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Disease susceptibility and gut health in the wild: Determining interactions between diet, gut microbiome and immunity.

Disease susceptibility and gut health in the wild: Determining interactions between diet, gut microbiome and immunity.
野外疾病易感性和肠道健康:确定饮食、肠道微生物组和免疫力之间的相互作用。
批准号:
BB/X016935/1
负责人:
Kathryn Else
金额:
$79.87万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2023
资助国家:
英国
项目状态:
未结题
起止时间:
2023 至 --

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中文摘要
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英文摘要
Parasitic worms are extraordinarily common infections of humans, livestock and wildlife. They cause ill heath, a reduced ability to put on weight, reduced productivity and economic loss. Drugs exist to tackle parasite infections but as parasites develop drug resistance, these sorts of control methods lose effectiveness. Thus, discovering new ways to limit infections is important. The body's immune system is a natural defence system that protects the body from infections and disease. However, it has to contend and adapt to the many environmental variables that an individual is exposed to, such as a changing diet for example. These variables will differ between individuals at any one point in time, and over time in the same individual. Understanding the factors which enable infections, such as parasites, to be cleared efficiently from the body is important. Defending against infections takes energy and therefore one might predict that individuals with good quality diets might be able to deploy more energy in to the immune system and so respond more effectively to infectious threats. Laboratory studies have shown that changing the diet of laboratory mice in otherwise very controlled systems can change the way the body defends itself against parasites. Further, in wild wood mice, which face many challenges in their natural environment (for example avoiding predation, finding food), a better quality diet improves their ability to control parasites. However, the mechanism by which a good diet helps parasite clearance is unknown, particularly in natural settings. Indeed changes in diet are known to not only alter the body's immune system but also the collection of bacteria living within the intestine, the microbiome. The gut microbiome itself plays an important role in supporting an individual's health. It is therefore important to understand how diet affects several factors at once, including the microbiome and the immune response, to support fighting of parasitic infections.The observations in wild wood mice are powerful but this study system is limited in the tools available to understand how diet promotes resistance to infection. However, a wild house mouse population - the same species as laboratory mice - offers both the laboratory reagents required to study the body's immune system and a real world context.We therefore propose to study a wild house mouse population on the Isle of May. We will provide an improved diet to one group of mice and compare their anti-parasite immune response and the collection of bacteria living in their guts to those of mice which do not receive an improved diet. Further, to understand the importance of the microbiome versus the immune system we will also treat groups of mice with an antibody, which will block the immune-based anti-parasite defence. In this way we can tease apart whether the diet-driven changes in parasite clearance are acting via the immune system.To assess the relevance of diet-driven microbiome changes, we will collect faeces from wild mice on an improved diet versus a normal diet and transfer the faeces to laboratory mice that do not have any bacteria in their intestines. Subsequent infection with a parasite will test if we have transferred an improved ability to clear the worm and additional experimental removal of the anti-parasite immune response will confirm whether the diet-enhanced microbiome operates via the immune system.Overall, this project will disentangle the ways in which an improved diet supports health and protects against parasitic infection. It will do so by using a novel, interdisciplinary study design bridging between controlled laboratory mouse studies and investigations in wild mouse populations. This allows both detailed and mechanistic investigation as well as taking into account the real-world environment in which an individual's immune system operates.
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