首页> 外文期刊>Evolution: International Journal of Organic Evolution >Species delimitation with abc and other coalescent-based methods: A test of accuracy with simulations and an empirical example with lizards of the liolaemus darwinii complex (Squamata: Liolaemidae)
【24h】

Species delimitation with abc and other coalescent-based methods: A test of accuracy with simulations and an empirical example with lizards of the liolaemus darwinii complex (Squamata: Liolaemidae)

机译:使用abc和其他基于聚结的方法对物种进行定界:通过模拟进行准确性测试,并以liolaemus darwinii复合体的蜥蜴为例进行实证(Squamata:Liolaemidae)

获取原文
获取原文并翻译 | 示例
           

摘要

Species delimitation is a major research focus in evolutionary biology because accurate species boundaries are a prerequisite for the study of speciation. New species delimitation methods (SDMs) can accommodate nonmonophyletic species and gene tree discordance as a result of incomplete lineage sorting via the coalescent model, but do not explicitly accommodate gene flow after divergence. Approximate Bayesian computation (ABC) can incorporate gene flow and estimate other relevant parameters of the speciation process while testing alternative species delimitation hypotheses. We evaluated the accuracy of BPP, SpeDeSTEM, and ABC for delimiting species using simulated data and applied these methods to empirical data from lizards of the Liolaemus darwinii complex. Overall, BPP was the most accurate, ABC showed an intermediate accuracy, and SpeDeSTEM was the least accurate under most simulated conditions. All three SDMs showed lower accuracy when speciation occurred despite gene flow, as found in previous studies, but ABC was the method with the smallest decrease in accuracy. All three SDMs consistently supported the distinctness of southern and northern lineages within L. darwinii. These SDMs based on genetic data should be complemented with novel SDMs based on morphological and ecological data to achieve truly integrative and statistically robust approaches to species discovery.
机译:物种划界是进化生物学的主要研究重点,因为准确的物种边界是物种形成研究的前提。由于通过合并模型进行的不完整谱系排序,新的物种定界方法(SDM)可以容纳非一元物种和基因树不一致,但不能明确容纳发散后的基因流。近似贝叶斯计算(ABC)可以结合基因流并估计物种形成过程的其他相关参数,同时测试替代物种定界假设。我们使用模拟数据评估了BPP,SpeDeSTEM和ABC划定物种的准确性,并将这些方法应用于来自Liolaemus darwinii复杂蜥蜴的经验数据。总体而言,在大多数模拟条件下,BPP的准确性最高,ABC的准确性中等,而SpeDeSTEM的准确性最差。如先前的研究中所述,尽管有基因流,当发生物种形成时,所有三个SDM都显示出较低的准确性,但是ABC是准确性下降最小的方法。所有三个SDM都一贯支持达尔文氏菌内南部和北部血统的独特性。这些基于遗传数据的SDM应该与基于形态学和生态学数据的新型SDM相辅相成,以实现真正的整合和统计稳健的物种发现方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号