Dimensions: Collaborative Research: Connecting the proximate mechanisms responsible for organismal diversity to the ultimate causes of latitudinal gradients in species richness.
Dimensions: Collaborative Research: Connecting the proximate mechanisms responsible for organismal diversity to the ultimate causes of latitudinal gradients in species richness.
批准号:
1342712
负责人:
Sean Mullen
金额:
$57.4万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-01-01 至 2018-12-31
中文摘要
物种多样性的纬度梯度是自然界中最显著的生物地理格局之一,几乎所有类群的物种丰富度都在赤道地区达到峰值。尽管在理解物种多样性纬度梯度的起源和维持方面付出了相当大的努力,但存在许多潜在的相互作用、非互斥的假设,没有一个单一的凌驾一切的解释出现。然而,多种假设将纬度多样性梯度与温带和热带环境之间生物相互作用强度的假定梯度联系起来。虽然生物相互作用被认为在多样性的起源和维持中起着重要作用,并可能推动热带地区适应和物种形成的速度增加,但这一假设实际上尚未得到验证。为了弥补这一差距,将对快速多样化的蝴蝶谱系在颜色、视觉和嗅觉方面的适应性表型变化的进化机制进行全面分析,并进行实地研究。了解形成生物多样性时空格局的生态和进化过程是生物学的中心目标,也是濒危物种管理的一个日益重要的方面,特别是在全球气候快速变化的时代。这一提议将美国和拉丁美洲的生物多样性研究人员联系起来,并将导致持续的国际合作;通过有针对性的招聘,扩大妇女和少数民族进入STEM领域的机会;各机构和国家的大量就业机会;提高公众对生物多样性科学和全球生物多样性威胁的认识。
英文摘要
The latitudinal gradient in species diversity is one of the most striking biogeographic patterns in nature, with species richness peaking in equatorial regions for nearly all groups. Despite considerable effort to understand the origin and maintenance of latitudinal gradients in species diversity, a multitude of potentially interacting, non-mutually exclusive hypotheses exist, and no single over-riding explanation has emerged. However, multiple hypotheses link the latitudinal diversity gradient to a presumed gradient in the strength of biotic interactions between temperate and tropical environments. While biotic interactions are believed to play a major role in the origin and maintenance of diversity and may drive increased rates of adaptation and speciation in tropical regions, this hypothesis remains virtually untested. To bridge this gap, a comprehensive analysis of the evolutionary mechanisms underlying adaptive phenotypic variation in color, vision, and smell across a rapidly diversifying lineage of butterflies will be performed together with field-studies. Understanding the ecological and evolutionary processes that shape temporal and spatial patterns of biodiversity is a central goal of biology, and an increasingly important facet of the endangered species management, particularly in a time of rapid global climate change. This proposal links biodiversity researchers across the US and Latin America, and will lead to sustained international collaboration; broadened access to STEM fields for women and minorities through targeted recruitment; substantial employment opportunities across institutions and countries; and an enhanced public understanding of biodiversity science and threats to global biodiversity.
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会议论文
Collaborative Research: cis-Regulatory architecture of color pattern convergence
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批准号:2242864
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项目类别:Standard Grant
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资助金额:$71.58万
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财政年份:2023
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负责人:Sean Mullen
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依托单位:
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依托单位:
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财政年份:2010
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负责人:Sean Mullen
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依托单位:
海外基金