Ediacaran constraints on early animal evolution
Ediacaran constraints on early animal evolution
批准号:
NE/S014756/1
负责人:
Emily Mitchell
金额:
$79.13万
依托单位:
依托单位国家:
英国
项目类别:
Fellowship
财政年份:
2019
资助国家:
英国
项目状态:
未结题
起止时间:
2019 至 --
中文摘要
动物第一次出现在化石记录中是在埃迪卡拉纪时期(6.31亿-5.41亿年前),但动物进化真正开始需要近5000万年的时间,动物生命的快速多样化被称为寒武纪大爆发(~540 Ma)。埃迪卡拉生物的生物学和生态学并没有得到很好的解决,因为他们的身体规划与今天的生命和化石记录中的其他地方都有根本的不同。因此,人们对埃迪卡拉纪期间竞争和繁殖的关键进化过程是如何运作的知之甚少,因此也不清楚这些因素在动物进化相对缓慢的开始中扮演了什么角色。这项建议的首要目标是了解埃迪卡拉纪这些过程的相互作用,以及它们是如何影响早期动物进化的。生态统计对于研究埃迪卡拉纪古生物学非常有价值,因为整个群落都被记录在化石记录中,为使用通常只应用于生命系统的技术打开了大门。这些埃迪卡拉生物生活的多张快照之所以存在,是因为数以千计的固定生物在它们生活的地方被杀死并保存下来。这种原地保存意味着化石在岩石表面的位置概括了它们的生活史:它们如何繁殖、相互作用以及与环境的相互作用。我之前的工作利用空间分析来重建埃迪卡拉动物中繁殖和竞争的这些关键进化过程是如何运作的,发现至少有一个物种主要是无性繁殖,产生了克隆群体,物种之间的竞争相对较少。在这项提案中,我将通过解决三个关键问题来研究埃迪卡拉克隆群体对早期动物进化的影响:1)埃迪卡拉低竞争率是克隆群体优势的结果吗?我将确定埃迪卡拉群落被克隆群体主导的程度,以及这些克隆群体内部的相互联系是否可能导致资源共享,减少竞争。克隆群体的竞争可能会减少,因为如果资源可以在群体内共享,个体就不会在竞争中胜过邻近的克隆人。2)埃迪卡拉生态系统与现代生态系统有根本的不同吗?埃迪卡拉群落的竞争水平相对较低,这与现代深海系统形成了鲜明对比,在现代深海系统中,竞争无处不在,大多数物种被认为是相互竞争的。通过分析现代深海群落的细微尺度的群落结构,并将这些细节与埃迪卡拉群落进行比较,我将确定埃迪卡拉群落与现代群落的不同之处,并弄清楚这种差异是由于克隆群体的盛行,还是仅仅是不同环境的结果。3)埃迪卡拉人的进化速度从根本上说是缓慢的吗?在确定了克隆群体的流行及其对竞争和群落结构的影响后,我将把这些信息输入到特征进化和遗传多样性的理论模型中。通过比较这些模型在埃迪卡拉人和现代群落之间的差异,我将调查任何差异对进化速度的影响,以确定埃迪卡拉人的进化速度是否因为广泛的克隆而降低,从而限制了早期动物的进化。
英文摘要
Animals first appear in the fossil record during the Ediacaran time period (631-541 million years ago), but it takes almost 50 million years for animal evolution to really take off, with a rapid diversification of animal life known as the Cambrian Explosion (~540 Ma). The biology and ecology of Ediacaran organisms are not well resolved because their body-plans are fundamentally different to both life today and elsewhere in the fossil record. Consequently, little is known about how the key evolutionary processes of competition and reproduction operate during the Ediacaran, and so it is not clear what role these factors play in the relatively slow start to animal evolution. The overarching objective of this proposal is to understand the interplay of these processes during the Ediacaran and how they influenced early animal evolution. Ecological statistics are incredibly valuable for studying Ediacaran palaeontology because entire communities are captured in the fossil record, opening the door for the use of techniques normally only applied to living systems. These multiple "snap-shots" of Ediacaran life exist because thousands of immobile organisms were killed and preserved where they lived. This in-situ preservation means that the positions of the fossils on their rock surface encapsulate their life-history: how they reproduced, interacted with each other and with their environment. My previous work utilised spatial analyses to reconstruct how these key evolutionary processes of reproduction and competition operated in the Ediacaran, finding at least one species was dominantly asexual, producing colonies of clones, and that competition between species was relatively rare. In this proposal I will investigate the consequences of Ediacaran clonal colonies on early animal evolution by addressing three key questions: 1) Are low Ediacaran competition rates a consequence of the dominance of clonal colonies? I will establish the extent to which Ediacaran communities were dominated by colonies of clones, and whether the inter-connectedness within these clonal colonies could have led to resource sharing, reducing competition. Competition is likely reduced for clonal colonies because if resources can be shared within a colony, there is no benefit to individuals out-competing their neighbouring clone. 