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Genetic mechanisms of amphibian colour pattern and toxicity in the natural environment

Genetic mechanisms of amphibian colour pattern and toxicity in the natural environment
自然环境中两栖动物颜色模式和毒性的遗传机制
批准号:
2749390
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2021
资助国家:
英国
项目状态:
未结题
起止时间:
2021 至 --

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中文摘要
翻译
保留字:进化生物学;生态摘要:颜色在动物生命树的所有分支中的大多数物种的生态和生活史中起着关键作用。两栖动物呈现出一些在动物中发现的最引人注目的颜色模式,但这种变化背后的分子机制仍然是所有脊椎动物中最不了解的。火蝾螈从专门的腺体中内源性地产生有毒分泌物,用于防御捕食者。此外,他们是著名的颜色和图案在不同的血统。然而,尽管数百年来对蝾螈进行了大量研究,但颜色,环境和毒性之间的关系尚未建立。此外,驱动当地颜色变化的进化和生态因素尚未确定。欧洲的火蝾螈是主要的保护问题。如果环境在这种颜色的演变中起着重要的作用,那么最感兴趣的是了解这种机制的分子基础及其对全球变暖的潜在反应,预计全球变暖将在未来几十年影响蝾螈种群。这个项目将在我们对适应,化学防御和着色的遗传基础的理解方面开辟新的天地,使用火蝾螈作为生物模型。将有机会实地和/或实验工作与蝾螈,分子实验室工作,先进的统计和基因组数据分析。
英文摘要
Keywords: Evolutionary biology; ecologyAbstract: Colouration plays a key role in the ecology and life history of most species across all branches of the animal tree of life. Amphibians present some of the most striking colour patterns found in animals, but the molecular mechanisms underlying this variation have remained among the most poorly understood of any vertebrate. Fire salamanders endogenously produce poisonous secretions from specialised glands that they use in predator defence. Additionally, they are famously variable in colour and pattern across lineages. Yet despite a considerable body of research on salamanders over hundreds of years, the relationships between colour, the environment, and toxicity has not been established. Further, the evolutionary and ecological factors that drive local colour variations have not been determined. Fire salamanders in Europe are of major conservation concern. If the environment plays an important role on the evolution of such colourations, it is of outmost interest to understand the molecular basis of such mechanisms and their potential response to global warming that is predicted to affect salamander populations in the next decades. This project will break new ground in our understanding of adaptation, chemical defence, and the genetic basis of colouration, using fire salamanders as a biological model. There will be opportunities for field and/or experimental work with salamanders, molecular laboratory work, and advanced statistical and genomic data analysis.
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