青藏高原林线湖泊中非线性硅藻对千年尺度气候介导的陆水相互作用的响应

IF 3.3 1区 地球科学 Q1 GEOGRAPHY, PHYSICAL
Qian Wang , Kathleen M. Rühland , John P. Smol , Xiangdong Yang , Enlou Zhang , Rong Wang
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引用次数: 0

摘要

了解水生生态系统对气候驱动的陆水相互作用的复杂非线性响应对于确定生态系统动力学的机制至关重要。本文研究了青藏高原东南部果峡湖近20年来硅藻群落的变化。通过将化石硅藻组合与枝海、地球化学和沉积学指标相结合,我们揭示了从冰川后湖泊形成到全新世早期树线移动的不同机制如何影响硅藻的响应。我们的研究结果表明,在主要的气候转变期间,特别是在晚冰期/全新世边界,硅藻和枝海群落发生了突变,相依赖的变化。这些变化可能是由冰川退缩、土壤发育以及随后与气候变暖和树木线迁移相关的有机质输入增加的级联效应驱动的。值得注意的是,硅藻对最初的气候变暖反应迅速,而枝大洋则表现出延迟反应,反映了其对流域植被稳定的更大敏感性。这些发现强调了气候、植被和湖泊生态系统在千年时间尺度上的变化,说明了冰川退缩和景观殖民化期间陆地演替与湖泊动态之间的紧密生物地球化学耦合。该研究为高寒湖泊生态系统初级演替机制提供了重要见解,并为理解当前和未来气候变暖对生态的影响提供了有价值的框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nonlinear diatom responses to millennial-scale climate-mediated terrestrial-aquatic interactions in a treeline lake on the Tibetan Plateau
Understanding the complex, nonlinear responses of aquatic ecosystems to climate-driven terrestrial-aquatic interactions is crucial for identifying the mechanisms underlying ecosystem dynamics. This study investigates the diatom community changes over the past 20 kyr in Cuoqia Lake, a treeline lake on the southeastern Tibetan Plateau. By integrating fossil diatom assemblages with cladoceran, geochemical, and sedimentological proxies, we reveal how differential mechanisms influenced diatom responses from post-glacial lake formation to early Holocene treeline shifts. Our results indicate abrupt, phase-dependent shifts in diatom and cladoceran communities during major climatic transitions, particularly at the Late Glacial/Holocene boundary. These regime shifts were likely driven by cascading effects of glacial retreat, soil development and subsequent increases in organic matter inputs associated with climate warming and treeline migration. Notably, while diatoms responded quickly to initial climate warming, cladocerans exhibited a delayed response, reflecting its greater sensitivity to catchment vegetation stabilization. These findings highlight the attendant changes in climate, vegetation, and lake ecosystems on millennial time scales, illustrating the tight biogeochemical coupling between terrestrial succession and lake dynamics during glacial retreat and landscape colonization. This study offers critical insights into the mechanisms behind primary succession in alpine lake ecosystems and provides a valuable framework for understanding the ecological impacts of ongoing and future climate warming.
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来源期刊
Quaternary Science Reviews
Quaternary Science Reviews 地学-地球科学综合
CiteScore
7.50
自引率
15.00%
发文量
388
审稿时长
3 months
期刊介绍: Quaternary Science Reviews caters for all aspects of Quaternary science, and includes, for example, geology, geomorphology, geography, archaeology, soil science, palaeobotany, palaeontology, palaeoclimatology and the full range of applicable dating methods. The dividing line between what constitutes the review paper and one which contains new original data is not easy to establish, so QSR also publishes papers with new data especially if these perform a review function. All the Quaternary sciences are changing rapidly and subject to re-evaluation as the pace of discovery quickens; thus the diverse but comprehensive role of Quaternary Science Reviews keeps readers abreast of the wider issues relating to new developments in the field.
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