URBANEPIGENETICS · The epigenetic basis of early-life effects in a wild bird exposed to urban environmental stress
„Хоризонт 2020“ — Действия „Мария Склодовска-Кюри“
- Период
- 2015-04-01 → 2017-03-31
- Финансиране от ЕС
- 185 857 €
- Участници
- 1
- Схема
- MSCA-IF
Линиите свързват координатора с партньорите.
Накратко на български
Епигенетичните промени при диви птици показват как градският стрес, като шумото и замърсяването, променя работата на гените им. Това помага да се разбере как средата в ранното детство определя здравето и физическите характеристики на животните за целия им живот.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
The epigenetic basis of early-life effects in a wild bird exposed to urban environmental stress
Urban areas are the most rapidly expanding form of land cover across the globe and more than half of the world’s population live in urban centres. This has significant implications for standards of living, human health and the environment. Just as the development of urban areas presents both opportunities and challenges for people, urbanisation offers advantages and disadvantages for wildlife. Some animals actively avoid towns and cities, while others manage to co-exist alongside humans. Birds are a typical feature of urban wildlife. Towns and cities can potentially benefit birds by offering a milder climate and an abundance of food. However, just as there can be adverse effects for human health, there may also be negative effects for birds, associated with exposure to air pollutants, artificial light and noise in urban areas. There is increasing evidence that exposure to “stressors”, such as air pollutants, causes changes in the structure of DNA. Specifically, stress-exposure can change the number and location of methyl groups that are attached to DNA, which can subsequently affect gene expression. In other words, environmental conditions can determine which genes are switched on or off and the level at which they are expressed. Patterns of gene expression subsequently influence the establishment of characteristics or traits, for example body size and immune responses. Thus, DNA methylation may mechanistically link environmental conditions and observable characteristics of an individual. In particular, the environment experienced during early life is known to be very important, in both humans and animals, for determining fixed life-long characteristics relating to, for example, body size, personality and health. Changes in DNA methylation are proposed to be the mechanistic link between the early-life conditions and determining later-life health and survival. Through this study, we seek to better understand how urban-dwelling birds are affected – both positively and negatively – by exposure to urban “stressors”. Understanding how and why exposure to stressors in towns and cities may affect health and survival of birds is important for progression of our knowledge of animal biology, implementation of effective conservation measures, and improving our own health and wellbeing.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
The impact of urbanisation on wildlife is of increasing global concern. It is well known that exposure to urban environmental stressors increases oxidative stress. More recently, exposure to pollutants has been shown to directly modify the epigenome, via DNA methylation, in humans. Oxidative stress may be a key mechanism mediating epigenetic modifications in response to pollutant exposure and thereby influencing development, disease resistance and ageing. This multidisciplinary project outlines the first study to date of the epigenetic basis of early-life effects in a wild bird exposed to urban environmental stress. Early-life stress exposure can have profound effects on phenotypic development and long-term fitness. Epigenetic mechanisms are influenced by environmental cues during development and therefore may mechanistically link developmental conditions with later-life performance. Using urban and rural populations of birds, we will perform experimental studies in the field and lab to examine whether increased oxidative stress during development modifies patterns of global and gene-specific DNA methylation and thereby alters genome stability (via DNA damage and telomere attrition) and expression of antioxidant genes. To achieve this, we propose a new framework to explain how the modification of DNA methylation and telomere length may be linked and decoupled by the direct and indirect effects of oxidative stress at different stages during development. Pilot data support this framework. This will enable us to disentangle the mechanistic relationships between exposure to urban stressors, oxidative stress, DNA methylation and telomere dynamics during development and the consequences for growth and survival in an altricial bird species. The project has implications for multiple EU policies and H2020 focus areas. By combining the researcher’s existing expertise with new skills and opportunities, the project will enhance career prospects and advance the research field.
Оригинален текст от CORDIS (на английски).
Участници
- LUNDS UNIVERSITET · LundКоординаторШвеция
Връзки
- Виж в CORDIS
- DOI: 10.3030/659643
- http://www.biology.lu.se/hannah-watson
- https://arquivo.pt/wayback/20160514020808/http://www.biology.lu.se/hannah-watson
Данни: CORDIS, © Европейски съюз
