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Testing for unequal rates of morphological diversification in the absence of a detailed phylogeny: A case study from characiform fishes

机译:在没有详细系统发育史的情况下测试形态多样性的不平等率:以木耳形鱼类为例

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This study develops the random phylogenies rate test (RAPRATE), a likelihood method that simulates morphological evolution along randomly generated phylogenies, and uses it to determine whether a considerable difference in morphological diversity between two sister clades of South American fishes should be taken as evidence of differing rates of morphological change or lineage turnover. Despite identical ages of origin, similar species richness, and sympatric geographic distributions, the morphological and ecological diversity of the superfamily Anostomoidea exceeds that of the Curimatoidea. The test shows with 90% confidence (using variance among species as the measure of morphological diversity) or 99% confidence (using volume of occupied morphospace) that the rate of morphological change per unit time in the Anostomoidea likely exceeded that of the Curimatoidea. Variation in the rate of lineage turnover (speciation and extinction rates) is not found to affect greatly the morphological diversity of simulated clades and is not a likely explanation of the observed difference in morphological diversity in this case study. Though a 17% or greater delay in the onset of diversification in the Curimatoidea remains a possible alternative explanation of unequal morphological diversification, further simulations suggest that two clades drawn from the possible treespace of the Anostomoidea and Curimatoidea will rarely differ so greatly in the onset of diversification. Several uniquely derived morphological and ecological features of the Anostomoidea and Curimatoidea may have accelerated or decelerated their rate of morphological change, including a marked lengthening of the quadrate that may have relaxed structural constraints on the evolution of the anostomoid jaw.
机译:这项研究开发了随机系统发生率测试(RAPRATE),这是一种模拟沿随机生成的系统发生的形态演化的似然方法,并用于确定是否应将南美鱼类两个姊妹进化枝之间形态多样性的显着差异视为证据。不同的形态变化率或谱系更新率。尽管有相同的起源年龄,相似的物种丰富度和同族的地理分布,但超科Anostomoidea的形态和生态多样性却超过了Curimatoidea。该测试以90%的置信度(使用物种间的差异作为形态多样性的量度)或99%的置信度(使用占据的形态空间的量)表明,吻合甲虫单位时间内的形态变化率可能超过了箭毒甲虫。没有发现谱系更新率的变化(物种和灭绝率)对模拟进化枝的形态多样性有很大影响,并且在本案例研究中不可能解释所观察到的形态多样性的差异。尽管库里马亚目(Curimatoidea)的多样化开始出现17%或更大的延迟仍然是不等的形态多样化的可能替代解释,但进一步的模拟表明,从拟南芥(Anostomoidea)和库里马(Curimatoidea)的可能树空间中提取的两个进化枝很少会如此大的差异。多样化。 Anostomoidea和Curimatoidea的几个独特的形态和生态特征可能加速或减速了它们的形态变化速率,包括四边形的明显延长,这可能对肛门下颌的演化具有宽松的结构约束。

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