课题基金 / 基金详情

NSF PRFB FY23: Host-pathogen dynamics in response to resource pulses: nutrients, immunity and disease transmission

NSF PRFB FY23: Host-pathogen dynamics in response to resource pulses: nutrients, immunity and disease transmission
NSF PRFB FY23:响应资源脉冲的宿主病原体动态:营养、免疫和疾病传播
批准号:
2305798
负责人:
Julie Davis
金额:
$24.0万
依托单位:
依托单位国家:
美国
项目类别:
Fellowship Award
财政年份:
2023
资助国家:
美国
项目状态:
未结题
起止时间:
2023-09-01 至 2026-08-31

项目摘要

项目成果

相似基金

相关文献

中文摘要
翻译
这项行动资助了2023财年的NSF生物学博士后研究奖学金,综合研究调查了基因组,环境和表型之间的生命管理相互作用的规则。该研究金支持研究员的研究和培训,以创新的方式为生活规则领域做出贡献。在全球范围内,疾病和栖息地的丧失导致生物多样性的丧失。在农业景观中,蜜蜂有时从开花植物中获得的食物较少,并且可能暴露于更多疾病。然而,大量开花的覆盖作物产生大量的花朵可以改善蜜蜂的生存条件。例如,大量开花的作物增加食物供应可能会改善蜜蜂的营养和抗病能力。此外,大规模开花可能会减少或增加蜜蜂在共用花朵上传播疾病的机会,这可能取决于周围景观中其他非作物花朵的数量。确定不同的农业实践可以支持传粉者的环境可以改善保护工作。本研究探讨非作物花卉的丰富度如何影响覆盖作物的大量开花对蜜蜂抗病性和传播的影响程度。本研究将使用农业上重要的本土蜜蜂,壁蜂lignaria,及其相关病原体来评估覆盖作物的资源豆类如何影响蜜蜂抗病性和传播。(vetch,Vicia villosa)与周围的景观相互作用(丰富的非大规模开花花卉资源,NMBR)影响蜜蜂免疫力,病原体感染和病原体传播。这位研究员将把壁蜂的巢放在有或没有大量开花的野豌豆的地方。大量水华和对照处理中的站点将各自沿NMBR的梯度沿着存在。为了评估大规模水华如何影响病原体感染,将在整个水华期间对成年蜜蜂进行采样,并在水华结束时对幼虫和花粉进行采样,以量化病原体和营养物质。为了评估大规模开花如何影响疾病传播的机会,将在野豌豆和NMBR斑块中量化总的和受感染的蜜蜂和花朵密度。为了评估大规模开花和NMBR是否会影响免疫力,该研究员将进行免疫挑战,并在实验室实验中测量从模拟每个地点花卉资源质量和数量的饮食中喂食花粉的蜜蜂中的免疫基因表达。通过解开宿主-病原体动力学的景观与分子尺度驱动因素,这项工作将提高病原体何时影响种群和社区的预测能力。该研究员将通过以下方式扩大其工作的影响:1)培训两名本科生; 2)开展生物学全纳教学培训; 3)与保护和农业专业人士交流成果并调查应用。该奖项反映了NSF的法定使命,并通过使用基金会的智力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
This action funds an NSF Postdoctoral Research Fellowship in Biology for FY 2023, Integrative Research Investigating the Rules of Life Governing Interactions Between Genomes, Environment, and Phenotypes. The fellowship supports research and training of the fellow that will contribute to the area of Rules of Life in innovative ways. Globally, disease and habitat loss lead to biodiversity loss. In agricultural landscapes, bees sometimes have less food from flowering plants and can be exposed to more disease. However, mass blooming cover crops that produce large amounts of flowers could improve conditions for bees. For example, increased food supply from mass blooming crops may improve bee nutrition and disease resistance. Additionally, mass blooms could either reduce or increase chances for bees to spread diseases at shared flowers, likely depending on the amount of other, non-crop flowers in the surrounding landscape. Identifying the contexts in which different farming practices can support pollinators improves conservation efforts. This project asks how non-crop flower abundance affects the extent to which mass blooming cover crops affect bee disease resistance and spread.This research will use an agriculturally important native bee, Osmia lignaria, and its associated pathogens to evaluate how resource pulses from a cover crop (vetch, Vicia villosa) interact with the surrounding landscape (abundance of non-mass bloom floral resources, NMBR) to affect bee immunity, pathogen infection, and pathogen transmission. The fellow will place Osmia lignaria nests at sites manipulated to either have or not have mass blooming vetch. Sites in the mass bloom and control treatments will each exist along a gradient of NMBR. To assess how mass bloom affects pathogen infection, adult bees will be sampled throughout bloom, and larvae and pollen provisions will be sampled at the end of bloom to quantify pathogens and nutrients. To assess how mass bloom affects opportunities for disease transmission, total and infected bee and flower density will be quantified in vetch and NMBR patches. To assess whether mass bloom and NMBR affect immunity, the fellow will conduct an immune challenge and measure immune gene expression in bees fed pollen from diets that mimic the quality and quantity of floral resources at each site, in laboratory experiments. By disentangling landscape- versus molecular-scale drivers of host-pathogen dynamics, this work will improve predictive power of when pathogens affect populations and communities. The fellow will extend the impact of their work by 1) training two undergraduate students, 2) conducting trainings on inclusive teaching in Biology, and 3) communicating results and investigating applications with conservation and agricultural professionals.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.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
海外基金