ASV) was applied in the Taiwan Strait of the East China Sea during two cruises in the spring and summer of 2019. In total, 48 Pseudo-nitzschia species/phylotypes including 36 known and 12 novel were uncovered, and verified by haplotype networks, ITS2 secondary structure comparisons and divergence analyses. Correlation analyses revealed that temperature was a key factor affecting the seasonal variation of the Pseudo-nitzschia community. This study provides an overview of the Pseudo-nitzschia community in the Taiwan Strait, with new insights into the diversity. The developed metabarcoding approach may be used elsewhere as a standard reference for accurate annotation of Pseudo-nitzschia.
OriginalsprogEngelsk
Artikelnummer102602
TidsskriftHarmful Algae
Vol/bind133
Antal sider14
ISSN1568-9883
DOI
StatusUdgivet - 2024

Bibliografisk note

Funding Information:
This work was supported by grants from Joint Fund of National Natural Science Foundation of China and Chinese Shandong Province ( U2106205 ), National Natural Science Foundation of China ( 32170206 ), National Key Research and Development Program of China ( 2022YFC3105201 ). Data and samples were collected onboard the R/V “Yanping 2” implementing the open research cruise NORC2019–04 supported by NSFC Shiptime Sharing Project (project number: 41849904).

Publisher Copyright:
© 2024 Elsevier B.V.

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