The house mouse, Mus musculus, is one of the most ubiquitous invasive species worldwide and in Australia is particularly common and widespread, but where it originally came from is still unknown. Here we investigated this origin through a phylogeographic analysis of mitochondrial DNA sequences (D-loop) comparing mouse populations from Australia with those from the likely regional source area in Western Europe. Our results agree with human historical associations, showing a strong link between Australia and the British Isles. This outcome is of intrinsic and applied interest and helps to validate the colonization history of mice as a proxy for human settlement history
We examined sequence variation of mitochondrial DNA control region and cytochrome b gene of the hous...
For more than 100 years, house mice (Mus musculus) have been used as a key animal model in biomedica...
Abstract Background The earliest records in Britain for the western European house mouse (Mus muscul...
Extent: 6p.The house mouse, Mus musculus, is one of the most ubiquitous invasive species worldwide a...
Molecular markers and morphological characters can help infer the colonization history of organisms....
The west European subspecies of house mouse (Mus musculus domesticus) has gained much of its current...
The house mouse (Mus musculus) provides a fascinating system for studying both the genomic basis of ...
We examined the sequence variation of mitochondrial DNA control region and cytochrome b gene of the ...
The house mouse, Mus Musculus, was first introduced into New Zealand in significant numbers in the m...
The house mouse (Mus musculus) provides a fascinating system for studying both the genomic basis of ...
The house mouse (Mus musculus) represents the extreme of globalization of invasive mammals. However,...
Background: Populations and subspecies of the house mouse Mus musculus were able to invade new regio...
On the basis of patterns of allele frequency variation in nuclear genes (Din et al., in press) it ha...
Several recent papers, including one in BMC Evolutionary Biology, examine the colonization history o...
Morphometric, karyological and historical evidence indicates that Caithness and Orkney House mice (M...
We examined sequence variation of mitochondrial DNA control region and cytochrome b gene of the hous...
For more than 100 years, house mice (Mus musculus) have been used as a key animal model in biomedica...
Abstract Background The earliest records in Britain for the western European house mouse (Mus muscul...
Extent: 6p.The house mouse, Mus musculus, is one of the most ubiquitous invasive species worldwide a...
Molecular markers and morphological characters can help infer the colonization history of organisms....
The west European subspecies of house mouse (Mus musculus domesticus) has gained much of its current...
The house mouse (Mus musculus) provides a fascinating system for studying both the genomic basis of ...
We examined the sequence variation of mitochondrial DNA control region and cytochrome b gene of the ...
The house mouse, Mus Musculus, was first introduced into New Zealand in significant numbers in the m...
The house mouse (Mus musculus) provides a fascinating system for studying both the genomic basis of ...
The house mouse (Mus musculus) represents the extreme of globalization of invasive mammals. However,...
Background: Populations and subspecies of the house mouse Mus musculus were able to invade new regio...
On the basis of patterns of allele frequency variation in nuclear genes (Din et al., in press) it ha...
Several recent papers, including one in BMC Evolutionary Biology, examine the colonization history o...
Morphometric, karyological and historical evidence indicates that Caithness and Orkney House mice (M...
We examined sequence variation of mitochondrial DNA control region and cytochrome b gene of the hous...
For more than 100 years, house mice (Mus musculus) have been used as a key animal model in biomedica...
Abstract Background The earliest records in Britain for the western European house mouse (Mus muscul...