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Muschick, M.

Publications and source records attributed to Muschick, M..

2 recordsLinked to original sources

Museomics reveals the phylogenetic position of an enigmatic vertebrate family (Lophiiformes: Lophichthyidae)

Lophichthys boschmai, the only member of the family Lophichthyidae, is an elusive lophiiform fish whose phylogenetic associations are debated. This family is among the last three vertebrate families lacking DNA sequence data, primarily due to the species rarity, lack of fresh material and challenges associated with sequencing formalin-treated museum specimens. In this study, we provide mitochondrial and nuclear DNA sequences obtained from two museum specimens of Lophichthys boschmai. Employing ancient DNA techniques, we successfully extracted and analyzed the degraded and fragmented DNA. Our findings, derived from both mitochondrial genomes and nuclear ultra-conserved elements (UCE), reveal the Lophichthyidae as sister lineage to Tathicarpidae within the Antennarioidei. This study showcases the use of whole-genome "shotgun" sequencing data from formalin-fixed museum specimens in the context of an available UCE dataset. Given the enhanced versatility in data reusability this approach offers, we suggest it should be a favored approach when studying rare specimens.

zoology↗

The mitochondrial genome of the red icefish (Channichthys rugosus) casts doubt on its species status

Antarctic notothenioid fishes are recognized as one of the rare examples of adaptive radiation in the marine system. Withstanding the freezing temperatures of Antarctic waters, these fishes have diversified into over 100 species within no more than 10-20 million years. However, the exact species richness of the radiation remains contested. In the genus Channichthys, between one and nine species are recognized by different authors. To resolve the number of Channichthys species, genetic information would be highly valuable; however, so far, only sequences of a single species, C. rhinoceratus, are available. Here, we present the nearly complete sequence of the mitochondrial genome of C. rugosus, obtained from a formalin-fixed museum specimen sampled in 1974. This sequence differs from the mitochondrial genome of C. rhinoceratus in no more than 27 positions, suggesting that the two species may be synonymous.

zoology↗