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RAPID: Food webs of 10 lakes before and after a mega-wildfire

RAPID: Food webs of 10 lakes before and after a mega-wildfire
RAPID:特大野火前后 10 个湖泊的食物网
批准号:
2225284
负责人:
Andrew Rypel
金额:
$19.9万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2022
资助国家:
美国
项目状态:
已结题
起止时间:
2022-06-15 至 2024-05-31
关键词:

项目摘要

项目成果

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中文摘要
翻译
在过去的二十年里,美国西部森林山脉的野火规模和强度都在增长。 虽然对森林本身的影响进行了大量调查,但几乎没有研究评估它们对嵌入这些生态系统的山区湖泊的影响。野火烧过分水岭后,大量的有机碎片会被冲入湖泊。尽管淡水类群可能对火灾影响特别敏感,但对这些有机投入物等火灾相关影响改变淡水物种和生态系统的程度知之甚少。2021年夏季,迪克西大火烧毁了北方加州约100万英亩的森林。该研究项目利用了野火前(2020年)在烧伤疤痕内10个冰川湖泊的鱼类和食物网上收集的独特数据,旨在对火灾后的这些相同生态系统进行重新采样,以了解流域火灾的严重程度如何影响湖泊生态。特别是,研究人员将调查这场大火是否会杀死湖泊中的鱼类种群,以及这是否取决于湖泊的大小或盆地的特征。此外,他们还将评估鱼类数量的减少如何通过食物网级联影响湖泊生态系统的整体健康。通过这项研究获得的见解将有助于更好地管理湖泊渔业和遗产物种(例如,当地的青蛙)严重的野火后。此外,从这项研究中收集的数据将为决策者提供有关未来如何管理这些系统的信息,包括何时以及是否储存湖泊,以及火灾如何更普遍地影响淡水生态系统。研究人员将采取科学传播策略,呼吁公众关注这项工作,并将招募历史上被排除在外的背景的学生参与这项研究的整个生命周期。这项研究将调查特大野火(迪克西火)对美国加州驯鹿荒野拉森国家森林的10个湖泊生态系统的影响。具体来说,我们将研究1)是否在一些或所有湖泊的鱼类被消灭后,特大野火,2)是否鱼去除改变了营养级联,3)如果营养级联强度随生态系统的大小,以及4)如何湖泊食物网结构和功能转移后,流域燃烧。该项目利用对鱼类、无脊椎动物和湖泊化学特征的实地测量,并利用稳定同位素评估不断变化的食物网。这些评估将用于测试生态理论,即干扰介导的营养级联的作用,以及它们对湖泊食物网结构和功能的控制。这项工作的结果将是有用的,不同的生态学家感兴趣的气候变化介导的干扰的影响,但特别是湖沼学家和淡水科学家努力管理这些类群在人类主导的景观。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
Wildfires have grown in size and intensity across the forested mountains of the western USA in the last two decades. While there is much investigation of their impacts of forests themselves, almost no studies evaluate their impacts on the mountain lakes that are embedded in these ecosystems. After wildfires burn through a watershed, large quantities of organic debris can wash into lakes. Little is known about the extent to which fires-related effects such as these organic inputs, alter freshwater species and ecosystems, even though freshwater taxa may be notably sensitive to fire impacts. During summer 2021, the Dixie Fire burned ~1 million acres of forest in Northern California. This research project takes advantage of unique pre-wildfire (2020) data collected on the fish and food webs of 10 glacial lakes within the burn scar, and aims to resample these same ecosystems post-fire to understand how severity of fire in watershed impacts lake ecology. In particular, researchers will investigate whether this large wildfire kills fish populations in lakes and whether this depends on lake size or basin characteristics. Additionally they will evaluate how reductions in fish populations cascade through the food webs to affect the overall health of lake ecosystems. Insights gained through this study will enable better management of lake fisheries and heritage species (e.g., native frogs) following severe wildfire. Further, data collected from this study will inform decision makers on how to manage these systems into the future, including when and whether to stock lakes, and how fires impact freshwater ecosystems more generally. Researchers will engage in a science communication strategy aimed at calling public attention to this work, and will recruit students from historically-excluded backgrounds to participate in the full life-cycle of this research.This research will investigate the effects of a mega-wildfire (the Dixie Fire) on 10 lake ecosystems in the Lassen National Forest, Caribou Wilderness, California, USA. Specifically, we will examine 1) whether fishes are eradicated in some or all lakes following mega-wildfires,2) whether fish removal changes a trophic cascade, 3) if trophic cascade strength varies with ecosystem size, and 4) how lake food web structure and function shifts following watershed burning. This project uses both on the ground measurements of fish, invertebrates and lake chemical features, and uses stable isotopes to evaluate changing food webs. These assessments will be used to test ecological theory, namely the role of disturbance-mediated trophic cascades, and their control over lake food web structure and function. Results from this work will be useful to diverse ecologists interested in effects of climate change mediated disturbances, but especially limnologists and freshwater scientists struggling to manage these taxa in human dominated landscapes. Undergraduate students from diverse backgrounds will be included in the research process.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(1)
专著(0)
科研奖励(0)
会议论文
Ecosystem size filters life‐history strategies to shape community assembly in lakes
生态系统规模过滤生命——塑造湖泊群落组合的历史策略
DOI: 10.1111/1365-2656.13925
发表时间: 2023
期刊: Journal of Animal Ecology
影响因子: 4.8
作者: [Rypel, Andrew L.]
通讯作者: Rypel, Andrew L.
国内基金
海外基金
蜜蜂脑部多巴胺调控食物欲望(Food Wanting)的分子机制研究
  • 批准号:
    --
  • 项目类别:
    --
  • 资助金额:
    54万元
  • 批准年份:
    2022
  • 负责人:
    苏松坤
  • 依托单位: