Extensive intragenomic variations of the 18S rDNA V4 region in the toxigenic diatom species Pseudo-nitzschia multistriata revealed through high-throughput sequencing

Metabarcoding analysis is an effective technique for monitoring the domoic acid-producing Pseudo-nitzschia species in marine environments, uncovering high-levels of molecular diversity. However, such efforts may result in the overinterpretation of Pseudo-nitzschia species diversity, as molecular div...

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Main Authors: Wang, Hui, Liu, Kuiyan, Chen, Ziyan, Chen, Yang, Hu, Zhangxi, Chen, Weizhou, Leaw, Chui Pin, Chen, Nansheng
Format: Article
Published: Elsevier 2024
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Online Access:http://eprints.um.edu.my/45388/
https://doi.org/10.1016/j.marpolbul.2024.116198
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spelling my.um.eprints.453882024-10-16T07:17:45Z http://eprints.um.edu.my/45388/ Extensive intragenomic variations of the 18S rDNA V4 region in the toxigenic diatom species Pseudo-nitzschia multistriata revealed through high-throughput sequencing Wang, Hui Liu, Kuiyan Chen, Ziyan Chen, Yang Hu, Zhangxi Chen, Weizhou Leaw, Chui Pin Chen, Nansheng Q Science (General) QH Natural history Metabarcoding analysis is an effective technique for monitoring the domoic acid-producing Pseudo-nitzschia species in marine environments, uncovering high-levels of molecular diversity. However, such efforts may result in the overinterpretation of Pseudo-nitzschia species diversity, as molecular diversity not only encompasses interspecies and intraspecies diversities but also exhibits extensive intragenomic variations (IGVs). In this study, we analyzed the V4 region of the 18S rDNA of 30 strains of Pseudo-nitzschia multistriata collected from the coasts of China. The results showed that each P. multistriata strain harbored about a hundred of unique 18S rDNA V4 sequence varieties, of which each represented by a unique amplicon sequence variant (ASV). This study demonstrated the extensive degree of IGVs in P. multistriata strains, suggesting that IGVs may also present in other Pseudo-nitzschia species and other phytoplankton species. Understanding the scope and levels of IGVs is crucial for accurately interpreting the results of metabarcoding analysis. Elsevier 2024-04 Article PeerReviewed Wang, Hui and Liu, Kuiyan and Chen, Ziyan and Chen, Yang and Hu, Zhangxi and Chen, Weizhou and Leaw, Chui Pin and Chen, Nansheng (2024) Extensive intragenomic variations of the 18S rDNA V4 region in the toxigenic diatom species Pseudo-nitzschia multistriata revealed through high-throughput sequencing. Marine Pollution Bulletin, 201. p. 116198. ISSN 0025-326X, DOI https://doi.org/10.1016/j.marpolbul.2024.116198 <https://doi.org/10.1016/j.marpolbul.2024.116198>. https://doi.org/10.1016/j.marpolbul.2024.116198 10.1016/j.marpolbul.2024.116198
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic Q Science (General)
QH Natural history
spellingShingle Q Science (General)
QH Natural history
Wang, Hui
Liu, Kuiyan
Chen, Ziyan
Chen, Yang
Hu, Zhangxi
Chen, Weizhou
Leaw, Chui Pin
Chen, Nansheng
Extensive intragenomic variations of the 18S rDNA V4 region in the toxigenic diatom species Pseudo-nitzschia multistriata revealed through high-throughput sequencing
description Metabarcoding analysis is an effective technique for monitoring the domoic acid-producing Pseudo-nitzschia species in marine environments, uncovering high-levels of molecular diversity. However, such efforts may result in the overinterpretation of Pseudo-nitzschia species diversity, as molecular diversity not only encompasses interspecies and intraspecies diversities but also exhibits extensive intragenomic variations (IGVs). In this study, we analyzed the V4 region of the 18S rDNA of 30 strains of Pseudo-nitzschia multistriata collected from the coasts of China. The results showed that each P. multistriata strain harbored about a hundred of unique 18S rDNA V4 sequence varieties, of which each represented by a unique amplicon sequence variant (ASV). This study demonstrated the extensive degree of IGVs in P. multistriata strains, suggesting that IGVs may also present in other Pseudo-nitzschia species and other phytoplankton species. Understanding the scope and levels of IGVs is crucial for accurately interpreting the results of metabarcoding analysis.
format Article
author Wang, Hui
Liu, Kuiyan
Chen, Ziyan
Chen, Yang
Hu, Zhangxi
Chen, Weizhou
Leaw, Chui Pin
Chen, Nansheng
author_facet Wang, Hui
Liu, Kuiyan
Chen, Ziyan
Chen, Yang
Hu, Zhangxi
Chen, Weizhou
Leaw, Chui Pin
Chen, Nansheng
author_sort Wang, Hui
title Extensive intragenomic variations of the 18S rDNA V4 region in the toxigenic diatom species Pseudo-nitzschia multistriata revealed through high-throughput sequencing
title_short Extensive intragenomic variations of the 18S rDNA V4 region in the toxigenic diatom species Pseudo-nitzschia multistriata revealed through high-throughput sequencing
title_full Extensive intragenomic variations of the 18S rDNA V4 region in the toxigenic diatom species Pseudo-nitzschia multistriata revealed through high-throughput sequencing
title_fullStr Extensive intragenomic variations of the 18S rDNA V4 region in the toxigenic diatom species Pseudo-nitzschia multistriata revealed through high-throughput sequencing
title_full_unstemmed Extensive intragenomic variations of the 18S rDNA V4 region in the toxigenic diatom species Pseudo-nitzschia multistriata revealed through high-throughput sequencing
title_sort extensive intragenomic variations of the 18s rdna v4 region in the toxigenic diatom species pseudo-nitzschia multistriata revealed through high-throughput sequencing
publisher Elsevier
publishDate 2024
url http://eprints.um.edu.my/45388/
https://doi.org/10.1016/j.marpolbul.2024.116198
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