The stepwise Indian–Eurasian collision and uplift of the Himalayan-Tibetan plateau drove the diversification of high-elevation Scytodes spiders

IF 3.9 2区 生物学 Q1 EVOLUTIONARY BIOLOGY Cladistics Pub Date : 2022-07-08 DOI:10.1111/cla.12512
Yufa Luo, Shuqiang Li
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引用次数: 4

Abstract

The Cenozoic Indian–Eurasian collision and uplift of the Himalayan-Tibetan Plateau (HTP) are among the most important geological events in the world. They have affected the diversification of regional biota of many taxonomic groups on and around the HTP. However, the exact timing and model of the collision and uplift events and speciation on and around the HTP are still in debate. The Himalayas group of Scytodes spitting spiders (Araneae: Scytodidae) are distributed at high elevations of the HTP and northern Indochina. Here, we reconstruct a dated molecular phylogeny for pan-Himalayan Scytodes spiders, including the Himalayas group, with full geographical sampling of the species from the HTP and Indochina. We test a hypothesis to explain that the rich montane biodiversity of the region is uplift-driven diversification—that orogeny drives rapid in situ speciation of the resident Scytodes lineages. Our findings revealed that the separation of the Himalayas clade from the Myanmar clade took place during the middle Oligocene, reflecting the final collision of India with Eurasia. The deep divergences among three clades (the Himalayas, the Myanmar and the Indochina clades) occurred from the middle Eocene to the middle Oligocene, corresponding to two early uplift events of the HTP. The evolutionary split between the Himalayas + Myanmar and Indochina clades were simultaneous with the rapid lateral extrusion of Indochina by the initial Himalayan uplift around the Eocene. This study highlights the importance of the diversification of dispersal-limited, high-elevation invertebrates as independent lines of evidence to reflect key tectonic events in the Himalayan-Indochina region, supporting the stepwise model for the Indian–Eurasian collision and uplift of HTP.

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印度-欧亚大陆的逐步碰撞和喜马拉雅-青藏高原的隆升推动了高海拔翼蛛的多样化
新生代印度-欧亚碰撞和喜马拉雅-青藏高原隆升是世界上最重要的地质事件之一。它们影响了青藏高原及其周围许多分类类群的区域生物群多样性。然而,碰撞和隆起事件的确切时间和模型以及HTP及其周围的物种形成仍然存在争议。我们检验了一个假设,以解释该地区丰富的山地生物多样性是由隆升驱动的多样化——造山运动推动了居住的柱形目谱系的快速原位物种形成。研究结果表明,喜马拉雅分支与缅甸分支的分离发生在中渐新世,反映了印度与欧亚大陆的最终碰撞。
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来源期刊
Cladistics
Cladistics 生物-进化生物学
CiteScore
8.60
自引率
5.60%
发文量
34
期刊介绍: Cladistics publishes high quality research papers on systematics, encouraging debate on all aspects of the field, from philosophy, theory and methodology to empirical studies and applications in biogeography, coevolution, conservation biology, ontogeny, genomics and paleontology. Cladistics is read by scientists working in the research fields of evolution, systematics and integrative biology and enjoys a consistently high position in the ISI® rankings for evolutionary biology.
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