Disentangling physical and biological drivers of phytoplankton dynamics in a coastal system

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作者
Daniela Cianelli
Domenico D’Alelio
Marco Uttieri
Diana Sarno
Adriana Zingone
Enrico Zambianchi
Maurizio Ribera d’Alcalà
机构
[1] Dipartimento di Scienze e Tecnologie,
[2] Università degli Studi di Napoli Parthenope,undefined
[3] Centro Direzionale di Napoli – Isola C4,undefined
[4] ISPRA – Istituto Superiore per la Protezione e la Ricerca Ambientale,undefined
[5] Via Vitaliano Brancati 60,undefined
[6] 00144,undefined
[7] CoNISMa (Consorzio Nazionale Interuniversitario per le Scienze del Mare),undefined
[8] Piazzale Flaminio 9,undefined
[9] Stazione Zoologica Anton Dohrn,undefined
[10] Villa Comunale,undefined
[11] ISAC-CNR,undefined
[12] Via Fosso del Cavaliere 100,undefined
来源
Scientific Reports | / 7卷
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摘要
This proof-of-concept study integrates the surface currents measured by high-frequency coastal radars with plankton time-series data collected at a fixed sampling point from the Mediterranean Sea (MareChiara Long Term Ecological Research site in the Gulf of Naples) to characterize the spatial origin of phytoplankton assemblages and to scrutinize the processes ruling their dynamics. The phytoplankton community generally originated from the coastal waters whereby species succession was mainly regulated by biological factors (life-cycle processes, species-specific physiological performances and inter-specific interactions). Physical factors, e.g. the alternation between coastal and offshore waters and the horizontal mixing, were also important drivers of phytoplankton dynamics promoting diversity maintenance by i) advecting species from offshore and ii) diluting the resident coastal community so as to dampen resource stripping by dominant species and thereby increase the numerical importance of rarer species. Our observations highlight the resilience of coastal communities, which may favour their persistence over time and the prevalence of successional events over small time and space scales. Although coastal systems may act differently from one another, our findings provide a conceptual framework to address physical–biological interactions occurring in coastal basins, which can be generalised to other areas.
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