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Draft genome and de novo transcriptome assembly of the Antarctic marine flatworm Obrimoposthia wandeli

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Title
Draft genome and de novo transcriptome assembly of the Antarctic marine flatworm Obrimoposthia wandeli
Other Titles
남극 해양 편형동물 Obrimoposthia wandeli의 초안 유전체 및 de novo 전사체 조립
Authors
Shin, Seung Chul
Kim, Sanghee
Keywords
Antarctic marine flatwormAntarcticaKing Sejong StationObrimoposthia wandeli
Issue Date
2025-12
Citation
Shin, Seung Chul, Kim, Sanghee. 2025. "Draft genome and de novo transcriptome assembly of the Antarctic marine flatworm Obrimoposthia wandeli". BMC Genomic Data, 27(1): 0-0.
Abstract
Objectives Obrimoposthia wandeli is the most abundant marine planarian in the intertidal zone of the maritime Antarctic region and is presumed to have adapted to the extreme conditions of the Southern Ocean. However, genomic studies on marine flatworms remain extremely limited, with only one marine planarian genome currently available in public databases. We present the first draft genome and de novo transcriptome assembly of O. wandeli from Antarctica, providing a valuable genomic resource for the study of flatworm biology and environmental adaptation under harsh environments. Data description We sequenced the genome and transcriptome of O. wandeli collected near King Sejong Station using Oxford Nanopore long-read, Illumina paired-end, and RNA sequencing. The draft genome assembly spans 1.35 Gb across 6,912 contigs, with an N50 of 343,088 bp and an estimated 48,310 predicted genes. The assembly showed Benchmarking Universal Single-Copy Orthologs (BUSCO) completeness scores of 80.2% (genome) and 80.8% (proteins). The de novo transcriptome assembly identified 26,169 non-redundant transcripts, with a BUSCO completeness of 93.1%. These genomic and transcriptomic datasets represent the first Antarctic marine planarian reference and provide a valuable resource for studying marine flatworm genomics.
URI
https://repository.kopri.re.kr/handle/201206/16501
DOI
http://dx.doi.org/10.1186/s12863-025-01390-7
Type
Article
Station
King Sejong Station
Indexed
SCIE
Appears in Collections  
2025-2025, 온난화로 인한 극지 서식환경 변화와 생물 적응진화 연구 (25-25) / 김상희 (PE25140)
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