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MSB-ECA: Local and Migratory Spatial Foraging Affects Plant-Pollinator-Pathogen Networks

MSB-ECA: Local and Migratory Spatial Foraging Affects Plant-Pollinator-Pathogen Networks
MSB-ECA:本地和迁徙空间觅食影响植物-传粉者-病原体网络
批准号:
1638728
负责人:
Erin Wilson Rankin
金额:
$30.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-12-01 至 2019-11-30

项目摘要

项目成果

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中文摘要
翻译
授粉是一项关键的生态系统服务,对生物圈的生存和稳定至关重要。传粉者是野生和农业系统中的主要参与者,因为超过87%的开花植物需要传粉者才能繁殖。花是植物和传粉者之间相互作用的场所,传粉者接受花蜜或花粉以换取授粉。每朵花不仅受到多个个体的多次造访,而且往往还会受到多种类型的传粉者的造访。由于许多个体以相同的花卉资源取食,花也可以成为病原体从传粉者传给传粉者的场所。通过对蜜蜂和蜂鸟的研究,这个项目研究了这些相互作用?传粉者对花的访问是植物、传粉者和病原体之间相互作用的区域和大陆模式的基础。这个项目调查了一个新兴的生物学领域,并评估了病原体在特定物种之间传播的可能性。此外,这项研究有助于我们理解大规模过程(生物入侵、气候变化和传粉者迁徙)如何影响植物、传粉者和病原体之间的相互作用。有了这些信息,我们就可以做出预测并制定策略,以维持和保护健康稳定的环境所需的授粉服务。除了通过提供有意义的研究机会来促进科学、技术、工程和数学本科生的发展,研究人员正在开发以当地物种、栖息地为特色的教育材料,并指导K-6学生探索他们与自然界和传粉者的关系,特别是传粉者。该项目研究了花朵界面的相互作用?当地传粉者在花朵上的觅食如何扩大到推动植物-传粉者-病原体网络的区域和大陆模式。花卉资源被广泛的物种利用,包括蜂鸟和蜜蜂。每一次访花都为传粉者提供了获取和转移病原体的机会。该项目集传粉生物学、行为生态学、迁徙行为和疾病生态学于一体。通过将物候、植物多样性和丰度数据与由直接观测和下一代测序产生的物种相互作用的实验、空间复制数据相结合,将开发定量网络模型。在一种新的方法中,研究人员将结合植物-传粉者和传粉者-病原体的相互作用来创建植物-传粉者-病原体网络。这使得详细研究传粉者的觅食模式如何影响区域和大陆规模的病原体传播,以及病原体传播如何受到入侵的花卉访客和迁徙的影响。由此产生的网络将被记录在一个大的地理区域,其中包括一个全球生物多样性热点-加利福尼亚州植物省,该省也经历了每年一次的大陆规模的迁徙。该项目的主要目标是研究各种人为原因引起的访花波动如何影响传粉者病原体的传播途径。特别是,将审查物种引进、迁徙和气候变化的影响。这样的综合将为花传播病原体和疾病的途径提供洞察力和新的理解。
英文摘要
Pollination is a key ecosystem service vital for the survival and stability of the biosphere. Pollinators are major players in both wild and agricultural systems, as over 87% of flowering plants require pollinators in order to reproduce. Flowers are sites of interaction between plants and their pollinators, wherein pollinators receive nectar or pollen in exchange for pollination. Each flower receives multiple visits from not only multiple individuals but often multiple types of pollinators. Because many individuals feed from the same floral resource, flowers can also be sites for passing pathogens from pollinator to pollinator. Studying bees and hummingbirds, this project examines these interactions?how pollinator visits to the flower underlie regional and continental patterns of interactions among plants, pollinators, and their pathogens. This project investigates an emerging area of biology and evaluates the potential for inter-specific pathogen transmission. Furthermore, the research contributes to our understanding of how large-scale processes (biological invasion, climate change and pollinator migration) affect interactions among plants, their pollinators and their pathogens. With such information, we can make predictions and devise strategies to maintain and protect the pollination services necessary for a healthy and stable environment. In addition to promoting Science, Technology, Engineering and Math undergraduates by providing meaningful research opportunities, the researchers are developing educational materials that feature local species, habitats, and guided journaling activities for K-6 students to explore their relationship with the natural world and pollinators in particular.The project examines interactions at the floral interface?how local foraging of pollinators at the flower scale up to