Genetic change and genetic accommodation allow singing insects to adapt to temperature change
Genetic change and genetic accommodation allow singing insects to adapt to temperature change
批准号:
1656818
负责人:
Kasey Fowler-Finn
金额:
$48.0万
依托单位:
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2017
资助国家:
美国
项目状态:
已结题
起止时间:
2017-03-15 至 2023-02-28
中文摘要
非技术摘要:温度影响所有生物体,从细胞过程的速度到它们的行为。然而,人们对温度如何影响动物繁殖和行为,特别是昆虫的繁殖和行为知之甚少。昆虫在人类社会的健康和福利中发挥着关键作用,从粮食作物的授粉到营养循环和疾病的传播;了解它们对温度变化的反应对于了解它们对人类的影响至关重要。由于昆虫通常在特定的温度范围内生活和交配,因此每天和每年的温度变化可能会在关键时刻减少交配活动;例如,在食物丰富的时候。此外,昆虫用来吸引配偶的歌声和行为随着温度的变化而变化,从而增加了识别潜在配偶的难度。这个项目调查了这些挑战在树跳。这些昆虫创造植物茎的振动来交流,这种行为对温度的变化非常敏感。该项目结合了控制温度的实验室实验,详细的行为观察和繁殖结果,以了解遗传学在昆虫对温度变化的反应中的作用。研究结果将允许对昆虫如何应对温度以及对种群和物种健康和功能的影响进行前所未有的测试。这项工作的创造性更广泛的影响包括与艺术家合作,创造声音装置,展示昆虫振动歌曲如何随温度变化,并与艺术家和科学家的公开会谈配对。此外,这项工作为学生和博士后研究人员提供培训,重点支持STEM.技术摘要:该项目探讨了变温条件下生态动物面临的两个主要生殖挑战。首先,交配通常只发生在临界温度窗口内,温度的变化和波动会限制这一窗口的可用性。其次,雄性吸引雌性的信号会随着温度的变化而发生巨大变化,这给试图识别配偶的雌性带来了挑战,甚至可能识别正确的物种。这个项目使用Enchenopa树跳,昆虫通过歌曲,通过植物茎旅行交流。主要目标是确定沿着纬度梯度的种群如何对温度变化作出反应,并确定单个种群适应温度变化和波动的潜力。为了实现这些目标,该项目将结合联合收割机经典的定量遗传育种设计与受控的行为测定,以测量表型和遗传变异的热敏繁殖性状。研究结果将使人们能够深入了解过去的选择如何塑造当前的变异模式,并确定最有可能使昆虫适应温度变化的热敏特性。这项工作为学生和博士后学者在实验室提供独立和协作培训,重点是支持STEM的多样性。研究团队将与声音艺术家、圣刘易斯动物园和媒体专家合作,创建两个沉浸式声音装置、昆虫馆展览、在线视频和资源,教育公众了解振动歌曲,以及温度如何影响动物的行为和繁殖。
英文摘要
Non-technical Abstract: Temperature affects all living organisms, from the speed of cellular processes to their behavior. However, little is known about how temperature influences animal reproduction and behavior, particularly in insects. Insects play critical roles in the health and welfare of human society from pollination of food crops, to nutrient cycling, and movement of diseases; understanding their responses to temperature variation is critical for understanding their impact on people. Because insects often live and mate within specific temperature ranges, daily and yearly changes in temperature could reduce mating activity at critical times; for example, during times when food is abundant. Furthermore, insect songs and behavior used to attract mates vary with temperature, thus increasing the difficulty of identifying potential mates. This project investigates these challenges in treehoppers. These insects create plant stem vibrations to communicate, a behavior very sensitive to changes in temperature. The project combines controlled laboratory experiments that manipulate temperature, detailed behavioral observations, and breeding outcomes to understand the role of genetics in insect responses to temperature changes. The results will allow for unprecedented tests of how insects deal with temperature, and the impact on population and species health and function. A creative broader impact of this work includes a collaboration with an artist to create sound installations that demonstrate how insect vibrational songs vary with temperature, paired with artist-scientist public talks. Additionally, this work provides training for students and a postdoctoral researcher with a strong focus on supporting diversity in STEM.Technical Abstract: This project explores two major reproductive challenges that ecothermic animals face under variable temperature conditions. First, mating often occurs only within critical temperature windows, and changes and fluctuations in temperature can restrict the availability of this window. Second, the signals males produce to attract females can vary dramatically with temperature, posing challenges to females attempting to identify mates, and even the potential to identify the right species. This project uses Enchenopa treehoppers, insects that communicate through songs that travel through plant stems. The main goals are to determine