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深度同类学和进化新奇的起源
Neil Shubin1, Cliff Tabin, Sean Carroll
1Department of Organismal Biology and Anatomy, University of Chicago, 1027 East 57th Street, Chicago, Illinois 60637, USA. nshubin@uchicago.edu
Nature
|February 13, 2009
概括
新的解剖结构是从先前存在的解剖结构进化而来的,而不是 de novo. 发育遗传学和进化生物学表明,古代遗传调节电路的修改支持了各种动物特征的起源.
科学领域:
- 进化发育生物学 进化发育生物学
- 发育遗传学的发展遗传学.
- 古生物学 古生物学 古生物学
背景情况:
- 新型解剖结构的起源是进化生物学中一个长期存在的问题.
- 查尔斯·达尔文对眼睛,四肢和角等复杂结构的进化感到好奇.
研究的目的:
- 为了调查新的解剖结构是否出现 de novo 或从先前存在的结构演变.
- 了解动物关键特征发展背后的进化机制.
主要方法:
- 对发育遗传学的进展进行分析.
- 古生物学数据的整合.
- 进化发育生物学原理的应用.
主要成果:
- 动物眼睛,四足肢和甲虫角等关键结构是从先前存在的结构进化而来的.
- 古代遗传调节电路的修改是主要的机制.
- 发育过程中的深层同质性为多样化的结构进化提供了基础.
结论:
- 解剖结构不是从新出现的,而是通过对现有的遗传和发育途径的修改而演变.
- 超级动物之间的深层同质性促进了多样化的结构的独立进化.
相关概念视频
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Convergent Evolution
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The duplicated copies of the gene are called Paralogs. Paralogs with similar sequences and functions form a gene family. Across several species, a large number of gene families are characterized.
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Evolution of New Traits in Microbes
Microorganisms evolve rapidly due to their large population sizes and short generation times, often exhibiting measurable changes within days under laboratory conditions. Natural selection acts on standing genetic variation, enabling the retention and amplification of beneficial traits that confer fitness advantages in changing environments.Adaptive Pigment Regulation in RhodobacterIn Rhodobacter, a genus of purple non-sulfur bacteria, light-harvesting pigments such as bacteriochlorophyll and...

