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首页> 外文期刊>Molecular ecology >Patterns and processes underlying evolutionary significant units in the Platypleura stridula L. species complex (Hemiptera: Cicadidae) in the Cape Floristic Region, South Africa
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Patterns and processes underlying evolutionary significant units in the Platypleura stridula L. species complex (Hemiptera: Cicadidae) in the Cape Floristic Region, South Africa

机译:南非开普弗洛里特地区侧柏(Ptyplepleura stridula L.)物种复合体(半翅目:蝉科)中潜在的进化重要单位的模式和过程

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摘要

Cicadas have been shown to be useful organisms for examining the effects of distribution, plant association and geographical barriers on gene flow between populations. The cicadas of the Platypleura stridula species complex are restricted to the biologically diverse Cape Floristic Region (CFR) of South Africa. They are thus an excellent study group for elucidating the mechanisms by which hemipteran diversity is generated and maintained in the CFR. Phylogeographical analysis of this species complex using mitochondrial DNA Cytochrome Oxidase I (COI) and ribosomal 16S sequence data, coupled with preliminary morphological and acoustic data, resolves six clades, each of which has specific host-plant associations and distinct geographical ranges. The phylogeographical structure implies simultaneous or near-simultaneous radiation events, coupled with shifts in host-plant associations. When calibrated using published COI and 16S substitution rates typical for related insects, these lineages date back to the late Pliocene – early Pleistocene, coincident with vegetation change, altered drainage patterns and accelerated erosion in response to neotectonic crustal uplift and cyclic Pleistocene climate change, and glaciation-associated changes in climate and sea level.
机译:蝉已证明是有用的生物,可用于检查种群之间基因流动的分布,植物关联和地理障碍的影响。 Platypleura stridula物种复合体的蝉只限于南非具有生物多样性的开普植物区(CFR)。因此,它们是一个很好的研究小组,用于阐明在CFR中产生和保持半萜多样性的机制。使用线粒体DNA细胞色素氧化酶I(COI)和核糖体16S序列数据,再加上初步的形态学和声学数据,对该物种复合体进行系统地理分析,可解析出六个进化枝,每个进化枝具有特定的宿主植物关联和独特的地理范围。地理结构暗示同时或接近同时的辐射事件,以及寄主-植物关联的变化。当使用已发布的相关昆虫典型的COI和16S替代率进行校准时,这些谱系可以追溯到上新世晚期-更新世早期,与植被变化,排水模式改变和对新构造地壳隆升和周期性更新世气候变化的响应加速的侵蚀相一致,与冰川相关的气候和海平面变化。

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