再版:生态系统功能的细胞:迈向海洋空间的整体视野。

Advances in marine biology Pub Date : 2024-01-01 Epub Date: 2024-09-04 DOI:10.1016/bs.amb.2024.08.006
Ferdinando Boero, Francesco De Leo, Simonetta Fraschetti, Gianmarco Ingrosso
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引用次数: 0

摘要

海洋空间是三维的,而生命形式的更替是快速的,这就定义了第四维:时间。要定义具有重要生态意义的空间单元,就需要从特定区域外(生物地球化学循环)、特定区域内(生命周期)和特定区域间(食物网)通量的时空角度来构建重要的生态联系。海洋体积可划分为若干子系统,这些子系统又可进一步划分为更小的子单元,在这些子单元中,生态系统过程高度融合。发生海洋学和生态学过程的体积可划分为生态系统功能的热点,例如,上升流引发浮游生物大量繁殖,其产物随后通过水平流分布,从而定义生态系统功能单元(CEFs),其识别需要物理和化学海洋学、生物地球化学、海洋地质学、浮游生物、底栖生物生态学和生物学、食物网动力学、海洋生物地理学的合作。CEFs 是反映海洋系统不稳定性的模糊对象。
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Reprint: The Cells of Ecosystem Functioning: Towards a holistic vision of marine space.

Marine space is three dimensional, the turnover of life forms is rapid, defining a fourth dimension: time. The definition of ecologically significant spatial units calls for the spatio-temporal framing of significant ecological connections in terms of extra-specific (biogeochemical cycles), intra-specific (life cycles), and inter-specific (food webs) fluxes. The oceanic volume can be split in sub-systems that can be further divided into smaller sub-units where ecosystem processes are highly integrated. The volumes where oceanographic and ecological processes take place are splittable into hot spots of ecosystem functioning, e.g., upwelling currents triggering plankton blooms, whose products are then distributed by horizontal currents, so defining Cells of Ecosystem Functioning (CEFs), whose identification requires the collaboration of physical and chemical oceanography, biogeochemistry, marine geology, plankton, nekton and benthos ecology and biology, food web dynamics, marine biogeography. CEFs are fuzzy objects that reflect the instability of marine systems.

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