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Sauermann, R.

Publications and source records attributed to Sauermann, R..

2 recordsLinked to original sources

Genomes of two arid-zone marsupials uncover contrasting responses to climatic change

Small marsupials in the family Dasyuridae are a key component of Australias arid and semi-arid fauna, whose high species richness is proposed to reflect an opportunity-driven adaptive radiation. Despite growing interest in this group from both ecological and evolutionary perspectives, genomic data for most species is non-existent, or limited to a few marker loci. Here, we generated a chromosome-level reference genome and a de novo mitochondrial genome for the desert-dwelling Wongai ningaui (Ningaui ridei). The nuclear genome assembly is highly contiguous, with a scaffold N50 of 594.5 MB and high BUSCO gene recovery (93.8%). Additionally, we produced a draft assembly for the related, semi-arid slender-tailed dunnart (Sminthopsis murina). We then used these assemblies to explore the demographic histories of these species. We find evidence for contrasting patterns of population growth during the late Pleistocene and early Holocene, corresponding with differences in local climate, potentially consistent with differences in optimal habitat. The new genomic resources and demographic findings presented here provide a foundation for future studies on adaptive specialisation in this group of Australian marsupials. Significance StatementDasyurid marsupials are the primary carnivorous and insectivorous mammals in Australia. This family includes species such as the endangered Tasmanian devil (Sarcophilus harrisii) and quolls (Genus Dasyurus), as well as an emerging model species, the fat-tailed dunnart (Sminthopsis crassicaudata). Despite the species richness within dasyurids, most species remain under-studied. This is particularly true of arid and semi-arid zone species, who are often small in size, live in remote habitats and are cryptic by nature. By creating genome assemblies for two dasyurid species, this study provides resources to support phylogenetic, comparative and conservation research in arid zone marsupials. Importantly, the studys finding that arid and semi-arid species show distinct trajectories of demographic change in response to historical climate may have implications for the resilience of locally-adapted dasyurid species to ongoing climate change.

genomics↗

Loss-of-function mutations in ASIP and MC1R are associated with coat color variation in marsupials.

Pigment production in mammalian hair follicles is governed in part by interactions between Agouti Signalling Protein (ASIP) and the Melanocortin 1 Receptor (MC1R). The most common coat colours in mammals result from alternating bands of dark eumelanin and light pheomelanin within individual hairs. However, coats dominated by a single type of melanin have arisen several times. Here, we examine the genetic basis of two instances among the marsupials: a melanistic morph of the eastern quoll (Dasyurus viverrinus) found at high frequency in the wild, and a rare case of fixed xanthism in the marsupial moles. In the eastern quoll, we show that a deletion encompassing part of the ASIP coding sequence likely explains melanism in this species. Notably, this mutation is convergent with that recently discovered in its dark-coated relative, the Tasmanian devil (Sarcophilus harrisii). Conversely, we show that a nonsense mutation which severely truncates MC1R in the southern marsupial mole (Notoryctes typhlops) is a strong candidate driver of its pheomelanin-predominant coat. Together with other recent findings, our results suggest that loss-of-function mutations have occurred repeatedly within the marsupials, representing an important mechanism underpinning coat colour variation.

genomics↗