Kearney Maureen, Lieberman Bruce S, Strotz Luke C
Division of Environmental Biology, National Science Foundation, Alexandria, VA, United States.
Department of Ecology and Evolutionary Biology, University of Kansas, Lawrence, KS, United States.
J Evol Biol. 2024 Dec 2;37(12):1402-1412. doi: 10.1093/jeb/voae065.
Ever since the Modern Synthesis, a debate about the relationship between microevolution and macroevolution has persisted-specifically, whether they are equivalent, distinct, or explain one another. How one answers these questions has become shorthand for a much broader set of theoretical debates in evolutionary biology. Here, we examine microevolution and macroevolution in the context of the vast proliferation of data, knowledge, and theory since the advent of the Modern Synthesis. We suggest that traditional views on microevolution and macroevolution are too binary and reductive given current empirical and theoretical advances in biology. For example, patterns and processes are interconnected at various temporal and spatial scales and among hierarchical entities, rather than defining micro- or macro-domains. Further, biological entities have variably fuzzy boundaries, resulting in complex evolutionary processes that influence macroevolution occuring at both micro- and macro-levels. In addition, conceptual advances in phylodynamics have yet to be fully integrated with contemporary macroevolutionary approaches. Finally, holding microevolution and macroevolution as distinct domains thwarts synthesis and collaboration on important research questions. Instead, we propose that the focal entities and processes considered by evolutionary studies be contextualized within the complexity of the multidimensional, multimodal, multilevel phylogenetic system.
自现代综合理论问世以来,关于微进化与宏进化之间关系的争论就一直存在——具体而言,它们是等同的、有区别的,还是相互解释的。如何回答这些问题已成为进化生物学中一系列更广泛理论争论的简略表述。在此,我们在自现代综合理论出现以来数据、知识和理论大量涌现的背景下审视微进化和宏进化。我们认为,鉴于当前生物学在实证和理论方面的进展,关于微进化和宏进化的传统观点过于二元化和简化。例如,模式和过程在各种时间和空间尺度以及层次实体之间相互关联,而不是定义微观或宏观领域。此外,生物实体具有可变的模糊边界,导致影响宏进化的复杂进化过程在微观和宏观层面都有发生。此外,系统发育动力学的概念进展尚未与当代宏进化方法充分整合。最后,将微进化和宏进化视为不同领域阻碍了在重要研究问题上的综合与合作。相反,我们建议进化研究中所考虑的核心实体和过程应在多维、多模式、多层次系统发育系统的复杂性中进行情境化。