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(RUI) From Complex Environments to Underlying Mechanisms: A Network Approach to Multi-trait Tradeoffs

(RUI) From Complex Environments to Underlying Mechanisms: A Network Approach to Multi-trait Tradeoffs
(RUI) 从复杂环境到底层机制:多特征权衡的网络方法
批准号:
1565695
负责人:
Zachary Stahlschmidt
金额:
$39.83万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2015
资助国家:
美国
项目状态:
已结题
起止时间:
2015-07-01 至 2020-05-31

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项目成果

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中文摘要
翻译
为了生存和持续,生物体必须获得食物,能够繁殖,避免被吃掉,并防止感染。然而,这些重要的特征中的每一个都是昂贵的维护,这可能导致特征之间的权衡。也就是说,对一种特质的投资是以另一种特质为代价的。研究人员提出了一种实验方法,检查三个重要生物特征之间的同时权衡(例如,免疫力,生殖和身体运动),这将提供深入了解多性状权衡在塑造动物生存方式中的作用。考虑到性状权衡受环境的影响,这些研究将在一系列模拟北美环境变化动态的操纵环境中进行。在压力条件下,对一个特质的投资可以优先于对另一个特质的投资。然而,如果个人遇到有利的环境(例如,无限制地获得食物),两个特性,如生殖和免疫力,可能会保持,这表明权衡可能取决于食物的供应。粮食供应的影响往往受到可能伴随粮食供应减少的其他环境因素的影响(例如,热浪),食物供应和温度之间的相互作用可能会深刻影响权衡。这项研究将是第一个使用网络分析方法来描述环境变化和动物生活史策略之间的相互作用。这种方法已被证明是一个强大的工具,用于研究不同的现象,如社会互动,互联网的结构,并优化工程问题的解决方案。这项研究的大部分将由来自代表性不足的少数群体的学生进行,并将通过旨在教育社区成员的科学推广计划进行补充(特别是K-8学生)对昆虫生物学的重要性。拟议的研究将使用一个操纵的方法在一个翅膀二型领域板球检查投资到三个生活史特征的广泛重要性之间的权衡:生殖、免疫功能和运动。由此产生的经验数据将用于网络分析方法,以通过确定几个网络度量来表征这些特征之间的动态关系(例如,连通性、介数和模块化)。他们还将研究生活史网络和潜在生理特征网络之间的联系(例如,抗氧化防御和代谢率)。此外,他们将使用网络方法来确定两个普遍的环境约束(食物供应和温度)在多性状权衡和性状-性状相互作用中的独立和相互作用。因此,拟议的研究将使用一种综合的方法来更好地了解复杂的性状系统是如何发展和维持的。它将对多个生物学科产生影响,包括生态免疫学,生态生理学,网络分析和生活史进化。研究人员将为学生提供广泛的研究培训,其中许多学生来自代表该地区和格鲁吉亚南方大学(GSU)学生团体的服务不足的少数群体。为了补充他们的研究目标,他们将开发一个旨在教育年轻人了解昆虫的推广计划,昆虫是一个重要的分类群体。他们将在GSU博物馆创建一个网站和一个附带的外展展览,提供有关当地昆虫的信息。他们还将构建和传播一个教育模块,旨在满足教育性能标准的格鲁吉亚的部门状态;这将包含结构化的活动,信息讲义,和活蟋蟀,K-8学生可以用来发展科学素养。
英文摘要
To survive and persist, an organism must acquire food, be able to reproduce, avoid being eaten, and prevent infection. However, each of these important traits is costly to maintain, which can lead to tradeoffs among the traits. That is, investment into one trait comes at a cost to another. The researchers propose an experimental approach examining simultaneous tradeoffs among three important biological traits (e.g., immunity, reproduction, and body movement) that will provide insight into the role of multi-trait tradeoffs in shaping how animals survive. Given that trait tradeoffs are influenced by the environment, these studies will occur in a range of manipulated environments that simulate the dynamics of environmental change in North America. Under stressful conditions, investment into one trait can take precedence over investment into another trait. However, if individuals encounter favorable environments (e.g., unlimited access to food), two traits, such as reproduction and immunity, may be maintained, suggesting that tradeoffs may be dependent upon food availability. The effects of food availability are often influenced by other environmental factors that may accompany reduced food availability (e.g., heat waves), and interactions between food availability and temperature may profoundly influence tradeoffs. This research will be the first to characterize the interplay between environmental variability and animal life history strategies using a network analysis approach. This approach has proven to be a powerful tool for studying diverse phenomena, such as social interactions, the structure of the Internet, and for optimizing solutions to engineering problems. Much of this research will be performed by students from under-represented minority groups, and it will be complemented by a science outreach program designed to educate community members (particularly K-8 students) on the importance of insect biology.The proposed research will use a manipulative approach in a wing-dimorphic field cricket to examine tradeoffs among investment into three life history traits of widespread importance: reproduction, immune function, and locomotion. Resultant empirical data will be used for a network analysis approach to characterize dynamic relationships among these traits through the determination of several network metrics (e.g., connectivity, betweenness, and modularity). They will also examine linkages between the life history networks and a network of underlying physiological traits (e.g., antioxidant defense and metabolic rate). Further, they will use a network approach to determine the independent and interactive role of two universal environmental constraints (food availability and temperature) in multi-trait tradeoffs and trait-trait interactions. Thus, the proposed study will use an integrative approach to better understand how complex trait systems develop and are maintained. It will have impact on multiple biological disciplines, including ecological immunology, ecological physiology, network analyses, and life history evolution. The researchers will provide extensive research training to students, many of whom come from under-served minority groups representative of both the region and the student body at Georgia Southern University (GSU). To complement their research goals, they will develop an outreach program designed to educate young people about insects, an important taxonomic group. They will create a website and an accompanying outreach exhibition at the GSU Museum that provides information about local insects. They will also construct and disseminate an educational module designed to meet the State of Georgia's Department of Education performance standards; this will contain structured activities, informational handouts, and live crickets that K-8 students can use to develop scientific literacy.
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(RUI) From Complex Environments to Underlying Mechanisms: A Network Approach to Multi-trait Tradeoffs
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  • 批准号:
    --
  • 项目类别:
    青年科学基金项目
  • 资助金额:
    30万元
  • 批准年份:
    2022
  • 负责人:
    赵锐
  • 依托单位:
线粒体参与呼吸中枢pre-Bötzinger complex呼吸可塑性调控的机制研究