三个雀形目科在岛屿和大陆上多样化率的驱动因素对比

M. Conway, Brian J. Olsen
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引用次数: 10

摘要

不同分类群的多样化率差别很大。了解物种特异性性状如何影响物种形成率将有助于阐明在广泛的时空尺度上驱动生物多样性的机制。生态特化和范围大小是物种形成速率的两个假设驱动因素,但每种机制都预测物种形成的增加和减少。我们利用鸟类喙部形态构建了一个连续的特化指数,以确定特化、范围大小和形状对Emberizoidea超科559种物种形成率的相对影响。Emberizoidea超科是一个形态多样的新世界进化支。我们发现特化与物种形成率显著正相关,与范围大小负相关。然而,在去除岛屿特有物种后,只有专业化的影响持续存在,这表明生态专业化是大型宏观进化尺度上多样性的重要驱动因素,特定驱动因素的相对重要性在岛屿和大陆之间可能有所不同。
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Contrasting drivers of diversification rates on islands and continents across three passerine families
Diversification rates vary greatly among taxa. Understanding how species-specific traits influence speciation rates will help elucidate mechanisms driving biodiversity over broad spatio-temporal scales. Ecological specialization and range size are two hypothesized drivers of speciation rates, yet each mechanism predicts both increases and decreases in speciation. We constructed a continuous index of specialization using avian bill morphology to determine the relative effect of specialization and range size and shape on speciation rates across 559 species within the Emberizoidea superfamily, a morphologically diverse New World clade. We found a significant positive correlation between specialization and speciation rate and a negative correlation with range size. Only the effect of specialization persisted after removing island endemics, however, suggesting that ecological specialization is an important driver of diversity across large macroevolutionary scales, and the relative importance of specific drivers may differ between islands and continents.
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