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Molecular Ecology · 2025 · Vol. 34 · Issue 12 · Wiley
Invading species along with increased anthropogenization may lead to hybridization events between wild species and closely related domesticates. As a consequence, wild species may carry introgressed alleles from domestic species, which is generally assumed to yield adverse effects in wild populations. The opposite evolutionary consequence, adaptive introgression, where introgressed genes are positively selected in the wild spe...
Mammalian Biology · 2023 · Vol. 103 · Issue 6 · Springer
The blue antelope or bluebuck ( Hippotragus leucophaeus ) is an extinct species of antelope that lived in South Africa until ca. 1799–1800. Disappearing only 34 years after it was described, it was the first large African mammal species to have become extinct in recent times. Therefore, current scientific knowledge of the blue antelope is limited to museum specimens. However, these are extremely rare and further complicated by...
Molecular Ecology · 2021 · Vol. 30 · Issue 23 · Wiley
The endangered Mexican wolf ( Canis lupus baileyi ) is known to carry exceedingly low levels of genetic diversity. This could be (i) the result of long‐term evolutionary patterns as they exist at the southernmost limit of the species distribution at a relatively reduced effective size, or (ii) due to rapid population decline caused by human persecution over the last century. If the former, purifying selection is expected to ha...
Molecular Ecology · 2016 · Vol. 25 · Issue 19 · Wiley
Ancient DNA studies have revolutionized the study of extinct species and populations, providing insights on phylogeny, phylogeography, admixture and demographic history. However, inferences on behaviour and sociality have been far less frequent. Here, we investigate the complete mitochondrial genomes of extinct Late Pleistocene cave bears and middle Holocene brown bears that each inhabited multiple geographically proximate cav...
Molecular Ecology · 2015 · Vol. 24 · Issue 7 · Wiley
Arctic animals face dramatic habitat alteration due to ongoing climate change. Understanding how such species have responded to past glacial cycles can help us forecast their response to today's changing climate. Gray whales are among those marine species likely to be strongly affected by Arctic climate change, but a thorough analysis of past climate impacts on this species has been complicated by lack of information about an...
Molecular Ecology · 2014 · Vol. 23 · Issue 7 · Wiley
After centuries of human hunting, the E urasian beaver C astor fiber had disappeared from most of its original range by the end of the 19th century. The surviving relict populations are characterized by both low genetic diversity and strong phylogeographical structure. However, it remains unclear whether these attributes are the result of a human‐induced, late Holocene bottleneck or already existed prior to this reduction in r...
Global Change Biology · 2013 · Vol. 19 · Issue 6 · Wiley
The L ate Q uaternary was a time of rapid climatic oscillations and drastic environmental changes. In general, species can respond to such changes by behavioral accommodation, distributional shifts, ecophenotypic modifications (nongenetic), evolution (genetic) or ultimately face local extinction. How those responses manifested in the past is essential for properly predicting future ones especially as the current warm phase is...
Global Change Biology · 2013 · Vol. 19 · Issue 6 · Wiley
According to the IPCC , the global average temperature is likely to increase by 1.4–5.8 °C over the period from 1990 to 2100. In Polar regions, the magnitude of such climatic changes is even larger than in temperate and tropical biomes. This amplified response is particularly worrisome given that the so‐far moderate warming is already impacting A rctic ecosystems. Predicting species responses to rapid warming in the near futur...
Molecular Ecology · 2010 · Vol. 19 · Issue 22 · Wiley
Prior to the Holocene, the range of the saiga antelope ( Saiga tatarica ) spanned from France to the Northwest Territories of Canada. Although its distribution subsequently contracted to the steppes of Central Asia, historical records indicate that it remained extremely abundant until the end of the Soviet Union, after which its populations were reduced by over 95%. We have analysed the mitochondrial control region sequence va...
Molecular Ecology · 2009 · Vol. 18 · Issue 6 · Wiley
Until recently, cave bears were believed to have only inhabited Europe. However, recent morphological evidence suggests that cave bears’ geographic range extended as far east as Transbaikalia, Eastern Siberia. These Asian cave bears were morphologically distinct from European cave bears. However, how they related to European lineages remains unclear, stressing the need to assess the phylogenetic and phylogeographic relationshi...