drive regional and continental patterns of plant-pollinator-pathogen networks. Floral resources are utilized by a broad range of species, including both hummingbirds and bees. Each floral visit presents the opportunity for a pollinator to both obtain and transfer pathogens. This project integrates pollination biology, behavioral ecology, migration behavior, and disease ecology. Quantitative network models will be developed by combining phenology, plant diversity and abundance data with experimental, spatially replicated data on species interactions generated from direct observations and next-generation sequencing. In a novel approach, researchers will then incorporate plant-pollinator and pollinator-pathogen interactions to create plant-pollinator-pathogen networks. This permits detailed study of how pollinator foraging patterns influence pathogen transmission at the regional and continental scales and how pathogen transmission is affected by invasive floral visitors and migration. The resulting networks will be documented across a large geographic area comprising a global biodiversity hotspot, the California Floristic Province, which also experiences annual continental-scale migrations. The main project objectives are to examine how fluctuations in floral visitation due to various anthropogenic causes affect pathways of pollinator pathogen transmission. In particular, the effects of species introductions, migration, and climate change will be examined. Such a synthesis will provide insights and new understanding into the pathways of florally-transmitted pathogens and disease.
期刊论文(5)
专著(0)
科研奖励(0)
会议论文
Temperature dependence of parasitic infection and gut bacterial communities in bumble bees
大黄蜂寄生虫感染和肠道细菌群落的温度依赖性
DOI: 10.1111/1462-2920.14805
发表时间: 2019
期刊: Environmental Microbiology
影响因子: 5.1
作者: [Palmer‐Young, Evan C., Ngor, Lyna, Burciaga Nevarez, Rodrigo, Rothman, Jason A., Raffel, Thomas R., McFrederick, Quinn S.]
通讯作者: McFrederick, Quinn S.
DOI: 10.1093/jisesa/iez091
发表时间: 2019-09-18
期刊: JOURNAL OF INSECT SCIENCE
影响因子: 2.2
作者: [Bodden, Jonah M., Hazlehurst, Jenny A., Rankin, Erin E. Wilson]
通讯作者: Rankin, Erin E. Wilson
Temperature-mediated inhibition of a bumblebee parasite by an intestinal symbiont
肠道共生体对大黄蜂寄生虫的温度介导抑制
DOI: 10.1098/rspb.2018.2041
发表时间: 2018
期刊: Proceedings of the Royal Society B: Biological Sciences
影响因子: --
作者: [Palmer-Young, Evan C., Raffel, Thomas R., McFrederick, Quinn S.]
通讯作者: McFrederick, Quinn S.
DOI: 10.1086/721023
发表时间: 2022-11-01
期刊: AMERICAN NATURALIST
影响因子: 2.9
作者: [Gaiarsa, Marilia Palumbo, Rehan, Sandra, McFrederick, Quinn S.]
通讯作者: McFrederick, Quinn S.
SG: Ecological Drivers of Life History Shifts in Invasive Social Wasps
  • 批准号:
    1557163
  • 项目类别:
    Standard Grant
  • 资助金额:
    $14.99万
  • 财政年份:
    2016
  • 负责人:
    Erin Wilson Rankin
  • 依托单位:
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ECA环境规制下的港航协作运营与绿色技术创新路径研究
  • 批准号:
    71902016
  • 项目类别:
    青年科学基金项目
  • 资助金额:
    20.0万元
  • 批准年份:
    2019
  • 负责人:
    周晶淼
  • 依托单位:
ECA背景下我国港口船舶大气污染协同治理激励机制研究
  • 批准号:
    71874108
  • 项目类别:
    面上项目
  • 资助金额:
    48.0万元
  • 批准年份:
    2018
  • 负责人:
    赵来军
  • 依托单位:
组胺H4受体调控食管癌细胞系Eca-109的作用及其信号传导机制的研究
SDIR1互作蛋白ECA1在植物应对干旱胁迫过程中的功能分析