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系统生物学中的复杂性与还原论-整体论之争。

Complexity and the reductionism-holism debate in systems biology.

机构信息

CNR, Institute for Complex Systems, Rome, Italy.

出版信息

Wiley Interdiscip Rev Syst Biol Med. 2012 Sep-Oct;4(5):413-27. doi: 10.1002/wsbm.1181. Epub 2012 Jul 3.

Abstract

Reductionism has largely influenced the development of science, culminating in its application to molecular biology. An increasing number of novel research findings have, however, shattered this view, showing how the molecular-reductionist approach cannot entirely handle the complexity of biological systems. Within this framework, the advent of systems biology as a new and more integrative field of research is described, along with the form which has taken on the debate of reductionism versus holism. Such an issue occupies a central position in systems biology, and nonetheless it is not always clearly delineated. This partly occurs because different dimensions (ontological, epistemological, methodological) are involved, and yet the concerned ones often remain unspecified. Besides, within systems biology different streams can be distinguished depending on the degree of commitment to embrace genuine systemic principles. Some useful insights into the future development of this discipline might be gained from the tradition of complexity and self-organization. This is especially true with regards the idea of self-reference, which incorporated into the organizational scheme is able to generate autonomy as an emergent property of the biological whole.

摘要

还原论在很大程度上影响了科学的发展,其在分子生物学中的应用达到了顶峰。然而,越来越多的新研究发现打破了这一观点,表明分子还原论方法无法完全处理生物系统的复杂性。在这个框架内,描述了系统生物学作为一个新的、更具综合性的研究领域的出现,以及在还原论与整体论的争论中所采取的形式。这个问题在系统生物学中占据着核心地位,但并不总是明确界定的。这部分是因为涉及到不同的维度(本体论、认识论、方法论),但相关的维度往往没有明确说明。此外,在系统生物学中,可以根据对接受真正系统原则的程度来区分不同的流派。从复杂性和自组织的传统中可以获得对这门学科未来发展的一些有用的见解。这在自我参照的概念上尤其如此,将自我参照纳入组织方案能够产生自主性,作为生物整体的一个涌现属性。

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