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Kariyayama, H.

Publications and source records attributed to Kariyayama, H..

2 recordsLinked to original sources

Three-dimensional and molecular brain atlas of the hagfish reveals the evolutionary origin and early diversification of the vertebrate brain

Hagfish and lampreys form the clade cyclostomes, the earliest branching lineage of the vertebrates. Although hagfish are generally assumed to have experienced intense modifications, its brain development shows certain ancestral patterns that are secondarily lost in the lamprey. Therefore, hagfish provides key insights into the evolutionary origin and early diversification of the vertebrate brain. However, neuroanatomical information of the hagfish brain is substantially limited today due to its sources based on old-fashioned methodology alone. Here, we provide a detailed brain atlas of the adult hagfish, based on three-dimensional reconstruction and expression analysis of genetic markers for major neuronal transmitters. Through our analyses, we found the following key characteristics. First, the dopaminergic system appears to be distributed more broadly than previously thought in the hagfish brain, implying that dopamine is involved in various neural functions. Second, the previously suggested "primordial cerebellum" area in hagfish shows notable affinity to the cerebellum-like octavolateral structures of the jawed vertebrate hindbrain. Last, the gene expression profile suggests a hippocampus-equivalent brain region in hagfish, that is, the ventrolateral subnucleus of the central prosencephalic complex (NCvl). This study highlights conserved and diversified neuroarchitecture of the hagfish brain, providing a pivotal reference for further studies.

evolutionary biology↗

Genome-wide and gene expression analyses of the hagfish olfactory receptors illuminate lineage-specific diversification of olfaction in basal vertebrates

Olfactory receptors (ORs) of vertebrates have undergone remarkable diversification, but the ancestral repertoire remains incompletely understood. Here, we present a comprehensive genome-wide survey and gene expression analyses of OR genes in hagfish, a cyclostome group that typically inhabits the deep sea with a well-developed olfactory system. We identified 48 main olfactory receptors (mORs), two vomeronasal type 1 receptors (V1Rs), 135 typical vomeronasal type 2 receptors (V2Rs), and no trace amine-associated receptors (TAARs) in the inshore hagfish (Eptatretus burgeri). Notably, V2Rs were highly clustered on a single scaffold, suggesting tandem gene duplications as the main mechanism of diversification. Transcriptome analysis confirmed that most of these OR genes are expressed predominantly in the olfactory organ. Using in situ hybridization, we further confirmed that at least some of these genes are expressed in olfactory receptor cells. These gene expression analyses support the role of these genes as functional ORs. Our findings challenge the prevailing view that typical olfactory V2Rs originated in gnathostomes and instead suggest that they were present in the common ancestor of all vertebrates but were lost in lampreys. The extensive diversification of V2Rs in hagfish likely reflects adaptations to life in low-light and chemically complex environments. This study highlights the evolution of vertebrate sensory systems in a mosaic manner, underscoring the importance of hagfish as a key animal for reconstructing the evolutionary history of early vertebrates. Graphical abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=200 SRC="FIGDIR/small/666228v2_ufig1.gif" ALT="Figure 1"> View larger version (42K): org.highwire.dtl.DTLVardef@ba336borg.highwire.dtl.DTLVardef@85b62corg.highwire.dtl.DTLVardef@7b23ccorg.highwire.dtl.DTLVardef@6b2b74_HPS_FORMAT_FIGEXP M_FIG C_FIG Highlights- Genomic and expression analyses reveal hagfish olfactory receptor repertoire. - V2Rs are extensively diversified in hagfish. - The olfactory function of V2Rs is traced back to the common ancestor of vertebrates. - The olfactory receptor repertoires of basal vertebrates underwent mosaic evolution.

evolutionary biology↗