how populations along a latitudinal gradient have evolved in response to temperature variation, and to determine the potential for individual populations to adapt to temperature changes and fluctuations. To achieve these goals, this project will combine classic quantitative genetics breeding designs with controlled behavioral assays to measure phenotypic and genetic variation in thermally-sensitive reproductive traits. The results will allow insight into how current patterns of variation have been shaped by past selection, and identify thermally-sensitive traits that are most likely to allow the insects to adapt to temperature changes. This work provides independent and collaborative training for students and a postdoctoral scholar in a laboratory with a strong focus on supporting diversity in STEM. The team of researchers will work together with a sound artist, the Saint Louis Zoo, and a media expert to create two immersive sound installations, Insectarium exhibits, and online videos and resources that educate the public about vibrational songs, and how temperature affects behavior and reproduction in animals.
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DOI:
10.1111/ele.14072
发表时间:
2022
期刊:
Ecology Letters
影响因子:
8.8
作者:
[Leith, Noah T., Fowler‐Finn, Kasey D., Moore, Michael P.]
通讯作者:
Moore, Michael P.
DOI:
10.1111/jeb.14090
发表时间:
2022-09-21
期刊:
JOURNAL OF EVOLUTIONARY BIOLOGY
影响因子:
2.1
作者:
[Sasson,Daniel, Agali,Uchechukwu, Fowler-Finn,Kasey]
通讯作者:
Fowler-Finn,Kasey
DOI:
10.1016/j.cois.2021.03.005
发表时间:
2021-04-24
期刊:
CURRENT OPINION IN INSECT SCIENCE
影响因子:
5.3
作者:
[Leith, Noah T., Macchiano, Anthony, Fowler-Finn, Kasey D.]
通讯作者:
Fowler-Finn, Kasey D.
DOI:
10.1111/jeb.13506
发表时间:
2019-07-30
期刊:
JOURNAL OF EVOLUTIONARY BIOLOGY
影响因子:
2.1
作者:
[Jocson, Dowen Mae, I, Smeester, Morgan E., Fowler-Finn, Kasey D.]
通讯作者:
Fowler-Finn, Kasey D.
Harvesters (Arachnida: Opiliones) mate more at cooler temperatures, but the effect of temperature on mating varies across years
收割机(蛛形纲:Opiliones)在较低温度下交配较多,但温度对交配的影响因年份而异
DOI:
10.1111/eth.13311
发表时间:
2022
期刊:
Ethology
影响因子:
1.7
作者:
[Fowler‐Finn, Kasey D., Johnson, Todd]
通讯作者:
Johnson, Todd
共 7 条
Collaborative Research: Competition for acoustic space as a driver of species diversity in vibrationally-signaling insects
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批准号:2313964
-
项目类别:Standard Grant
-
资助金额:$20.0万
-
财政年份:2023
-
负责人:Kasey Fowler-Finn
-
依托单位:
国内基金
海外基金
发展/减排路径(SSPs/RCPs)下中国未来人口迁移与集聚时空演变及其影响
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批准号:19ZR1415200
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项目类别:省市级项目
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资助金额:--
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批准年份:2019
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负责人:夏海斌
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依托单位:
美洲大蠊药材养殖及加工过程中化学成分动态变化与生物活性的相关性研究
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批准号:81060329
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项目类别:地区科学基金项目
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资助金额:26.0万元
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批准年份:2010
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负责人:肖培云
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依托单位:
用多重假设检验方法来研究方差变点问题
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批准号:10901010
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项目类别:青年科学基金项目
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资助金额:16.0万元
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批准年份:2009
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负责人:徐敏亚
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依托单位: