CRISIS · Chytridiomycosis resistance through sexual selection
„Хоризонт 2020“ — Действия „Мария Склодовска-Кюри“
- Период
- 2022-05-01 → 2024-04-30
- Финансиране от ЕС
- 175 572 €
- Участници
- 1
- Схема
- MSCA-IF
Линиите свързват координатора с партньорите.
Накратко на български
Сексуалният подбор при влекачите и земноводните се изследва чрез анализ на MHC гените, които помагат за разпознаването на патогени. Разбирането на тези механизми помага за опазването на видовете амфибии, застрашени от измиране поради хитридиомикоза.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Chytridiomycosis resistance through sexual selection
The last decades have seen an increase of emerging infectious diseases, in humans, livestock, and wildlife – the current Covid-19 pandemic being just one popular example. When investigating these diseases, researchers tend to focus on the pathogens, but the host also plays a critical role in the determination of infection outcome, for instance through immunity. Sexual selection is a strong evolutionary force that can facilitate or inhibit adaptation to environmental challenges. When populations face novel pathogens, sexual selection can influence their ability to persist by impacting the spread of traits that confer disease resistance. The major histocompatibility complex (MHC) encodes proteins that recognize pathogens and activate the immune system, allowing the organism to fight against the pathogen. Many vertebrates preferentially mate with partners that carry beneficial MHC alleles, conferring higher resistance to their offspring. By understanding the role of sexual in the evolution of disease resistance, we can better protect global diversity, and identify which species are in more dire need of conservation. Currently, amphibians are one of the most threatened animal groups, with 41% of the species declining. This is of high concern for humans, as amphibians control the overgrowth of pests, are an important food source, and are the source of many medical advances. In addition to habitat destruction, the disease chytridiomycosis is a major cause of extinction. While it has been recently found that the MHC genes of individuals in infected populations is under strong selection, it is unclear which evolutionary force is driving it. Thus, understanding the evolutionary dynamics of MHC could be critical for preserving amphibian diversity. However, there is a lot of fundamental knowledge missing when it comes to the amphibian MHC, for instance, it is currently unknown whether MHC dependent mate choice occurs in amphibians. This makes them the perfect organism to study this issue. In this project I explore the role of sexual selection in the evolutionary dynamics of amphibian resistance to chytridiomycosis (an emerging infectious disease that is causing population declines and extinctions worldwide) with poison frogs (a species-rich group in which the strength of sexual selection differs between species). I start by reviewing the current knowledge on the amphibian MHC. Then I test whether mate preferences are influenced by MHC or by the infection status of both partners. Finally, I use theoretical models to predict under which circumstances sexual selection can accelerate the evolution of disease resistance. This project provides fundamental scientific knowledge on the relationship between sexual selection and the evolution of disease immunity against an extremely lethal pathogen by exploring the interaction between chytridiomycosis and amphibian MHC. It builds on the recent insights that natural selection drives MHC evolution in amphibians, and originally explores the role of sexual selection in this process in a uniquely integrated experimental, theoretical, and ecological fashion.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
Sexual selection (SS) is a strong evolutionary force that can promote or inhibit adaptation to environmental challenges. When populations face novel pathogens, SS can influence their persistence by impacting the spread of resistance alleles. The major histocompatibility complex (MHC) encodes proteins that recognize pathogens. Many vertebrates preferentially mate with partners carrying beneficial MHC alleles, conferring higher resistance to the offspring.Here, I propose to study the role of SS in the evolutionary dynamics of amphibian resistance to chytridiomycosis (pathogen Bd), an emerging infectious disease that is causing population declines and extinctions worldwide; with poison frogs, a species-rich group in which the strength of SS differs between species. i) I will test whether mate choice is influenced by MHC and infection status of both partners. ii) I will use theoretical models to predict under which circumstances SS can accelerate the evolution of disease resistance. iii) I will use population ecology to evaluate the association between the strength of SS and species’ susceptibility to Bd in natural populations.This project will provide fundamental scientific knowledge on the relationship between SS and the evolution of immunity by exploring the interaction between Bd and amphibian MHC. It builds on the recent insight that natural selection drives MHC evolution in amphibians, and originally explores the role of SS in this process in a uniquely integrated experimental, theoretical and field ecological fashion. I have worked with Bd throughout my academic career; this project allows me to focus on the hosts, which has been the target of fewer studies and is in dire need of conservation. The project will be conducted at the University of Groningen under the supervision of Dr. Maan, an expert on sexual selection and poison frogs; and Dr. Pen, a an expert in bioinformatics and modelling. Field work will be carried out in Brazilian Amazonian basin.
Оригинален текст от CORDIS (на английски).
Участници
- RIJKSUNIVERSITEIT GRONINGEN · GroningenКоординаторНидерландия
Връзки
Данни: CORDIS, © Европейски съюз
