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Development of anchialine cave habitats and karst subterranean estuaries since the last ice age

机译:自上次冰河时代以来,锚皮洞栖息地和喀斯特地下河口的发展

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Extinction models generally predict that coastal and neritic fauna benefit during sea-level rise (transgression), whereas sea-level retreat (regression) diminishes their suitable habitat area and promotes evolutionary bottlenecks. Sea-level change also impacts terrestrial island biogeography, but it remains a challenge to evidence how sea-level rise impacts aquatic island biogeography, especially in the subterranean realm. Karst subterranean estuaries (KSEs) occur globally on carbonate islands and platforms, and they are populated by globally-dispersed, ancient ecosystems (termed anchialine). Anchialine fauna currently exhibit a disjunct biogeography that cannot be completely explained by plate tectonic-imposed vicariance. Here we provide evidence that anchialine ecosystems can experience evolutionary bottlenecks caused by habitat reduction during transgression events. Marine-adapted anchialine fauna benefit from habitat expansion during transgressions, but fresh- and brackish-adapted fauna must emigrate, evolve to accommodate local habitat changes, or are regionally eliminated. Phanerozoic transgressions relative to long-term changes in subsidence and relief of regional lithology must be considered for explaining biogeography, evolution, local extirpation or complete extinction of anchialine fauna. Despite the omission of this entire category of environments and animals in climate change risk assessments, the results indicate that?anchialine fauna on low-lying islands and platforms that depend upon meteoric groundwater are vulnerable to habitat changes caused by 21supst/sup century sea-level rise.
机译:灭绝模型通常预测海拔(违规)在海平面上升(违规)中的沿海和书呆子动物的利益,而海拔撤退(回归)减少了合适的栖息地区域并促进进化瓶颈。海平变化也会影响陆地岛生物地理,但证据仍然是海平面上升如何影响水生岛生物地理的挑战,特别是在地下领域。喀斯特地下河口(KSES)在碳酸盐群岛和平台上全球出发,它们被全球分散的古代生态系统(称为亨里尼斯)填充。 Anchialine Fauna目前表现出分散的生物地理,不能完全解释板构造施加的剪裁。在这里,我们提供了证据表明,静血素生态系统可以体验到过税事件中栖息地减少的进化瓶颈。海洋适应的anchialine动物动物群中受益于稻草境内的栖息地扩张,但新鲜和咸水适应的动物区必须移民,进化以适应当地栖息地的变化,或者被区域淘汰。相对于区域岩性沉降和救济的长期变化的Phanerozoic违背必须考虑解释生物地科,进化,当地灭绝或完全灭绝的anchialine fauna。尽管在气候变化风险评估中遗漏了整个环境和动物,但结果表明,在依靠Meteoric地下水的低洼岛屿和平台上的刺客动物群体易受21 st引起的栖息地变化的影响Sup>世纪海平面上升。

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