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个体生物是什么?一个多层次选择的视角。

What is an individual organism? A multilevel selection perspective.

机构信息

Department of Biology, Stanford University, Stanford, California, 94305-5020, USA.

出版信息

Q Rev Biol. 2010 Dec;85(4):447-72. doi: 10.1086/656905.

Abstract

Most biologists implicitly define an individual organism as "one genome in one body." This definition is based on physiological and genetic criteria, but it is problematic for colonial organisms. We propose a definition based instead on the evolutionary criteria of alignment of fitness, export of fitness by germ-soma specialization, and adaptive functional organization. We consider how these concepts apply to various putative individual organisms. We conclude that complex multicellular organisms and colonies of eusocial insects satisfy these three criteria, but that, in most cases (with at least one notable exception), colonies of modular organisms and genetic chimeras do not. While species do not meet these criteria, they may meet the criteria for a broader concept--that of an evolutionary individual--and sexual reproduction may be a species-level exaptation for enhancing evolvability. We also review the costs and benefits of internal genetic heterogeneity within putative individuals, demonstrating that high relatedness is neither a necessary nor a sufficient condition for individuality, and that, in some cases, genetic variability may have adaptive benefits at the level of the whole.

摘要

大多数生物学家在潜意识中定义单个生物体为“一个基因组在一个个体中”。这个定义基于生理和遗传标准,但对于群居生物来说存在问题。我们提出了一个基于适应性、生殖体专业化的适合度输出、适应性功能组织等进化标准的定义。我们考虑了这些概念如何适用于各种假定的单个生物体。我们的结论是,复杂的多细胞生物体和真社会性昆虫的群体满足这三个标准,但在大多数情况下(至少有一个显著的例外),模块化生物体和遗传嵌合体的群体不满足这些标准。虽然物种不满足这些标准,但它们可能满足更广泛的概念——进化个体的标准,并且有性繁殖可能是增强可进化性的物种水平的适应。我们还回顾了假定个体内部遗传异质性的成本和收益,表明高亲缘关系既不是个体性的必要条件也不是充分条件,并且在某些情况下,遗传变异性可能在整个个体水平具有适应性益处。

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