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机遇与必然:形态复杂性与多样性的演化

Chance and necessity: the evolution of morphological complexity and diversity.

作者信息

Carroll S B

机构信息

Howard Hughes Medical Institute and Laboratory of Molecular Biology, University of Wisconsin-Madison, 53706-1596, USA.

出版信息

Nature. 2001 Feb 22;409(6823):1102-9. doi: 10.1038/35059227.

Abstract

The primary foundation for contemplating the possible forms of life elsewhere in the Universe is the evolutionary trends that have marked life on Earth. For its first three billion years, life on Earth was a world of microscopic forms, rarely achieving a size greater than a millimetre or a complexity beyond two or three cell types. But in the past 600 million years, the evolution of much larger and more complex organisms has transformed the biosphere. Despite their disparate forms and physiologies, the evolution and diversification of plants, animals, fungi and other macroforms has followed similar global trends. One of the most important features underlying evolutionary increases in animal and plant size, complexity and diversity has been their modular construction from reiterated parts. Although simple filamentous and spherical forms may evolve wherever cellular life exists, the evolution of motile, modular mega-organisms might not be a universal pattern.

摘要

思考宇宙中其他地方可能存在的生命形式的主要依据是地球上生命所呈现出的进化趋势。在最初的30亿年里,地球上的生命都是微观形式,很少有超过一毫米大小的,其复杂程度也很少超过两三种细胞类型。但在过去的6亿年里,更大、更复杂的生物体的进化改变了生物圈。尽管植物、动物、真菌和其他宏观生物形式各异、生理特征不同,但其进化和多样化遵循着相似的全球趋势。动植物在大小、复杂性和多样性方面进化增加的最重要特征之一,是它们由重复部分构成的模块化结构。虽然无论细胞生命存在于何处,简单的丝状和球形形式都可能进化,但能运动的、模块化的巨型生物体的进化可能并非普遍模式。

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