RAPID: Adaptive immunity in bats: foundational knowledge for assessing specific pathogen responses in natural coronavirus reservoirs
RAPID: Adaptive immunity in bats: foundational knowledge for assessing specific pathogen responses in natural coronavirus reservoirs
批准号:
2032157
负责人:
Hannah Frank
金额:
$19.98万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2020
资助国家:
美国
项目状态:
已结题
起止时间:
2020-06-15 至 2024-05-31
中文摘要
近年来,许多感染已经从非人类动物传播到人类,引起许多不同的疾病,并对公共卫生和经济造成重大负担。特别是,目前的COVID-19大流行是由SARS-CoV-2引起的,SARS-CoV-2是一种冠状病毒,其祖先可能在非人类动物中进化。总的来说,蝙蝠携带着多种多样的冠状病毒。事实上,SARS-CoV-2,就像它的亲戚SARS-CoV一样,引起SARS的病毒,被假设起源于蝙蝠宿主。这项拟议中的研究旨在了解病毒的天然宿主如何对这些感染做出反应,特别关注蝙蝠的免疫力。蝙蝠是一个非常多样化的群体,与许多新出现的人类感染有关,但也提供关键的生态系统服务,如害虫控制,种子传播和授粉。这项研究将阐明蝙蝠的免疫力如何影响这些病毒的进化。这将有助于了解如何预防、管理或治疗人类感染,以及保护和更好地了解蝙蝠。该研究还将促进对本科生进行基因组实验室技术和生物信息学分析的培训,培养下一代科学家。目前,人们对蝙蝠免疫力的了解有限,部分原因是蝙蝠物种的多样性和缺乏研究它们的免疫试剂。特别是,大多数研究都集中在少数物种的先天免疫上;对形成适应性免疫基础的免疫球蛋白和T细胞几乎一无所知。这项研究通过使用基因组方法来了解多个蝙蝠物种的适应性免疫来克服这些障碍。具体来说,拟议的研究将1)分析多个不同蝙蝠物种(包括已知的冠状病毒宿主)中的生殖系和重排免疫球蛋白和T细胞受体库,使用基因捕获,长读测序以及靶向扩增和测序的混合; 2)使用单细胞转录组学表征参与适应性免疫的细胞;和3)测试野生蝙蝠中的冠状病毒,并比较感染和未感染蝙蝠之间的免疫球蛋白库。研究结果将为重要水库群的适应性免疫提供基础知识,阐明多个物种中蝙蝠-病原体的关系。其他人可以利用这些发现来描述蝙蝠对特定病原体的反应,预测某些物种是否更好地应对感染,并指导预防和干预人畜共患病的工作。该RAPID奖项由BIO综合有机系统部门的生理和结构系统集群颁发,使用冠状病毒援助,救济和经济安全(CARES)法案的资金。该奖项反映了NSF的法定使命,并通过使用基金会的知识价值和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
In recent years a number of infections have passed from non-human animals to humans causing numerous different diseases and creating significant burdens on public health and the economy. In particular, the current COVID-19 pandemic is caused by SARS-CoV-2, a coronavirus whose ancestors likely evolved in a non-human animal. In general, bats host a wide diversity of coronaviruses. Indeed, SARS-CoV-2, like its relative SARS-CoV, the virus that causes SARS, is hypothesized to have its origins in bat hosts. The proposed research seeks to understand how the natural hosts of viruses respond to these infections with a specific focus on bat immunity. Bats are a hugely diverse group that have been linked to numerous emerging human infections but also provide critical ecosystem services such as pest control, seed dispersal and pollination. The research will clarify how bat immunity has shaped the evolution of these viruses. This will yield insights into how to potentially prevent, manage or treat infections in people, as well as protect and better understand bats. The research will also facilitate the training of undergraduate students in genomic laboratory techniques and bioinformatic analysis, training the next generation of scientists. Currently, there is a limited understanding of bat immunity, hampered in part by the diversity of bat species and lack of immunological reagents for studying them. In particular, most research has focused on innate immunity in a few species; almost nothing is known about the immunoglobulins and T cells that form the basis of adaptive immunity. The proposed research overcomes these obstacles by using genomic methods to understand adaptive immunity in multiple bat species. Specifically, the proposed research will 1) analyze the germline and rearranged immunoglobulin and T cell receptor repertoires in multiple, diverse bat species, including known coronavirus hosts, using a mix of gene capture, long-read sequencing, and targeted amplification and sequencing; 2) characterize the cells involved in adaptive immunity using single-cell transcriptomics; and 3) test for coronaviruses in wild bats and compare the immunoglobulin repertoire between infected and uninfected bats. The results will provide foundational knowledge of adaptive immunity of an important reservoir group, clarifying the bat-pathogen relationship in multiple species. These findings can be leveraged by others to characterize the responses of bats to specific pathogens, to predict whether certain species are better equipped to respond to infection, and to guide prevention and intervention efforts for zoonotic disease. This RAPID award is made by the Physiological and Structural Systems Cluster in the BIO Division of Integrative Organismal Systems, using funds from the Coronavirus Aid, Relief, and Economic Security (CARES) Act.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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