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为何需要一个扩展的进化综合理论。

Why an extended evolutionary synthesis is necessary.

作者信息

Müller Gerd B

机构信息

Department of Theoretical Biology, University of Vienna, Vienna, Austria.

Konrad Lorenz Institute for Evolution and Cognition Research, Klosterneuburg, Austria.

出版信息

Interface Focus. 2017 Oct 6;7(5):20170015. doi: 10.1098/rsfs.2017.0015. Epub 2017 Aug 18.

Abstract

Since the last major theoretical integration in evolutionary biology-the modern synthesis (MS) of the 1940s-the biosciences have made significant advances. The rise of molecular biology and evolutionary developmental biology, the recognition of ecological development, niche construction and multiple inheritance systems, the '-omics' revolution and the science of systems biology, among other developments, have provided a wealth of new knowledge about the factors responsible for evolutionary change. Some of these results are in agreement with the standard theory and others reveal different properties of the evolutionary process. A renewed and extended theoretical synthesis, advocated by several authors in this issue, aims to unite pertinent concepts that emerge from the novel fields with elements of the standard theory. The resulting theoretical framework differs from the latter in its core logic and predictive capacities. Whereas the MS theory and its various amendments concentrate on genetic and adaptive variation in populations, the extended framework emphasizes the role of constructive processes, ecological interactions and systems dynamics in the evolution of organismal complexity as well as its social and cultural conditions. Single-level and unilinear causation is replaced by multilevel and reciprocal causation. Among other consequences, the extended framework overcomes many of the limitations of traditional gene-centric explanation and entails a revised understanding of the role of natural selection in the evolutionary process. All these features stimulate research into new areas of evolutionary biology.

摘要

自进化生物学上一次重大理论整合——20世纪40年代的现代综合理论(MS)以来,生物科学取得了重大进展。分子生物学和进化发育生物学的兴起、对生态发育、生态位构建和多重遗传系统的认识、“组学”革命以及系统生物学等发展,提供了大量关于进化变化相关因素的新知识。其中一些结果与标准理论一致,而其他结果则揭示了进化过程的不同特性。本期几位作者倡导的更新和扩展的理论综合,旨在将新领域中出现的相关概念与标准理论的要素结合起来。由此产生的理论框架在其核心逻辑和预测能力上与后者不同。虽然MS理论及其各种修正集中于种群中的遗传和适应性变异,但扩展框架强调建设性过程、生态相互作用和系统动力学在生物体复杂性进化及其社会和文化条件中的作用。单层次和单线因果关系被多层次和相互因果关系所取代。除其他后果外,扩展框架克服了传统以基因为中心解释的许多局限性,并需要对自然选择在进化过程中的作用进行重新理解。所有这些特征都刺激了对进化生物学新领域的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f77c/5566817/5c7d90e7191f/rsfs20170015-g1.jpg

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