2) Are Ediacaran ecosystems fundamentally different to modern ones? The relatively low levels of competition in Ediacaran communities stands in stark contrast to modern deep-sea systems, where competition is pervasive, and most species are thought to compete with each other. By analysing the fine-scale community structure of modern deep-sea communities, and comparing these details to Ediacaran communities, I will establish how the Ediacaran was different to the modern, and work out whether such differences were due to the prevalence of clonal colonies, or merely the result of differing environments. 3) Are Ediacaran evolutionary rates fundamentally slow? Having established the prevalence of clonal colonies and their impact on competition and community structure, I will feed this information into theoretical models of trait evolution and genetic diversification. By comparing how these models differ between the Ediacaran and modern communities, I will investigate the repercussions of any differences on evolutionary rates to establish whether Ediacaran evolutionary rates were reduced because of widespread clonality, thus limiting early animal evolution.
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DOI:
10.1371/journal.pbio.3001289
发表时间:
2022-05
期刊:
PLoS biology
影响因子:
9.8
作者:
[]
通讯作者:
DOI:
10.1144/jgs2021-030
发表时间:
2021-08-02
期刊:
JOURNAL OF THE GEOLOGICAL SOCIETY
影响因子:
2.7
作者:
[Boddy, Catherine E., Mitchell, Emily G., Liu, Alexander G.]
通讯作者:
Liu, Alexander G.
DOI:
10.1111/sed.12947
发表时间:
2021-10-18
期刊:
SEDIMENTOLOGY
影响因子:
3.5
作者:
[Allport, Hamilton A., Davies, Neil S., Herron, Sean T.]
通讯作者:
Herron, Sean T.
The rangeomorph Pectinifrons abyssalis: Hydrodynamic function at the dawn of animal life.
Rangeomorph Pectinifrons abyssalis:动物生命初期的流体动力学功能。
DOI:
10.17863/cam.95699
发表时间:
2023
期刊:
影响因子:
--
作者:
[Darroch S]
通讯作者:
Darroch S
Facilitating corals in an early Silurian deep-water assemblage
促进早期志留世深水组合中的珊瑚
DOI:
10.1111/pala.12527
发表时间:
2021
期刊:
Palaeontology
影响因子:
2.6
作者:
[Dhungana A]
通讯作者:
Dhungana A
国内基金
海外基金
Financial Constraints in China
and Their Policy Implications
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项目类别:外国优秀青年学 者研究基金项目
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资助金额:--
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批准年份:2024
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负责人:Jake Zhao
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依托单位:
资金约束供应链中金融和运营集成决策研究
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批准号:70872012
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项目类别:面上项目
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资助金额:22.0万元
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批准年份:2008
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负责人:荆兵
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依托单位:
协同模板中的约束信息可视化
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批准号:60573174
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项目类别:面上项目
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资助金额:6.0万元
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批准年份:2005
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负责人:刘晓平
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依托单位: