Collaborative Research: Evolving the mammalian forelimb: modeling musculoskeletal transformation in the forerunners of mammals
Collaborative Research: Evolving the mammalian forelimb: modeling musculoskeletal transformation in the forerunners of mammals
批准号:
1754502
负责人:
Kenneth Angielczyk
金额:
$45.62万
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
项目状态:
已结题
起止时间:
2018-04-01 至 2024-03-31
中文摘要
哺乳动物的一个独特特征是它们有许多不同的前肢形状和功能,包括用于跑步、攀登、挖掘、游泳和飞行的非常独特的前肢。没有其他动物的前肢如此多样化,哺乳动物前肢的灵活性似乎是该群体成功的关键原因。化石记录中发现的第一批哺乳动物近亲已有3亿多年的历史,与现存的哺乳动物形成了鲜明的对比:它们的前肢显示出非常有限的形状和功能。哺乳动物进化上灵活的前肢是如何从这样看似受限的祖先进化而来的,前肢的变化是否增加了哺乳动物探索新生活方式的能力?这项研究项目将使用最先进的技术,以及来自化石和现代动物的大量数据,重建古代哺乳动物近亲的前肢结构和功能,并测试前肢的变化是否与其生态多样性的增加有关。这一结果将加深我们对哺乳动物一个典型特征的进化以及它在蝙蝠、鼹鼠、鲸鱼、马和人类等独特动物进化中的作用的理解。这项研究将通过屡获殊荣的YouTube频道“The Brain Scoop”制作的一系列教育在线视频进行传播。该系列将包括三集描述研究的不同阶段,两集描述结果及其意义。观众对这些视频的反应将被用来评估在线视频作为科学教育工具的有效性。现代哺乳动物表现出惊人的生态多样性,这是由前肢突起来发挥新功能(如飞行、跑步、游泳和挖掘)所支撑的。相比之下,哺乳动物的祖先-非哺乳动物的突触体-是广义的陆地四足动物,其生态范围似乎有限。哺乳动物风格的前肢,包括完全活动的肩胛骨,腹向的球窝肩关节,以及直立的肢体姿势和运动,是祖先突触肌肉骨骼系统深刻重组的结果。从大量的突触体化石记录中,这个项目整合了一套不同的方法学技术来精确定位前肢的形态功能转换如何影响突触体分支的表型进化的节奏和模式。严格的形态计量学分析将量化前肢骨骼元素的形状差异,并识别形态上的主要变化。尖端的生物力学分析将把形态转变与功能转变联系起来。而且,先进的系统发育建模技术将确定形态和功能的变化是否会导致多样化比率的增加。主要产品包括新的Synapsida综合元树,一个广泛的几何形态数据集,以及处于Synapsid进化的系统发育信息阶段的10个分类群的3D肌肉骨骼模型。结合起来,这个项目将建立一个强大的比较框架来量化灭绝动物的肌肉骨骼变化,并提供一个具有重要适应价值的综合解剖学模块的独特进化视角。该奖项反映了NSF的法定使命,并通过使用基金会的智力优势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
A unique feature of mammals is their many different forelimb shapes and functions, including highly distinct forelimbs for running, climbing, digging, swimming, and flying. No other group of animals has such diverse forelimbs, and the flexibility of mammal forelimbs seems to be a key reason for the group's success. The first mammal relatives found in the fossil record are over 300 million years old, and are a striking contrast to living mammals: their forelimbs show a very limited range of shapes and functions. How did the evolutionarily-flexible forelimbs of mammals evolve from such seemingly constrained ancestors, and did changes to the forelimb increase the ability of mammals to explore new ways of life? This research project will use state-of-the-art techniques, and extensive data from fossils and modern animals, to reconstruct forelimb structure and function in ancient mammal relatives, and to test whether changes to the forelimb correlate with increases in their ecological diversity. The results will deepen our understanding of the evolution of a quintessential characteristic of mammals, and its role in the evolution of animals as distinct as bats, moles, whales, horses, and humans. Dissemination of the research will occur through a series of educational online videos produced by the award-winning YouTube Channel "The Brain Scoop". The series will include three episodes describing different stages of the research, and two episodes that describe the results and their significance. Audience responses to the videos will be used to evaluate the effectiveness of online videos as a tool for science education.Modern mammals display remarkable ecomorphological diversity, which is underpinned by exaptation of the forelimb to serve novel functions (e.g. flying, running, swimming, and digging). In contrast, the ancestors of mammals - the non-mammalian synapsids - are generalized terrestrial tetrapods with seemingly limited ecological scope. The mammalian-style forelimb, including a fully mobile scapula, ventrally oriented ball-and-socket shoulder joint, and "upright" limb posture and movement, is the result of a profound reorganization of the ancestral synapsid musculoskeletal system. Drawing from the extensive synapsid fossil record, this project integrates a diverse set of methodological techniques to pinpoint how morphofunctional transformation of the forelimb influenced the tempo and mode of phenotypic evolution of the synapsid clade. Rigorous morphometric analyses will quantify shape disparity in forelimb skeletal elements and identify major shifts in morphology. Cutting-edge biomechanical analyses will correlate morphological shifts with functional transformation. And, advanced phylogenetic modeling techniques will determine whether shifts in morphology and function resulted in increases in diversification rates. Key products include a new comprehensive metatree of Synapsida, an extensive geometric morphometric dataset, and 3D musculoskeletal models of ten taxa at phylogenetically informative stages of synapsid evolution. Combined, this project will build a robust comparative framework to quantify musculoskeletal transformations in extinct animals and provide a unique evolutionary perspective on an integrated anatomical module of significant adaptive value.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(13)
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Morphological disparity across the synapsid forelimb: sub-order-level patterns across 80 million years of synapsid evolution
突触类前肢的形态差异:突触类8000万年进化过程中的亚目水平模式
DOI:
--
发表时间:
2018
期刊:
Society of Vertebrate Paleontology 2018 Meeting Program and Abstracts
影响因子:
--
作者:
[Lungmus, Jacqueline A.
