Background: Coleoid cephalopods have distinctive neural and morphological characteristics compared to other invertebrates. Early studies reported massive genomic rearrangements occurred before the split of octopus and squid lineages (Proc Natl Acad Sci U S A 116:3030-5, 2019), which might be related to the neural innovations of their brain, yet the details remain elusive. Here we combine genomic and single-nucleus transcriptome analyses to investigate the octopod chromosome evolution and cerebral characteristics. Results: We present a chromosome-level genome assembly of a gold-ringed octopus, Amphioctopus fangsiao, and a single-nucleus transcriptome of its supra-esophageal brain. Chromosome-level synteny analyses estimate that the chromosom...
To provide markers to identify chromosomes in the genome of octopods, chromosomes of three octopus s...
Background Transposable elements (TEs) widely contribute to the evolution of genomes allowing genomi...
Octopuses are mollusks that have evolved intricate neural systems comparable with vertebrates in ter...
Abstract Background Coleoid cephalopods have distinctive neural and morphological characteristics co...
Cephalopods are known for their large nervous systems, complex behaviors and morphological innovatio...
Cephalopods have a highly derived body plan and a suite of innovations with no obvious correlates in...
Cephalopods are known for their large nervous systems, complex behaviors and morphological innovatio...
Cephalopods (Octopus, Squid, Cuttlefish, Nautilus) exhibit behavioral flexibility that rivals that o...
Coleoid cephalopods show unique morphological and neural novelties, such as arms with tactile and ch...
The common octopus, Octopus vulgaris, is an active marine predator known for the richness and plasti...
© The Author(s), 2022. This article is distributed under the terms of the Creative Commons Attributi...
Cephalopod molluscs (Octopus, cuttlefish, squid, Nautilus) have independently evolved neural circuit...
How genomic innovation translates into organismal organization remains largely unanswered. Possessin...
In comparison with other molluscs and bilaterians, the genomes of coleoid cephalopods (squid, cuttle...
For more than 70 years cephalopod molluscs have served as powerful model organisms for comparative b...
To provide markers to identify chromosomes in the genome of octopods, chromosomes of three octopus s...
Background Transposable elements (TEs) widely contribute to the evolution of genomes allowing genomi...
Octopuses are mollusks that have evolved intricate neural systems comparable with vertebrates in ter...
Abstract Background Coleoid cephalopods have distinctive neural and morphological characteristics co...
Cephalopods are known for their large nervous systems, complex behaviors and morphological innovatio...
Cephalopods have a highly derived body plan and a suite of innovations with no obvious correlates in...
Cephalopods are known for their large nervous systems, complex behaviors and morphological innovatio...
Cephalopods (Octopus, Squid, Cuttlefish, Nautilus) exhibit behavioral flexibility that rivals that o...
Coleoid cephalopods show unique morphological and neural novelties, such as arms with tactile and ch...
The common octopus, Octopus vulgaris, is an active marine predator known for the richness and plasti...
© The Author(s), 2022. This article is distributed under the terms of the Creative Commons Attributi...
Cephalopod molluscs (Octopus, cuttlefish, squid, Nautilus) have independently evolved neural circuit...
How genomic innovation translates into organismal organization remains largely unanswered. Possessin...
In comparison with other molluscs and bilaterians, the genomes of coleoid cephalopods (squid, cuttle...
For more than 70 years cephalopod molluscs have served as powerful model organisms for comparative b...
To provide markers to identify chromosomes in the genome of octopods, chromosomes of three octopus s...
Background Transposable elements (TEs) widely contribute to the evolution of genomes allowing genomi...
Octopuses are mollusks that have evolved intricate neural systems comparable with vertebrates in ter...