Department of Anthropology, The University of Texas at San Antonio, San Antonio, Texas, USA.
Evol Anthropol. 2022 May;31(3):138-153. doi: 10.1002/evan.21940. Epub 2022 Jan 31.
In recent years, multiple technological and methodological advances have increased our ability to estimate phylogenies, leading to more accurate dating of the primate tree of life. Here we provide an overview of the limitations and potentials of some of these advancements and discuss how dated phylogenies provide the crucial temporal scale required to understand primate evolution. First, we review new methods, such as the total-evidence dating approach, that promise a better integration between the fossil record and molecular data. We then explore how the ever-increasing availability of genomic-level data for more primate species can impact our ability to accurately estimate timetrees. Finally, we discuss more recent applications of mutation rates to date divergence times. We highlight example studies that have applied these approaches to estimate divergence dates within primates. Our goal is to provide a critical overview of these new developments and explore the promises and challenges of their application in evolutionary anthropology.
近年来,多项技术和方法上的进步提高了我们估计系统发育的能力,从而更准确地确定灵长类动物生命之树的年代。在这里,我们概述了其中一些进展的局限性和潜力,并讨论了有年代的系统发育如何提供理解灵长类动物进化所需的关键时间尺度。首先,我们回顾了新的方法,例如总证据定年法,它有望更好地整合化石记录和分子数据。然后,我们探讨了基因组水平数据对更多灵长类物种的可用性不断增加如何影响我们准确估计时树的能力。最后,我们讨论了最近应用突变率来确定分歧时间的情况。我们重点介绍了一些应用这些方法来估计灵长类动物内分歧日期的示例研究。我们的目标是对这些新发展进行批判性概述,并探讨它们在进化人类学中的应用的前景和挑战。