Collaborative Research: Decomposing the effects of diversity on the abundance of marine parasites
Collaborative Research: Decomposing the effects of diversity on the abundance of marine parasites
批准号:
1829419
负责人:
Alison Haupt
金额:
$9.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2018
资助国家:
美国
项目状态:
已结题
起止时间:
2018-10-01 至 2024-09-30
中文摘要
项目的非技术解释?随着地球生态系统经历生物多样性的快速变化,疾病生态学家转向了一个紧迫的问题:生物多样性的减少会如何影响寄生虫的传播?换句话说,生物多样性的丧失是否通过破坏传播的自然制衡而增加了寄生虫的数量?或者,它是否通过消除寄生虫赖以生存的自由生物多样性来减少寄生虫的丰度?这项研究将构成在任何生态系统中对这些问题的第一次全面测试。它将评估18个复制珊瑚礁生态系统中鱼类生物多样性和寄生虫丰度之间的关系。这项工作不仅将探讨鱼类生物多样性的减少是否与寄生虫负担的增加或减少有关,还将评估寄生虫和宿主的特征或地理距离是否会影响这种关系的方向和强度。在快速发展的疾病生态学领域中,所测试的理论是最重要和最有争议的,我们的工作代表了一种新颖的、创造性的方法来解决一个长期存在但尚未解决的研究问题。这项工作将对不断变化的世界中寄生虫传播的性质产生革命性的见解。此外,该项目将通过在加利福尼亚州蒙特利湾启动分子生态学研究实习,将一群代表性不足的本科生置于中心研究角色,并通过与美国自然历史博物馆的保护教育者和实践者网络合作,开发和传播关于寄生虫生物多样性的优质教育工具,将教育与研究紧密结合起来。寄生虫通常是隐藏的,很容易被忽视,但它们具有重要的生态意义,影响着每一个海洋动物种群。关于生物多样性丧失是否加剧寄生虫传播的不确定性和分歧困扰着疾病生态学领域,因为它缺乏制定令人信服的实证检验所需的全面、多宿主、多寄生虫、宽空间尺度的数据集。该项目将通过利用海洋模型系统的优势,利用前所未有的复制、分类和空间分辨率数据集来回答这个难以解决的问题。该项目以一项自然实验为中心,在该实验中,寄生虫的丰度在宿主生物多样性的高度分解梯度上,超过77种寄生虫和18种复制的珊瑚礁生态系统将被量化。数据集将严格测试生物多样性-寄生虫丰度关系的假设,揭示这种关系的方向,形状和规模依赖性如何在各种寄生虫分类群中变化,并解决疾病生态学文献中燃烧兴趣的问题-对海洋保护至关重要。该项目将解决以下问题:(Q1)对于检测到的每种寄生虫,生物多样性与寄生虫丰度之间的关系是什么方向和形状?(Q2)哪些因素(如寄生虫的传播策略和宿主特异性等特征,宿主的体型等特征)决定了生物多样性和寄生虫丰度之间关系的方向和形态?(Q3)空间尺度如何与寄生虫扩散能力相互作用以调节生物多样性对寄生虫丰度的影响?这项工作将整合来自六个赤道太平洋岛屿(北线群岛)的现有鱼类生物多样性和珊瑚礁鱼类寄生虫丰度数据集,以及来自另外12个岛屿(南线群岛和法属波利尼西亚)的新样本。所得数据集将反映18个岛屿上7种珊瑚礁鱼类的77个后生动物寄生虫分类群的负担。这项工作将提供世界上第一个关于寄生虫分类群、宿主分类群和空间尺度上生物多样性-疾病关系的方向、大小和形状的数据,并将全面确定生物多样性可能在决定寄生虫丰度方面发挥重要作用的条件——这是对生态学和生物海洋学的基本贡献。该项目将把教育与研究紧密结合起来,让一群代表性不足的少数民族本科生担任核心研究角色:进行估算寄生虫传播距离所需的分子分析。加州州立大学蒙特利湾分校将设立一个分子生态学的暑期研究实习,这是一个为西班牙裔服务的机构。该项目还将资助开发一个关于寄生虫生物多样性的同行评议学习模块,该模块将与美国自然历史博物馆合作开发和传播,并将支持培训两名研究生、一名博士后学者和几名本科生。该奖项反映了美国国家科学基金会的法定使命,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
Nontechnical explanation of the project?s broader significance and importanceAs Earth's ecosystems experience rapid biodiversity change, disease ecologists have turned to an urgent question: how might reductions in biodiversity affect the transmission of parasites? In other words, does biodiversity loss increase the abundance of parasites by eroding natural checks and balances on transmission? Alternatively, does it decrease parasite abundance by removing the free-living biodiversity on which parasites depend? This study will constitute the first comprehensive test of these questions in any ecosystem. It will evaluate the relationship between fish biodiversity and parasite abundance across 18 replicate coral reef ecosystems. Not only will the work explore whether reductions in fish biodiversity are associated with increases or decreases in parasite burdens, it will also assess whether parasite and host traits or geographical distance influence the direction and strength of this relationship. The theories that are tested are among the most important and controversial in the rapidly growing field of disease ecology and our work represents a novel, creative approach to a long standing, but unresolved research question. The work will yield transformative insights into the nature of parasite transmission in a changing world. Furthermore, the project will intimately intermingle education with research by launching the Research Internship in Molecular Ecology at California State Monterey Bay, which will place a group of underrepresented undergraduates in a central research role, and by developing and disseminating quality educational tools for teaching about parasite