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Antifragility and Tinkering in Biology (and in Business) Flexibility Provides an Efficient Epigenetic Way to Manage Risk

机译:在生物(和商业)领域的抗脆弱性和修补技术的灵活性提供了有效的表观遗传方法来管理风险

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摘要

The notion of antifragility, an attribute of systems that makes them thrive under variable conditions, has recently been proposed by Nassim Taleb in a business context. This idea requires the ability of such systems to ‘tinker’, i.e., to creatively respond to changes in their environment. A fairly obvious example of this is natural selection-driven evolution. In this ubiquitous process, an original entity, challenged by an ever-changing environment, creates variants that evolve into novel entities. Analyzing functions that are essential during stationary-state life yield examples of entities that may be antifragile. One such example is proteins with flexible regions that can undergo functional alteration of their side residues or backbone and thus implement the tinkering that leads to antifragility. This in-built property of the cell chassis must be taken into account when considering construction of cell factories driven by engineering principles.
机译:Nassim Taleb最近在商业环境中提出了抗脆弱性的概念,这是使系统在可变条件下蓬勃发展的系统属性。这个想法要求此类系统具有“修补”功能,即创造性地响应其环境的变化。一个明显的例子就是自然选择驱动的进化。在这个无处不在的过程中,原始实体在不断变化的环境中面临着挑战,创造了演变成新颖实体的变体。分析在稳态生命过程中必不可少的功能,可以得出可能易碎的实体示例。一个这样的例子是具有柔性区域的蛋白质,该蛋白质可以经历其侧残基或主链的功能改变,从而实现导致抗脆弱性的修补。在考虑由工程原理驱动的电池工厂的建造时,必须考虑到电池底座的这种内置属性。

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