About Lindaspio polybranchiata

Lindaspio polybranchiata is a species of polychaete worm in the family Spionidae. It is known for its unique multiple branchial filaments, which aid in respiration and feeding. This species is typically found in deep-sea environments, often inhabiting soft sediments where it constructs burrows. Like other spionids, it uses its specialized palps to collect organic particles from the surrounding water and sediment, serving as a deposit feeder. Its adaptations to low-oxygen environments and its role in benthic ecosystems make it an important species for studying deep-sea biodiversity and ecological processes.

Classification

Animalia (Kingdom); Annelida (Phylum); Polychaeta (Class); Sedentaria (Subclass); Canalipalpata (Infraclass); Spionida (Order); Spioniformia (Suborder); Spionidae (Family); Lindaspio (Genus); Lindaspio polybranchiata (Species)

Original Name

Lindaspio polybranchiata Sui, Dong, Wu & Li, 2023

Key Reference Paper

1. Sui J, Dong D, Wu X, et al.  A new species of the genus Lindaspio Blake & Maciolek, 1992 (Annelida, Spionidae) from a cold seep near Hainan Island, China[J]. ZooKeys, 2023, 1153: 105. (Sui et al., 2023)

Description

Total length 55 mm, maximum width 4 mm, including chaetae. More than 350 crowded chaetigers. Color pale in alcohol. Prostomium incised, developed into two frontal lobes or weak horns; caruncle present or absent; occipital tentacle absent. Peristomial wings absent. Notopodia of chaetigers 2–4 with fascicles of heavy spines. Anterior neuropodial spines present. Dorsal branchiae starting from chaetiger 2; ventral branchiae starting from an anterior segment, branchiae closely associated with parapodial lamellae, continuing to posterior end. Chaetiger 1 reduced, with notopodia reduced to single lamellae lacking notochaetae. Following notopodia and neuropodia with capillaries and hooded hooks. Pygidium simple, conical, lacking cirri.

Etymology

The species is so named because it has more neuropodial branchiae than the congeners.

Distribution

Lingshui cold seep cruise, Faxian Dive 252, 1758 m, 17°37'N, 111°03'E, coll. crew of R/V Kexue


Basic Information
SpeciesPhylumCommon NameEcosystemDepthHabitatNCBI Taxonomy ID
Lindaspio polybranchiataAnnelida-Cold seep1,700Lingshui Cold Seep3032291

Genome Assembly Information
Genome AssemblyGenome SizeAssembly levelReleased yearWGS accessionSubmitterBioProjectBUSCO completeness (%)Scaffold/Contig N50 (kb)GC content (%)Repeat Rate (%)Gene Number
-1.66GbContig2025--PRJNA118820790.10 ---27,746

References
TitleJournalPubmed ID
Degenerated vision, altered lipid metabolism, and expanded chemoreceptor repertoires enable Lindaspio polybranchiata to thrive in deep-sea cold seepsBMC Biology39806408

Results of comparison between Lindaspio polybranchiata and its nearshore relatives from the paper (Yan et al., 2025)

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Annotation IDDescriptionTypeSubtypeGeneRatioEvolution TypeP-valueQ-value
ko04540Gap junctionKEGGCellular Processes23expanded4.67E-165.50E-15
ko00600Sphingolipid metabolismKEGGMetabolism20expanded9.29E-159.85E-14
ko00740Riboflavin metabolismKEGGMetabolism11expanded3.12E-112.07E-10
ko00740Riboflavin metabolismKEGGMetabolism3positive selection5.51E-035.20E-02
ko04510Focal adhesionKEGGCellular Processes23expanded3.37E-112.10E-10
ko04745Phototransduction - flyKEGGOrganismal Systems14expanded2.01E-101.12E-09
ko04745Phototransduction - flyKEGGOrganismal Systems5positive selection1.14E-032.67E-02
ko04670Leukocyte transendothelial migrationKEGGOrganismal Systems14expanded4.39E-102.33E-09
ko04391Hippo signaling pathway - flyKEGGEnvironmental Information Processing14expanded1.15E-084.69E-08
ko04611Platelet activationKEGGOrganismal Systems14expanded4.34E-081.70E-07
ko04520Adherens junctionKEGGCellular Processes14expanded6.28E-082.38E-07
ko04971Gastric acid secretionKEGGOrganismal Systems14expanded7.07E-082.59E-07
ko00730Thiamine metabolismKEGGMetabolism8expanded1.20E-074.22E-07
ko00730Thiamine metabolismKEGGMetabolism3positive selection4.16E-034.99E-02
ko04080Neuroactive ligand-receptor interactionKEGGEnvironmental Information Processing20expanded1.39E-074.76E-07
ko04613Neutrophil extracellular trap formationKEGGOrganismal Systems15expanded6.39E-072.12E-06
ko00565Ether lipid metabolismKEGGMetabolism9expanded2.68E-068.42E-06
ko04380Osteoclast differentiationKEGGOrganismal Systems11expanded2.70E-068.42E-06
ko04919Thyroid hormone signaling pathwayKEGGOrganismal Systems14expanded3.23E-069.78E-06
ko04390Hippo signaling pathwayKEGGEnvironmental Information Processing14expanded3.50E-061.00E-05
ko04530Tight junctionKEGGCellular Processes14expanded3.50E-061.00E-05
ko04530Tight junctionKEGGCellular Processes5positive selection2.61E-021.32E-01
ko00790Folate biosynthesisKEGGMetabolism8expanded7.39E-062.06E-05
ko04210ApoptosisKEGGCellular Processes14expanded1.08E-052.94E-05
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