The role of developmental instability (DI), as measured by fluctuating asymmetry (FA), in evolutionary biology has been the focus of a wealth of research for more than half a century. In spite of this long period and many published papers, our current state of knowledge reviewed here only allows us to conclude that patterns are heterogeneous and that very little is known about the underlying causes of this heterogeneity. In addition, the statistical properties of FA as a measure of DI are only poorly grasped because of a general lack of understanding of the underlying mechanisms that drive DI. If we want to avoid that this area of research becomes abandoned, more efforts should be made to understand the observed heterogeneity, and attempts should be made to develop a unifying statistical protocol. More specifically, and perhaps most importantly, it is argued here that more attention should be paid to the usefulness of FA as a measure of DI since many factors might blur this relationship. Furthermore, the genetic architecture, associations with fitness and the importance of compensatory growth should be investigated under a variety of stress situations. In addition, more focus should be directed to the underlying mechanisms of DI as well as how these processes map to the observable phenotype. These insights could yield more efficient statistical models and a unified approach to the analysis of patterns in FA and DI. The study of both DI and canalization is indispensable to obtain better insights in their possible common origin, especially because both have been suggested to play a role in both micro- and macro-evolutionary processes.

译文

过去半个多世纪以来,通过波动不对称性(FA)衡量的发育不稳定性(DI)在进化生物学中的作用一直是众多研究的重点。尽管有这么长的时间和许多已发表的论文,但这里回顾的当前知识状态仅使我们得出结论,即模式是异质的,对这种异质性的根本原因知之甚少。此外,由于一般缺乏对驱动DI的潜在机制的了解,因此FA对作为DI的度量的统计属性的了解很少。如果我们要避免这一研究领域被放弃,则应做出更多的努力来理解观察到的异质性,并应尝试开发统一的统计协议。更具体地讲,也许是最重要的是,这里争论的是,应该更多地注意FA作为DI量度的效用,因为许多因素可能使这种关系变得模糊。此外,应在各种压力情况下研究遗传结构,与适应性的关系以及代偿性生长的重要性。此外,应更加关注DI的潜在机制以及这些过程如何映射到可观察的表型。这些见解可以产生更有效的统计模型,以及用于分析FA和DI模式的统一方法。对DI和渠化的研究对于获得它们可能的共同起源的更好的见解是必不可少的,特别是因为已建议两者都在微观和宏观进化过程中发挥作用。

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