Coral mass spawning—one of nature’s great mysteries—is closer to being understood 🪸. Researchers tracked Acropora tenuis for a year, identifying 230 genes and inferring 4 biological processes that may prepare corals to spawn in sync. #coralspawning
沖縄美ら海水族館で展示中のクサビライシ科4属4種のミトコンドリアゲノムを報告する論文が公開されました!
Molecular phylogenetic position of the family Fungiidae (Cnidaria: Anthozoa) based on complete mitochondrial genome sequences
https://t.co/QKZHE2FT81
非共生性のスナギンチャク2種のゲノム論文がアクセプトされました!
Azooxanthellate Palythoa(Cnidaria: Anthozoa) genomes reveal toxin-related gene clusters and loss of neuronal genes in hexacorals | Genome Biology and Evolution
https://t.co/umN60X2RJK
...but there is no evidence for past genome duplication Instead, the size is explained by repetitive content and gene family expansion and diversification (particularly of killing genes). Other notable observations include the low heterozygosity of the rare D. cylindrus.
Now available! You can get faster, more focused search results with our new BLAST core nucleotide (core_nt) database. The core_nt database will become the default in August 2024. Learn more: https://t.co/W1gEC0RxrX #NCBICGR
共著論文が公開されました!
Genome and tissue-specific transcriptomes of the large-polyp coral, Fimbriaphyllia (Euphyllia) ancora: a recipe for a coral polyp | Communications Biology
https://t.co/FxkgX0qmlj