biodiversity through collaboration with the Network of Conservation Educators and Practitioners at the American Museum of Natural History. Parasites are often hidden and can be easy to overlook, but they are ecologically important and affect every population of marine animals. Technical description of the projectThe field of disease ecology is plagued by uncertainty and disagreement over whether biodiversity loss exacerbates parasite transmission, because it lacks the comprehensive, multi-host, multi-parasite, broad-spatial-scale dataset needed to formulate a convincing empirical test.This project will answer this recalcitrant question, using a dataset of unprecedented replication and taxonomic and spatial resolution, by exploiting the advantages of a marine model system. The project is centered on a natural experiment in which the abundance of parasites across a highly resolved gradient of host biodiversity, for more than 77 parasite species and 18 replicate coral reef ecosystems will be quantified. Dataset will critically test hypotheses for the biodiversity-parasite abundance relationship, revealing how the direction, shape, and scale-dependence of this relationship vary across a diverse array of parasite taxa, and resolving questions of burning interest in the disease ecology literature - and of vital importance to marine conservation. This project will address the following questions: (Q1) For each parasite species detected, what is the direction and shape of the relationship between biodiversity and parasite abundance? (Q2) What factors (e.g., parasite traits like transmission strategy and host specificity, host traits like body size) determine the direction and shape of the relationship between biodiversity and parasite abundance? (Q3) How does spatial scale interact with parasite dispersal capacity to moderate the effects of biodiversity on parasite abundance? The work will integrate an existing dataset on fish biodiversity and abundance of coral reef fish parasites from six equatorial Pacific islands (the Northern Line Islands) with new sampling from 12 additional islands (the Southern Line Islands and French Polynesia). The resulting dataset will reflect the burden of 77 metazoan parasite taxa for seven species of coral reef fishes across18 islands. The work will provide the world's first data on the direction, magnitude, and shape of the biodiversity-disease relationship across a diversity of parasite taxa, host taxa, and spatial scales, and will comprehensively identify conditions under which biodiversity is likely to be important in determining the abundance of parasites - a fundamental contribution to ecology and to biological oceanography. The project will intimately integrate education with research by placing a group of underrepresented minority undergraduates in a central research role: performing the molecular analyses required to estimate parasite dispersal distance. A summer Research Internship in Molecular Ecology will be established at California State University Monterey Bay, a Hispanic-Serving Institution. The project will also underwrite the development of a peer-reviewed learning module on parasite biodiversity, to be developed and disseminated in collaboration with the American Museum of Natural History, and will support the training of two graduate students, one postdoctoral scholar, and several undergraduates.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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