Connecting millions of neurons to create a functional neural circuit is a daunting challenge. Vertebrates developed a molecular system at the cell membrane to allow neurons to recognize each other by distinguishing self from non-self through homophilic protocadherin interactions. In mammals, the protocadherin gene family counts about 50 different genes. By hetero-multimerization, protocadherins are capable of generating an impressive number of molecular interfaces. Surprisingly, in the California two-spot octopus, Octopus bimaculoides, an invertebrate belonging to the Phylum Mollusca, over 160 protocadherins (PCDHs) have been identified. Here we briefly discuss the role of PCDHs in neural wiring and conduct a comparative study of the protoc...
Background Transposable elements (TEs) widely contribute to the evolution of genomes allowing genomi...
Coleoid cephalopods show unique morphological and neural novelties, such as arms with tactile and ch...
Cephalopod molluscs (Octopus, cuttlefish, squid, Nautilus) have independently evolved neural circuit...
Connecting millions of neurons to create a functional neural circuit is a daunting challenge. Verteb...
Connecting millions of neurons to create a functional neural circuit is a daunting challenge. Verteb...
Connecting millions of neurons to create a functional neural circuit is a daunting challenge. Verteb...
Connecting millions of neurons to create a functional neural circuit is a daunting challenge. Verteb...
Octopuses are unique invertebrates, with sophisticated and flexible behaviors controlled by a high d...
Cephalopods have evolved nervous systems that parallel the complexity of mammalian brains in terms o...
Octopuses are intelligent, soft-bodied animals, have complex nervous systems with remarkable cogniti...
Background: Cephalopoda are a class of Mollusca species found in all the world's oceans. They are an...
Background: Coleoid cephalopods have distinctive neural and morphological characteristics compared t...
Octopuses are mollusks that have evolved intricate neural systems comparable with vertebrates in ter...
Cephalopods have a highly derived body plan and a suite of innovations with no obvious correlates in...
Cephalopods (Octopus, Squid, Cuttlefish, Nautilus) exhibit behavioral flexibility that rivals that o...
Background Transposable elements (TEs) widely contribute to the evolution of genomes allowing genomi...
Coleoid cephalopods show unique morphological and neural novelties, such as arms with tactile and ch...
Cephalopod molluscs (Octopus, cuttlefish, squid, Nautilus) have independently evolved neural circuit...
Connecting millions of neurons to create a functional neural circuit is a daunting challenge. Verteb...
Connecting millions of neurons to create a functional neural circuit is a daunting challenge. Verteb...
Connecting millions of neurons to create a functional neural circuit is a daunting challenge. Verteb...
Connecting millions of neurons to create a functional neural circuit is a daunting challenge. Verteb...
Octopuses are unique invertebrates, with sophisticated and flexible behaviors controlled by a high d...
Cephalopods have evolved nervous systems that parallel the complexity of mammalian brains in terms o...
Octopuses are intelligent, soft-bodied animals, have complex nervous systems with remarkable cogniti...
Background: Cephalopoda are a class of Mollusca species found in all the world's oceans. They are an...
Background: Coleoid cephalopods have distinctive neural and morphological characteristics compared t...
Octopuses are mollusks that have evolved intricate neural systems comparable with vertebrates in ter...
Cephalopods have a highly derived body plan and a suite of innovations with no obvious correlates in...
Cephalopods (Octopus, Squid, Cuttlefish, Nautilus) exhibit behavioral flexibility that rivals that o...
Background Transposable elements (TEs) widely contribute to the evolution of genomes allowing genomi...
Coleoid cephalopods show unique morphological and neural novelties, such as arms with tactile and ch...
Cephalopod molluscs (Octopus, cuttlefish, squid, Nautilus) have independently evolved neural circuit...