H2020Индивидуална стипендия2020–2022

BehavToxArc · BEHAVIOURAL ECOTOXIOCOLOGY MEETS CLIMATE CHANGE: Interactive effects of mercury pollution and climate change on behaviour, physiology and fitness in a keystone arctic seabird

„Хоризонт 2020“ — Действия „Мария Склодовска-Кюри“

Период
2020-07-01 → 2022-12-28
Финансиране от ЕС
184 708 €
Участници
1
Схема
MSCA-IF

Линиите свързват координатора с партньорите.

Накратко на български

Замърсяването с живак и климатичните промени се изследват чрез поведението и физиологията на малката полярна кайра. Това помага да се разбере как екологичният стрес влияе върху оцеляването на животните в Арктика.

Този кратък обзор е генериран от изкуствен интелект

Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.

Резултати накратко

BEHAVIOURAL ECOTOXIOCOLOGY MEETS CLIMATE CHANGE: Interactive effects of mercury pollution and climate change on behaviour, physiology and fitness in a keystone arctic seabird

Global climate change is exposing ecosystems to multiple environmental stressors, including altered thermal conditions, changing resource bases, and changes in pollutant cycling. Thus, a pressing research priority for ecologists and conservation biologists involves understanding how multiple stressor interactions will affect biological systems as climate change progresses. Of special note, increases in chemical contaminant exposure concurrent with climate change have the potential to affect organismal responses to other climate change-associated stressors, impairing resiliency. The Arctic marine biota is especially vulnerable to joint effects of climate change and environmental contamination, as the Arctic is warming >3 times as fast as other regions, leading to cascading ecological effects. Furthermore, anthropogenic emissions have led to accumulation of pollutants in the Arctic, and particularly to high levels of mercury (Hg) pollution. Some recent data suggest increasing Hg exposure in Arctic animals concurrent with climate change, raising the alarming possibility that climate change and increasing Hg exposure could have interactive effects on Arctic animals. Ecotoxicological studies in the Arctic, and elsewhere, have not adequately considered how behavioural and physiological effects of Hg might impair animal resiliency to climate change. Thus, the central objective of this project (BehavToxArc) was to explore interactive effects of Hg contamination and climate change on Arctic animals from behavioural ecological and ecophysiological perspectives using a keystone Arctic seabird species, the little auk (Alle alle), as a model system. Specific aims were: 1) To determine whether Hg exposure affects the capacity for behavioural plasticity in response to changes in foraging landscapes associated with climate change by limiting time activity budgets and behavioural performance traits (e.g. dive length). 2) To determine whether Hg exposure is associated with changes in the adrenocortical stress response that might limit behavioural patterns. 3) To determine whether Hg exposure affects animal personality traits (neophobia) that are key to determining responses to multiple stressor landscapes. The primary conclusion deriving from the project is that subtle toxicological effects of Hg have the potential to inhibit animal behavioural responses to climate change, especially in the rapidly changing Arctic. In particular, we found evidence that Hg contamination might affect little auk diving patterns, with implications for foraging efficiency given changes in prey distribution in warming oceans. Behavioural toxicological effects of Hg contamination might be even more pronounced in species feeding at higher trophic positions than little auks, due to higher bioaccumulation levels. Thus, our work calls for further work to evaluate the extent to which Hg exposure might limit animal behavioural responses to climate change across a diversity of species representing different foraging niches, and to assess downstream effects on population stability.

Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз

Цел на проекта

The arctic marine biota is vulnerable to effects of climate change and anthropogenic contaminants. The artic is warming rapidly and is a sink for pollutants, including methylmercury (MeHg), which bioaccumulates in marine food chains. Ecotoxicological studies in the arctic have not adequately considered effects of contaminants on animal behaviour and fitness, or interactions between contaminants and climate change. This study (BehavToxArc) will address these urgent research areas using a keystone arctic seabird, the little auk (Alle alle). I will collect data from two colonies that are experiencing different environmental conditions and climate change impacts, and explore whether disruption of behaviour or stress physiology by Hg might limit adjustments to environmental change. I will use ultralight GPSs and accelerometers to collect unique behavioural data, which will be linked to state-of-the-art Hg measurements, and complemented by a long-term dataset (from accelerometers since 2009). I will also perform cutting-edge experiments to manipulate stress physiology, and explore cross-generational effects of Hg exposure in the context of climate change, focusing on telomeres. I will work with Dr. Jérôme Fort within the AMARE (Responses of Marine Organisms to Environmental Variability) group at La Rochelle University’s Institute Littoral Environnement et Sociétés. BehavToxArc will synthesize my expertise in behavioural ecotoxicology and telomere biology with Dr. Fort’s expertise in arctic ecotoxicology and spatial ecology. The project will introduce me to state-of-the art methods to monitor movement behaviour and measure telomeres, and the highly topical fields of arctic ecotoxicology and global change biology. Results will be disseminated by top-tier publications, conferences and public engagement, and used to advance scientific knowledge and environmental policy. The project will pivotally advance my career and propel me towards a permanent research position.

Оригинален текст от CORDIS (на английски).

Участници

  • LA ROCHELLE UNIVERSITE · La RochelleКоординаторФранция

Връзки

Данни: CORDIS, © Европейски съюз