首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >The biogeomorphological life cycle of poplars during the fluvial biogeomorphological succession: a special focus on Populus nigra L.
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The biogeomorphological life cycle of poplars during the fluvial biogeomorphological succession: a special focus on Populus nigra L.

机译:杨树在河流生物地貌演替过程中的生物地貌生命周期:特别关注黑杨。

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摘要

Riverine ecosystems are recurrently rejuvenated during destructive flood events and vegetation succession starts again. Poplars (i.e. species from Populus genera) respond to hydrogeomorphological constraints, but, in turn, also influence these processes. Thus, poplar development on bare mineral substrates is not exclusively a one-way vegetative process. Reciprocal interactions and adjustments between poplar species and sediment dynamics during their life cycle lead to the emergence of biogeomorphological entities within the fluvial corridor, such as vegetated islands, benches and floodplains. Based on a review of geomorphological, biological and ecological literature, we have identified and described the co-constructing processes between riparian poplars and their fluvial environment. We have explored the possibility that the modification of the hydrogeomorphological environment exerted, in particular, by the European black poplar (Populus nigra L.), increases its fitness and thus results in positive niche construction. We focus on the fundamental phases of dispersal, recruitment and establishment until sexual maturity of P. nigra by describing the hierarchy of interactions and the pattern of feedbacks between biotic and abiotic components. We explicitly relate the biological life cycle of P. nigra to the fluvial biogeomorphic succession model by referring to the 'biogeomorphological life cycle' of P. nigra. Finally, we propose new research perspectives based on this theoretical framework.
机译:在破坏性洪水事件中,河流生态系统不断恢复生机,植被恢复再次开始。杨树(即来自胡杨属的树种)对水文地貌学的限制做出反应,但反过来也会影响这些过程。因此,在裸露的矿物基质上的杨树发育不仅是单向的营养过程。杨树物种与沉积物动力学在其生命周期中的相互交互作用和调节作用导致河流走廊内生物地貌学实体的出现,例如植被繁茂的岛屿,长椅和洪泛区。在回顾地貌,生物学和生态学文献的基础上,我们确定并描述了河岸杨树与其河流环境之间的共同构建过程。我们已经探索了特别是欧洲黑杨(Populus nigra L.)施加的水文地貌环境改变的可能性,从而增加了它的适应性并因此导致了利基构建的可能性。通过描述相互作用的层次以及生物和非生物成分之间的反馈模式,我们专注于黑粉虱的性成熟之前的扩散,募集和建立的基本阶段。我们通过参考黑衣草的“生物地貌生命周期”将黑衣草的生物生命周期与河流生物地貌演替模型明确相关。最后,我们在此理论框架的基础上提出了新的研究视角。

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