Deep-sea anemone species Paraphelliactis xishaensis sp. nov. is a newly described species of deep-sea anemone in the genus Paraphelliactis, discovered in the Xisha Trough of the South China Sea at a depth of 3,230 meters. This species is adapted to the extreme conditions of the deep sea, thriving in cold, dark, and high-pressure environments. Its discovery contributes to our understanding of the biodiversity and ecological dynamics of deep-sea ecosystems.
Species | Phylum | Common Name | Ecosystem | Depth | Habitat | NCBI Taxonomy ID |
---|---|---|---|---|---|---|
Paraphelliactis xishaensis sp. nov. | Cnidaria | Paraphelliactis xishaensis | Deep sea | 3,230 | Xisha Trough (113.737502° E, 18.266465° N) | 2836328 |
Genome Assembly | Genome Size | Assembly level | Released year | WGS accession | Submitter | BioProject | BUSCO completeness | Gene Number |
---|---|---|---|---|---|---|---|---|
- | 542.9Mb | Contig | 2021 | - | Northwestern Polytechnical University | PRJNA588374 | 89.50% | 32,549 |
Title | Journal | Pubmed ID |
---|---|---|
The genome of a new anemone species (Actiniaria: Hormathiidae) provides insights into deep-sea adaptation | Deep Sea Research Part I | - |
Gene ID | Description |
---|---|
HK74SY85_g25163 | UNCHARACTERIZED |
HK74SY85_g25164 | METASTASIS-ASSOCIATED PROTEIN AND MESODERM INDUCTION EARLY RESPONSE PROTEIN |
HK74SY85_g25165 | |
HK74SY85_g25166 | DYNEIN INTERMEDIATE CHAIN |
HK74SY85_g25167 | |
HK74SY85_g25168 | DYNEIN INTERMEDIATE CHAIN |
HK74SY85_g25169 | MULTICOPPER OXIDASE-RELATED |
HK74SY85_g2517 | |
HK74SY85_g25170 | DIMETHYLANILINE MONOOXYGENASE |
HK74SY85_g25171 | |
HK74SY85_g25172 | |
HK74SY85_g25173 | |
HK74SY85_g25174 | |
HK74SY85_g25175 | DNA POLYMERASE |
HK74SY85_g25176 | DNA POLYMERASE |
HK74SY85_g25177 | |
HK74SY85_g25178 | TRANSPOSASE |
HK74SY85_g25179 | |
HK74SY85_g2518 | BCR-ASSOCIATED PROTEIN, BAP |
HK74SY85_g25180 | RETROTRANSPOSON |
HK74SY85_g25181 | INTEGRASE CATALYTIC DOMAIN-CONTAINING PROTEIN-RELATED |
HK74SY85_g25182 | OS04G0629600 PROTEIN |
HK74SY85_g25183 | |
HK74SY85_g25184 | |
HK74SY85_g25185 | |
HK74SY85_g25186 | PHD-TYPE DOMAIN-CONTAINING PROTEIN |
HK74SY85_g25187 | PHD-TYPE DOMAIN-CONTAINING PROTEIN |
HK74SY85_g25188 | SI:CH211-108C17.2-RELATED-RELATED |
HK74SY85_g25189 | EXONUCLEASE, PHAGE-TYPE/RECB, C-TERMINAL DOMAIN-CONTAINING PROTEIN |
HK74SY85_g2519 | |
HK74SY85_g25190 | BLR2807 PROTEIN |
HK74SY85_g25191 | UNCHARACTERIZED |
HK74SY85_g25192 | BLR2807 PROTEIN |
HK74SY85_g25193 | |
HK74SY85_g25194 | |
HK74SY85_g25195 | MULTICOPPER OXIDASE-RELATED |
HK74SY85_g25196 | MULTICOPPER OXIDASE-RELATED |
HK74SY85_g25197 | |
HK74SY85_g25198 | RHO GUANINE EXCHANGE FACTOR-RELATED |
HK74SY85_g25199 | |
HK74SY85_g252 | GROWTH ARREST-SPECIFIC PROTEIN 1 |
HK74SY85_g2520 | BETA-HEXOSAMINIDASE |
HK74SY85_g25200 | |
HK74SY85_g25201 | |
HK74SY85_g25202 | |
HK74SY85_g25203 | |
HK74SY85_g25204 | |
HK74SY85_g25205 | PLATELET-ACTIVATING FACTOR ACETYLHYDROLASE |
HK74SY85_g25206 | SERINE-THREONINE PROTEIN KINASE |
HK74SY85_g25207 |