Constraining the origins of the Metazoa: Insights from ichnology, palaeoecology and taphonomy
Constraining the origins of the Metazoa: Insights from ichnology, palaeoecology and taphonomy
批准号:
NE/L011409/1
负责人:
Alexander Liu
金额:
$62.76万
依托单位:
依托单位国家:
英国
项目类别:
Fellowship
财政年份:
2014
资助国家:
英国
项目状态:
已结题
起止时间:
2014 至 --
中文摘要
地球上的生命经历了一段非凡的历史,在这段历史中,它经历了气候灾难,发展了令人难以置信的生物创新,并在生物不断适应不断变化的环境时幸存下来,经历了灭绝和辐射的循环。地球历史上最戏剧性的时期之一是大约7亿-5.41亿年前(Ma)的新元古代晚期,它见证了从大雪球地球全球冰川中的生物恢复,以及第一批动物的进化和辐射。描述和解释动物的进化是目前古生物学最热门的领域之一。它不仅激发了哲学上的兴趣,还提供了丰富的科学信息,可以促进我们对进化过程以及在重大环境变化时生命与地球之间的相互作用的理解。传统上,科学家认为动物是在寒武纪541 Ma的底部突然而迅速地进化的。20世纪40年代和50年代,人们在前寒武纪岩石中发现了复杂的化石印记,这对这种观点提出了挑战。前寒武纪岩石是一套大型多细胞生物群,后来被称为埃迪卡拉纪生物群。他们的发现推动了一种范式的转变,即从寒武纪底部快速的寒武纪大爆发模式,到动物进化跨越数千万年的埃迪卡拉纪到寒武纪的转变。埃迪卡拉纪(635-541 Ma)化石目前在全球50多个地点已知,包括100多个不同的物种,但它们仍然是地质记录中最神秘和最有争议的化石之一。由于它们是作为软体生物的印记保存下来的,而不是作为贝壳、骨骼或牙齿保存下来的,而且这些化石的形状和结构与任何活着的有机体的形状和结构都不同,因此科学家们对这些化石最初可能是什么存在很大分歧。然而,一种新的观点认为,埃迪卡拉生物群可能包括一些最早的真正动物的遗骸。我的研究探索了动物的最初进化,研究了它们出现的原因,以及它们的出现对海洋生物栖息地中其他生物的影响。在这个项目中,我的目标是解决埃迪卡拉生物与当今活着的现代动物之间的关系,并调查世界各地埃迪卡拉化石的保存方式,以提高我们对动物进化的时间和进程的理解。通过将对埃迪卡拉纪化石、沉积物和环境的详细研究与实验工作相结合,重建5.8亿年前生物化石形成的途径,我希望约束化石保存的模型,并为生物最初组成的组织提供新的见解。我还将调查埃迪卡拉时期动物运动的化石记录,因为近年来这已成为动物存在的关键证据。我获得的结果将被提供给分子研究,这将允许更好地预测主要动物群体如何以及何时在地球历史的这个关键时刻分化和进化。综上所述,拟议的项目将通过提高我们对埃迪卡拉生物和环境的理解,严格解决动物何时和为什么进化的问题。它将揭示有关埃迪卡拉海洋生态系统的新信息,最重要的是,将为我们提供更清晰的图像,了解早期动物进化的步骤。
英文摘要
Life on Earth has experienced a remarkable history, in which it has endured climatic catastrophes, developed incredible biological innovations, and survived cycles of extinction and radiation as organisms have continually adapted to their changing environment. One of the most dramatic intervals of Earth history is the late Neoproterozoic Era some 700-541 million years ago (Ma), which witnessed amongst other things the biological recovery from the great Snowball Earth global glaciations, and the evolution and radiation of the first animals. Characterizing and explaining the evolution of animals is currently one of the most topical areas in palaeontology. It not only excites philosophical interest, but also provides a wealth of scientific information that can advance our understanding of evolutionary processes and the interactions between life and the planet at times of major environmental change. Traditionally, scientists considered animals to have evolved suddenly and rapidly at the base of the Cambrian period, 541 Ma. That view was challenged in the 1940s and 1950s by the discoveries of complex fossilized impressions in rocks of Precambrian age - a suite of large, multi-cellular organisms that have become known as the Ediacaran biota. Their discovery prompted a paradigm shift from a rapid "Cambrian Explosion" model of animal evolution at the base of the Cambrian, to an "Ediacaran-to-Cambrian transition" whereby animal evolution extended over tens of millions of years.Ediacaran (635-541 Ma) fossils are currently known from over 50 localities worldwide and include more than 100 different species, but they remain some of the most enigmatic and controversial fossils in the geological record. Since they are preserved as impressions of soft-bodied organisms rather than as shells, bones, or teeth, and the shapes and structures of the fossils differ from those of any living organisms, there has been much disagreement amongst scientists about what the fossils might have originally been. An emerging view, however, is that the Ediacaran biota may include the remains of some of the first true animals.My research explores the initial evolution of animals, examining the causes for their emergence, and the consequences of their appearance for other organisms in marine habitats. In this project I aim to resolve the relationships between Ediacaran organisms and modern animals alive today, and investigate the ways in which Ediacaran fossils are preserved around the world, in order to improve our understanding of the timing and progression of animal evolution. By combining detailed study of Ediacaran fossils, sediments, and environments with experimental work to recreate the pathways through which organisms were fossilized 580 million years ago, I hope to constrain models for fossil preservation, and provide new insights into the tissues the organisms were originally composed of. I will also investigate the fossil record of animal movement in the Ediacaran period, since in recent years this has become a key piece of evidence for the presence of animals. Results I obtain will be fed into molecular studies, which will allow better prediction of how and when the major animal groups diverged and evolved at this critical point in Earth history.Taken together, the proposed project will rigorously address the questions of when and why animals evolved by improving our understanding of Ediacaran organisms and environments. It will reveal new information about Ediacaran marine ecosystems, and, most importantly, will provide us with a clearer picture of the steps involved in early animal evolution.
期刊论文(10)
专著(0)
科研奖励(0)
会议论文
登录
查看更多内容
DOI:
10.1016/j.gr.2014.11.002
发表时间:
2015-06
期刊:
Gondwana Research
影响因子:
6.1
作者:
[A. Liu;C. Kenchington;E. Mitchell]
通讯作者:
A. Liu;C. Kenchington;E. Mitchell
The dynamic influence of microbial mats on sediments: fluid escape and pseudofossil formation in the Ediacaran Longmyndian Supergroup, UK
微生物垫对沉积物的动态影响:英国埃迪卡拉龙明典超群中的流体逃逸和假化石形成
DOI:
10.1144/jgs2015-036
发表时间:
2015
期刊:
Journal of the Geological Society
影响因子:
2.7
作者:
[Menon L]
通讯作者:
Menon L
DOI:
10.1016/j.earscirev.2016.01.005
发表时间:
2016-03-01
期刊:
EARTH-SCIENCE REVIEWS
影响因子:
12.1
作者:
[Davies, Neil S., Liu, Alexander G., Miller, Randall F.]
通讯作者:
Miller, Randall F.
DOI:
10.1111/brv.12379
发表时间:
2018-05
期刊:
Biological reviews of the Cambridge Philosophical Society
影响因子:
--
作者:
[Dunn FS, Liu AG, Donoghue PCJ]
通讯作者:
Donoghue PCJ
Constraining the origins of the Metazoa: Insights from ichnology, palaeoecology and taphonomy
-
批准号:NE/L011409/2
-
项目类别:Fellowship
-
资助金额:$40.64万
-
财政年份:2016
-
负责人:Alexander Liu
-
依托单位:
海外基金