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PMID: 42592794 已发表 · aheadofprint 英语

Genome analysis of the glycosphingolipid-producing green alga Tetraselmis sp. NKG400013.

Yasui R, Hosaka A, Ogata N, Ogawa T, Yohda M, Arakaki A, Kataoka K, Tanaka T

摘要

Microalgae are gaining attention as sustainable resources for the production of valuable compounds, including biofuels, pigments, and bioactive metabolites. To support metabolic engineering and genome editing approaches aimed at enhancing these traits, high-quality genome assemblies are essential; however, genomic information remains limited for many microalgal lineages. Tetraselmis sp. NKG400013 is a green alga known for high glycosphingolipid accumulation with distinctive structural features. Here, we report a draft genome assembly of this strain generated using PacBio HiFi sequencing and transcriptome-supported annotation. The assembled genome spans 423.7 Mbp, with 74.5% repetitive sequences and 15,322 predicted protein-coding genes. Comparative analyses across 11 green algal species revealed a positive correlation between genome sizes and repeat contents, indicating that transposable element expansion, particularly long terminal repeat retrotransposons, has substantially contributed to genome enlargement in Tetraselmis. Genome-wide functional annotation and ortholog inference identified core enzymes required for glycosylceramide biosynthesis. Both sphingolipid Δ4 and Δ8 desaturases were identified in Tetraselmis. and their coexistence suggests an expanded capacity for long-chain base modification that may underlie its distinctive glycosphingolipid profile. These results establish a genomic framework for understanding the high glycosphingolipid-producing capacity of NKG400013 and provide insights into the evolutionary diversification of sphingolipid metabolism in green algae.

关键词
Tetraselmis Glycosphingolipids Sphingolipids green algae
文献信息
期刊
DNA research : an international journal for rapid publication of reports on genes and genomes
期刊简称
DNA Res
ISSN
1756-1663
发表日期
2026-08-13
语言
英语
国家/地区
England
NLM ID
9423827
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