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McNew, S.

Publications and source records attributed to McNew, S..

2 recordsLinked to original sources

Developmental stage-dependent effects of perceived predation risk on physiology and fledging success of tree swallows (Tachycineta bicolor)

The risk of predation directly affects physiology, behavior, and fitness of wild birds. Social interactions with conspecifics may affect how individuals respond to stressors such as predators. Strong social connections could help individuals recover from a stressful experience; however, competitive interactions also have the potential to exacerbate stress. Few studies have investigated the interaction between environmental stressors and the social landscape in wild bird populations. Here, we experimentally simulated predation attempts on breeding female tree swallows (Tachicyneta bicolor). At the same time, we manipulated female breast plumage color, a key social signal. Simulated predation events on tree swallows negatively affected their nestlings condition, telomere lengths, and fledging success. However, the effects of experimental manipulations were timing-dependent: simulated predation during the early nestling period was more detrimental than "predation" during incubation. Contrary to our expectations, manipulation of the social environment did not affect the response of tree swallows to simulated predation. However, manipulating female plumage during the nestling period did affect nestling size, indicating an effect of the social environment on reproductive success. Our data demonstrate that transient stressors on breeding female birds can have carry-over effects on their nestlings, some of which may be long-lasting.

ecology↗

Transcriptomic responses of Galapagos finches to avian pox virus infection

Emerging pathogens can have devastating effects on naive hosts, but disease outcomes often vary among hosts. Comparing the cellular response of different host species to infection can provide insight into mechanisms of host defense and the basis of host susceptibility to disease. Here, we used RNA-seq to characterize the transcriptomic response of Darwins finches to avian poxvirus, which is introduced to the Galapagos Islands. We tested whether gene expression differs between infected and uninfected birds, and whether transcriptomic differences were related either to known antiviral mechanisms and/or the co-option of the host cellular environment by the virus. We compared two species, the medium ground finch (Geospiza fortis) and the vegetarian finch (Platyspiza crassirostris), to determine whether related species have similar responses to the same novel pathogen. We found that medium ground finches had a strong transcriptomic response to infection, upregulating genes involved in the innate immune response including interferon production, inflammation, and other immune signaling pathways. In contrast, vegetarian finches had a more limited response to infection. Our results also revealed evidence of viral manipulation of the hosts cellular function and metabolism, providing insight into the ways in which poxviruses affect their hosts. Many of the transcriptomic responses to infection mirrored known processes seen in model and in-vitro studies of poxviruses indicating that many pathways of host defense against poxviruses are conserved among vertebrates and present even in hosts without a long evolutionary history with the virus. At the same time, the variation we observed between closely related species indicates that some endemic species of Galapagos finch may be more susceptible to avian pox than others.

genomics↗