Angielczyk]
通讯作者:
Lungmus, Jacqueline A.
Angielczyk
The influence of ancestral body size on ecomorphological trebds in synapsid radiations
祖先体型大小对突弓类辐射生态形态三足的影响
DOI:
--
发表时间:
2021
期刊:
The Society of Vertebrate Paleontology Virtual Meeting Conference Program. 81st Annual Meeting.
影响因子:
--
作者:
[Hellert, S., Lloyd, G., Grossnickle, D., Angielczyk, K. D.]
通讯作者:
Angielczyk, K. D.
Can Geometric Morphometric Analyses of Limb Shape Reveal Ecomorphological Patterns Across the Evolutionary History of Synapsida?
四肢形状的几何形态分析能否揭示合弓纲进化史上的生态形态模式?
DOI:
--
发表时间:
2019
期刊:
Journal of morphology
影响因子:
1.5
作者:
[Lungmus, J. K., Angielczyk, K. D.]
通讯作者:
Angielczyk, K. D.
Adaptive landscapes reveal complex evolution of forelimb posture in stem mammals (Synapsida)
适应性景观揭示了干哺乳动物(Synapsida)前肢姿势的复杂进化
DOI:
--
发表时间:
2023
期刊:
Integrative and comparative biology
影响因子:
2.6
作者:
[Brocklehurst, Robert, Mercado, Magdalen, Pierce, Stephanie]
通讯作者:
Pierce, Stephanie
Shoulder joint range of motion in fossil synapsids and the origins of mammalian locomotor diversity
化石合弓动物的肩关节运动范围和哺乳动物运动多样性的起源
DOI:
--
发表时间:
2020
期刊:
2020
影响因子:
--
作者:
[Brocklehurst, R. J.]
通讯作者:
Brocklehurst, R. J.
共 13 条
Collaborative Research: Terrestrial Late Permian to Early Triassic Earth Systems in NE Pangea: Insights into the Tempo, Effects, and Causes of the End-Permian Mass Extinction
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批准号:1714829
-
项目类别:Standard Grant
-
资助金额:$25.46万
-
财政年份:2017
-
负责人:Kenneth Angielczyk
-
依托单位:
Collaborative Research: Functional evolution of the mammalian backbone: insights from the forerunners of mammals
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批准号:1524938
-
项目类别:Continuing Grant
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资助金额:$9.56万
-
财政年份:2015
-
负责人:Kenneth Angielczyk
-
依托单位:
ELT: Collaborative Research: Restructuring of terrestrial environments following the Permian-Triassic mass extinction
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批准号:1337291
-
项目类别:Continuing Grant
-
资助金额:$26.0万
-
财政年份:2013
-
负责人:Kenneth Angielczyk
-
依托单位:
DISSERTATION RESEARCH: Inferring ecology in fossil terrestrial ecosystems
-
批准号:1311389
-
项目类别:Standard Grant
-
资助金额:$1.5万
-
财政年份:2013
-
负责人:Kenneth Angielczyk
-
依托单位:
CSBR: Natural History Collections: Equipment for The Field Museum's Fossil Mammal Collection Range for the Accommodation of Nonmammalian Synapsids and the Turnbull Collection
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批准号:1203530
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项目类别:Continuing Grant
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资助金额:$50.0万
-
财政年份:2012
-
负责人:Kenneth Angielczyk
-
依托单位:
Postdoctoral Research Fellowship in Interdisciplinary Informatics for FY 2003
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批准号:0306158
-
项目类别:Fellowship Award
-
资助金额:$10.0万
-
财政年份:2003
-
负责人:Kenneth Angielczyk
-
依托单位:
国内基金
海外基金
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负责人:程磊
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批准号:30824808
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Research on the Rapid Growth Mechanism of KDP Crystal
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负责人:滕冰
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