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GeroScience · 2022 · Vol. 44 · Issue 3 · Springer
Miracle Ozzoude; Brenda Varriano; Derek Beaton; Joel Ramirez; Melissa F. Holmes; Christopher J. M. Scott; Fuqiang Gao; Kelly M. Sunderland; Paula McLaughlin; Jennifer Rabin; Maged Goubran; Donna Kwan; Angela Roberts; Robert Bartha; Sean Symons; Brian Tan; Richard H. Swartz; Agessandro Abrahao; Gustavo Saposnik; Mario Masellis; Anthony E. Lang; Connie Marras; Lorne Zinman; Christen Shoesmith; Michael Borrie; Corinne E. Fischer; Andrew Frank; Morris Freedman; Manuel Montero-Odasso; Sanjeev Kumar; Stephen Pasternak; Stephen C. Strother; Bruce G. Pollock; Tarek K. Rajji; Dallas Seitz; David F. Tang-Wai; John Turnbull; Dar Dowlatshahi; Ayman Hassan; Leanne Casaubon; Jennifer Mandzia; Demetrios Sahlas; David P. Breen; David Grimes; Mandar Jog; Thomas D. L. Steeves; Stephen R. Arnott; Sandra E. Black; Elizabeth Finger; Michael Strong; Peter Kleinstiver; Jane Lawrence-Dewar; Natalie Rashkovan; Susan Bronskil; Julia Fraser; Bill McIlroy; Ben Cornish; Karen Van Ooteghem; Frederico Faria; Yanina Sarquis-Adamson; Alanna Black; Barry Greenberg; Wendy Hatch; Chris Hudson; Elena Leontieva; Ed Margolin; Efrem Mandelcorn; Faryan Tayyari; Sherif Defrawy; Don Brien; Ying Chen; Brian Coe; Doug Munoz; Alisia Southwell; Dennis Bulman; Allison Ann Dilliott; Mahdi Ghani; Rob Hegele; John Robinson; Ekaterina Rogaeva; Sali Farhan; Seyyed Mohammad Hassan Haddad; Nuwan Nanayakkara; Courtney Berezuk; Sabrina Adamo; Malcolm Binns; Wendy Lou; Athena Theyers; Abiramy Uthirakumaran; Guangyong GY Zou; Sujeevini Sujanthan; Mojdeh Zamyadi; David Munoz; Roger A. Dixon; John Woulfe; Brian Levine; J. B. Orange; Alicia Peltsch; Angela Troyer; Marvin Chum; Maria Carmela Tartaglia
Environmental Microbiology · 2021 · Vol. 23 · Issue 7 · Wiley
Summary Astrobiology is mistakenly regarded by some as a field confined to studies of life beyond Earth. Here, we consider life on Earth through an astrobiological lens. Whereas classical studies of microbiology historically focused on various anthropocentric sub‐fields (such as fermented foods or commensals and pathogens of crop plants, livestock and humans), addressing key biological questions via astrobiological approaches...
Ecology Letters · 2016 · Vol. 19 · Issue 9 · Wiley
Identifying drivers of infectious disease patterns and impacts at the broadest scales of organisation is one of the most crucial challenges for modern science, yet answers to many fundamental questions remain elusive. These include what factors commonly facilitate transmission of pathogens to novel host species, what drives variation in immune investment among host species, and more generally what drives global patterns of par...
Molecular Ecology · 2011 · Vol. 20 · Issue 16 · Wiley
Bacterial populations can display high levels of genetic structuring but the forces that influence this are incompletely understood. Here, by combining modelling approaches with multilocus sequence data for the zoonotic pathogen Campylobacter, we investigated how ecological factors such as niche (host) separation relate to population structure. We analysed seven housekeeping genes from published C. jejuni and C. coli isolate c...
Molecular Ecology · 2008 · Vol. 17 · Issue 10 · Wiley
Populations of red grouse ( Lagopus lagopus scoticus ) undergo regular multiannual cycles in abundance. The ‘kinship hypothesis’ posits that such cycles are caused by changes in kin structure among territorial males producing delayed density‐dependent changes in aggressiveness, which in turn influence recruitment and regulate density. The kinship hypothesis makes several specific predictions about the levels of kinship, aggres...
Molecular Ecology · 2005 · Vol. 14 · Issue 13 · Wiley
Resistance to parasites is believed to have a widespread influence on demographic and adaptive processes. In systems where parasites impose a fitness cost on their host, heterozygotes may be selected because they are more resistant to parasites than homozygotes. Our objective was to assess the relationships between genomewide individual heterozygosity and abomasal nematode burdens in female Svalbard reindeer ( Rangifer tarandu...
Molecular Ecology · 2005 · Vol. 14 · Issue 5 · Wiley
The phylogeographic pattern of mitochondrial DNA variation in water voles ( Arvicola terrestris ) from 57 localities across the United Kingdom and representative samples from Spain, France, Switzerland and Finland was determined from sequence variation in the central portion of the control region. Twenty‐seven different haplotypes were resolved which formed two distinct phylogenetic clades. This major division separated haplot...
Molecular Ecology · 2003 · Vol. 12 · Issue 1 · Wiley
Collecting faeces is viewed as a potentially efficient way to sample elusive animals. Nonetheless, any biases in estimates of population composition associated with such sampling remain uncharacterized. The goal of this study was to compare estimates of genetic composition and sex ratio derived from Eurasian otter Lutra lutra spraints (faeces) with estimates derived from carcasses. Twenty per cent of 426 wild‐collected spraint...
Molecular Ecology · 1998 · Vol. 7 · Issue 12 · Wiley
Allelic variation at seven hypervariable tri‐ and tetranucleotide microsatellite loci was used to determine levels of population differentiation between 14 populations of red grouse ( Lagopus lagopus scoticus ) in northeast Scotland, UK. Despite the potential for long‐distance dispersal in grouse, and a semicontinuous habitat, significant population divergence was observed (mean R ST = 0.153; P P