Search results for "chronic radiation"

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Ecological mechanisms can modify radiation effects in a key forest mammal of Chernobyl

2019

International audience; Nuclear accidents underpin the need to quantify the ecological mechanisms which determine injury to ecosystems from chronic low-dose radiation. Here, we tested the hypothesis that ecological mechanisms interact with ionizing radiation to affect natural populations in unexpected ways. We used large-scale replicated experiments and food manipulations in wild populations of the rodent, Myodes glareolus, inhabiting the region near the site of the Chernobyl disaster of 1986. We show linear decreases in breeding success with increasing ambient radiation levels with no evidence of any threshold below which effects are not seen. Food supplementation of experimental populatio…

0106 biological sciences[SDE.MCG]Environmental Sciences/Global Changesfood supplementationMyodes glareolusnuclear accidentBiology010603 evolutionary biology01 natural sciencesydinonnettomuudetIonizing radiationChernobylRadioactive contaminationForest ecologyEcosystemEcology Evolution Behavior and SystematicsMyodes volekey specieschronic radiationEcologyReproductive successEcologyionisoiva säteily010604 marine biology & hydrobiologysäteily15. Life on landContaminationforest ecosystemTsernobylmetsäekosysteemitpopulation sensitivity13. Climate actionreproductive successta1181Mammalionizing radiationpopulation increase
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Applying the Anna Karenina principle for wild animal gut microbiota: Temporal stability of the bank vole gut microbiota in a disturbed environment.

2020

Gut microbiota play an important role in host health. Yet, the drivers and patterns of microbiota imbalance (dysbiosis) in wild animals remain largely unexplored. One hypothesised outcome of stress on animal microbiomes is a destabilised microbial community that is characterised by an increase in inter-individual differences compared with microbiomes of healthy animals, which are expected to be (a) temporally stable and (b) relatively similar among individuals. This set of predictions for response of microbiomes to stressors is known as the Anna Karenina principle (AKP) for animal microbiomes. We examine the AKP in a wild mammal inhabiting disturbed environments by conducting a capture-mark…

0106 biological sciencesbiologyBacteriaHost (biology)Arvicolinae010604 marine biology & hydrobiologyMicrobiotaChronic radiation syndromeZoologyAnna Karenina principleAnimals WildGut florabiology.organism_classificationmedicine.disease010603 evolutionary biology01 natural sciencesGastrointestinal MicrobiomeBank volemedicineAnimalsAnimal Science and ZoologyMammalMicrobiomeDysbiosisEcology Evolution Behavior and SystematicsThe Journal of animal ecologyREFERENCES
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