RAPID: COLLABORATIVE RESEARCH: Interaction between genotype and acquired environmental modifications during coral responses to extreme climatic events Irma and Maria

快速:合作研究:珊瑚对极端气候事件艾尔玛和玛丽亚做出反应期间基因型与后天环境改变之间的相互作用

基本信息

  • 批准号:
    1810965
  • 负责人:
  • 金额:
    $ 3.12万
  • 依托单位:
  • 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
  • 起止时间:
    2018-01-15 至 2019-12-31
  • 项目状态:
    已结题

项目摘要

After the impact of two consecutive category 5 hurricanes in less than a month, Puerto Rico is (for a narrow window of time) the world's best natural laboratory to study the effects of extreme weather episodes on coral reefs and the mechanisms underlying coral acclimatory responses to global change. This project leverages this opportunity, and the research team's previous work in the area, to understand how coral existing genetic variation interacts with acquired environmental modifications (i.e., microbiome and epigenome) during intra- and trans-generational responses to extreme climatic events. For this purpose, coral and Symbiodinium genotypes, bacterial diversity and epigenomic modifications will be directly examined, exploring their role in coral demographic and physiological recovery and the inheritance of epigenomic signatures linked to stress acclimatization. This work will be accomplished by a multi-institutional team, providing much needed answers to questions concerning the mechanisms by which foundational species acclimatize to rapidly changing environmental conditions. By better understanding the mechanisms contributing to stress responses, the researchers hope to learn how long lived sessile organisms may adapt or acclimatize to a extreme events. Established resources at Florida International University, the University of Puerto Rico, and Pennsylvania State University will be used to recruit and engage graduate and undergraduate students from under-represented groups in science in the research. The research team will work closely with Puerto Rican agencies and local resource managers to communicate management and conservation applications from the research. The increasing frequency and intensity of altered storm regimes will contribute to significantly reducing coral population sizes in the next few decades. While it is known that environmentally acquired modifications can influence coral health and physiology, their precise role and interaction with coral existing genetic variation to promote phenotypic plasticity remain one of the central gaps in our understanding of metazoan ecology and evolution. This project will be the first investigation into the interaction between coral genetic variation and two different types of environmentally acquired modifications (epigenome and microbiome) during intra- and trans-generational responses to high-energy storms. The proposed research will determine a) if modifications in epigenetic signatures and bacterial diversity are dependent on specific associations between coral host and Symbiodinium genotypes, b) if those modifications promote differential physiological and demographic performance during post-hurricane recovery, and c) if epigenomic modifications acquired by progenitors are transmitted to their offspring. Two graduate students and 2 REU undergraduates will be engaged in this research. The research team will work closely with Puerto Rico agencies, convene monthly conference calls, and provide regular updates about this work to local resource managers. A formal evaluation protocol will be used to assess implementation and progress of the proposed educational and scientific activities (following NSF user-friendly handbook for project evaluation). Results and metadata will be disseminated through peer-reviewed publications, scientific meetings, reports and using online repositories. Raw data will be provided upon request.
在不到一个月的时间里连续遭受两次5类飓风的影响后,波多黎各(在很短的一段时间内)是世界上研究极端天气事件对珊瑚礁的影响和珊瑚对全球变化适应反应的机制的最佳自然实验室。该项目利用这一机会和研究小组以前在该地区的工作,了解在对极端气候事件的代内和跨代反应期间,珊瑚现有的遗传变异如何与获得的环境修改(即微生物组和表观基因组)相互作用。为此,将直接研究珊瑚和共生生物的基因类型、细菌多样性和表观基因组修饰,探索它们在珊瑚种群和生理恢复中的作用,以及与胁迫驯化有关的表观基因组特征的遗传。这项工作将由一个多机构团队完成,为基础物种适应快速变化的环境条件的机制问题提供亟需的答案。通过更好地了解导致应激反应的机制,研究人员希望了解长寿的固着生物可能会如何适应或适应极端事件。佛罗里达国际大学、波多黎各大学和宾夕法尼亚州立大学的现有资源将用于招聘和吸引科学领域代表性不足群体的研究生和本科生参与研究。研究小组将与波多黎各机构和当地资源管理人员密切合作,交流研究的管理和保护应用。风暴制度改变的频率和强度的增加将有助于在未来几十年大幅减少珊瑚种群数量。虽然已知环境获得性修饰可以影响珊瑚的健康和生理,但它们的确切作用及其与珊瑚现有遗传变异的相互作用促进表型可塑性仍然是我们理解后生动物生态学和进化的主要差距之一。该项目将首次调查珊瑚遗传变异与两种不同类型的环境获得的修饰(表观基因组和微生物组)在对高能风暴的代内和跨代反应期间的相互作用。拟议的研究将确定a)表观遗传特征和细菌多样性的修改是否取决于珊瑚宿主和共生菌基因类型之间的特定关联,b)这些修改是否促进飓风后恢复期间不同的生理和人口表现,以及c)祖先获得的表观基因组修改是否传递给他们的后代。两名研究生和两名REU本科生将参与这项研究。研究小组将与波多黎各各机构密切合作,每月召开电话会议,并定期向当地资源管理人员提供这项工作的最新情况。将使用正式的评估方案来评估拟议的教育和科学活动的实施和进展情况(遵循国家科学基金会方便用户的项目评估手册)。成果和元数据将通过同行评议的出版物、科学会议、报告和使用在线储存库传播。如有需要,将提供原始数据。

项目成果

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Alberto Sabat其他文献

The jumping performance of two emEleutherodactylus/em frog species: the effect of temperature
两种雨蛙属青蛙的跳跃性能:温度的影响
  • DOI:
    10.1016/j.jtherbio.2025.104113
  • 发表时间:
    2025-04-01
  • 期刊:
  • 影响因子:
    2.900
  • 作者:
    Gisela Mía Crespo-Martínez;Neftalí Ríos-López;Raymond Tremblay;Alberto Sabat
  • 通讯作者:
    Alberto Sabat

Alberto Sabat的其他文献

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