Publications by authors named "Jerome M W Gippet"

Background: Pathogen outbreaks mostly originate from animals, but some species are more likely to trigger epidemics. The giant land snail (Lissachatina fulica) is a widespread invader, a popular exotic pet, and a notorious vector of the rat lungworm, causing eosinophilic meningitis in humans. However, a comprehensive assessment of the risks of disease outbreak associated with this species is lacking.

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In many animal species, including humans, males have shorter lifespan and show faster survival aging than females. This differential increase in mortality between sexes could result from the accumulation of deleterious mutations in the mitochondrial genome of males due to the maternal mode of mtDNA inheritance. To date, empirical evidence supporting the existence of this mechanism - called the Mother Curse hypothesis - remains largely limited to a few study cases in humans and Drosophila.

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Article Synopsis
  • The global pet trade poses significant risks to biodiversity and human health, becoming harder to control as it globalizes and digitalizes.
  • Researchers analyzed Instagram data to see if it could predict the geographic distribution of ant pet stores and the species offered.
  • Their findings showed a strong correlation between Instagram activity and the number of ant sellers, suggesting that social media can serve as an effective tool for monitoring the pet trade and aiding regulatory efforts.
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Article Synopsis
  • Habitat anthropization negatively impacts global biodiversity, but some species show adaptive life-history responses, like increased reproduction, to cope with these changes.
  • The study focused on the yellow-bellied toad and utilized a large dataset of over 21,000 individuals from various European populations to examine the effects of anthropogenic environments on their survival and reproduction.
  • Results indicated that while adult toads had lower survival and shorter lifespans in human-modified habitats, their increased reproductive output compensated for these losses, helping to maintain stable population growth rates despite habitat alterations.
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Variation in temperature is known to influence mortality patterns in ectotherms. Even though a few experimental studies on model organisms have reported a positive relationship between temperature and actuarial senescence (i.e.

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Globalisation has facilitated the spread of alien species, and some of them have significant impacts on biodiversity and human societies. It is commonly thought that biological invasions have accelerated continuously over the last centuries, following increasing global trade. However, the world experienced two distinct waves of globalisation (~1820-1914, 1960-present), and it remains unclear whether these two waves have influenced invasion dynamics of many species.

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Temperature is a critical driver of ectotherm life-history strategies, whereby a warmer environment is associated with increased growth, reduced longevity and accelerated senescence. Increasing evidence indicates that thermal adaptation may underlie such life-history shifts in wild populations. Single nucleotide polymorphisms (SNPs) and copy number variants (CNVs) can help uncover the molecular mechanisms of temperature-driven variation in growth, longevity and senescence.

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The pet trade has become a multibillion-dollar global business, with tens of millions of animals traded annually. Pets are sometimes released by their owners or escape, and can become introduced outside of their native range, threatening biodiversity, agriculture, and health. So far, a comprehensive analysis of invasive species traded as pets is lacking.

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Understanding the mechanisms underlying population decline is a critical challenge for conservation biologists. Both deterministic (e.g.

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Globalization is removing dispersal barriers for the establishment of invasive species and enabling their spread to novel climates. New thermal environments in the invaded range will be particularly challenging for ectotherms, as their metabolism directly depends on environmental temperature. However, we know little about the role climatic niche shifts play in the invasion process, and the underlining physiological mechanisms.

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