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相关概念视频

Convergent Evolution01:54

Convergent Evolution

Evolution shapes the features of organisms over time, ensuring that they are suited for the environments in which they live. Sometimes, selection pressure leads to the rise of similar but unrelated adaptations in organisms with no recent common ancestors, a process known as convergent evolution.The structures that arise from convergent evolution are called analogous structures. They are similar in function even if they are dissimilar in structure. Further, structures can be analogous while also...
Speciation Rates01:07

Speciation Rates

Speciation can proceed at markedly different rates, and evolutionary biologists commonly describe these differences through the models of gradualism and punctuated equilibrium. Both patterns explain how new species arise, but they differ in the tempo and continuity of evolutionary change. In both cases, evolutionary change arises from heritable variation within populations, with natural selection often shaping traits that improve survival and reproduction under specific environmental conditions.
What is Evolutionary History?02:35

What is Evolutionary History?

Scientists record evolutionary history by analyzing fossil, morphological, and genetic data. The fossil record documents the history of life on Earth and provides evidence for evolution. However, both fossil and living organisms offer evidence that outlines Earth’s evolutionary history.Phylogenetic trees illustrate the evolutionary relationships among these organisms. Scientists infer organisms’ common ancestry by evaluating shared morphological and genetic characteristics. Together, the fossil...
The Fossil Record02:56

The Fossil Record

The fossil record documents only a small fraction of all organisms that have ever inhabited Earth. Fossilization is a rare process, and most organisms never become fossils. Moreover, the fossil record only exhibits fossils that have been discovered. Nevertheless, sedimentary rock fossils of long-lived, abundant, hard-bodied organisms dominate the fossil record. These fossils offer valuable information, such as an organism's physical form, behavior, and age. Studying the fossil record helps...
Evolutionary Relationships through Genome Comparisons02:54

Evolutionary Relationships through Genome Comparisons

Genome comparison is one of the excellent ways to interpret the evolutionary relationships between organisms. The basic principle of genome comparison is that if two species share a common feature, it is likely encoded by the DNA sequence conserved between both species. The advent of genome sequencing technologies in the late 20th century enabled scientists to understand the concept of conservation of domains between species and helped them to deduce evolutionary relationships across diverse...
The Evidence for Evolution02:55

The Evidence for Evolution

Genetic variations accumulating within populations over generations give rise to biological evolution. Evolutionary changes can result in the formation of novel varieties and entire new species. These changes are responsible for the diverse forms of life inhabiting the planet. The evidence for evolution suggests that all living organisms descended from common ancestors.The collection of fossils within sedimentary rocks give a record of common ancestry and often depicts the history of evolution.

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相关实验视频

Updated: Jul 8, 2026

In Situ Hybridization Techniques for Paraffin-Embedded Adult Coral Samples
07:24

In Situ Hybridization Techniques for Paraffin-Embedded Adult Coral Samples

Published on: August 31, 2018

阿瓦隆爆炸:埃迪亚卡拉形态空间的演变

Bing Shen1, Lin Dong, Shuhai Xiao

  • 1Department of Geosciences, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061, USA.

Science (New York, N.Y.)
|January 5, 2008
PubMed
概括

早期的埃迪亚卡拉化石显示了复杂的生命形态的全部范围. 后来的组合具有类似的形态空间,但在物种多样性和形态变异方面有所不同.

科学领域:

  • 古生物学的古生物学
  • 进化生物学 进化生物学
  • 地质地质地质地质地质地

背景情况:

  • 埃迪亚卡拉化石 (575-542亿年前) 是已知的最早的复杂宏观生命.
  • 这些古代生物的形态进化仍然不太了解.

研究的目的:

  • 量化分析埃迪亚卡拉化石集合的形态历史.
  • 了解多样性变化和形态空间占用随着时间的推移.

主要方法:

  • 对埃迪亚卡拉化石集合的全面定量分析.
  • 对Avalon,白海和Nama组合的比较研究.

主要成果:

  • 最古老的阿瓦隆组合 (575-565万年前) 展示了整个埃迪亚卡拉形态空间范围.
  • 随后的白海和纳玛群体占据了类似的形态空间,但具有不同的人口结构.
  • 在白海组合中,分类学丰富度增加,在纳玛组合中减少.
  • 形态变异与多样性变化相反转移,而形态空间保持不变.

结论:

  • 埃迪亚卡拉形态空间很早就建立了,并且保持相对恒定的状态.

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  • 多样性动态,而不是形态空间扩张,是以后埃迪亚卡拉组合的特征.
  • 埃迪亚卡拉生命早期的形态空间扩张可能与晚期的坎布里亚爆炸有着共同的机制.