Published October 21, 2021 | Version v1

Seasonal upwelling reduces herbivore control of tropical rocky intertidal algal communities

  • 1. Smithsonian Tropical Research Institute
  • 2. McGill University
  • 3. University of Florida
  • 4. California State University Northridge

Description

Communities are shaped by a variety of ecological and environmental processes, each acting at different spatial scales. Seminal research on rocky shores highlighted the effects of consumers as local determinants of primary productivity and community assembly. However, it is now clear that the species interactions shaping communities at local scales are themselves regulated by large-scale oceanographic processes that generate regional variation in resource availability. Upwelling events deliver nutrient-rich water to coastal ecosystems, influencing primary productivity and algal-herbivore interactions. Despite the potential for upwelling to alter top-down control by herbivores, we know relatively little about the coupling between oceanographic processes and herbivory on tropical rocky shores, where herbivore effects on producers are considered to be strong. By replicating seasonal molluscan herbivore exclusion experiments across three regions exposed to varying intensity of seasonal upwelling, separated by hundreds of kilometers along Panama's Pacific coast, we examine large-scale environmental determinants of consumer effects and community structure on tropical rocky shores. At sites experiencing seasonal upwelling, grazers strongly limited macroalgal cover when upwelling was absent, leading to dominance by crustose algae. As nutrients increased and surface water cooled during upwelling events, increases in primary productivity temporarily weakened herbivory, allowing foliose, turf and filamentous algae to replace crusts. Meanwhile, grazer effects were persistently strong at sites without seasonal upwelling. Our results confirm that herbivores are key determinants of tropical algal cover, however, our focus on regional oceanographic conditions revealed that bottom-up processes regulate top-down control on tropical shorelines. This study expands on the extensive body of work highlighting the influence of upwelling on local ecological processes by demonstrating that nutrient subsidies delivered by upwelling events can weaken herbivory in tropical rocky shores.

Notes

Column headers for experimentResults.csv, grazerDayCount.csv, and grazerNightCount.csv

season: nu16 (wet-season 2016), u17 (dry-season 2017), nu17 (wet-season 2017), u18 (dry-season 2018). Wet-seasons correspond to non-upwelling (nu) periods, while dry-seasons are upwelling (u) periods.

region: GC (Gulf of Chiriqui), AP (Azuero Peninsula), GP (Gulf of Panama)

site: IC (Isla Catalina), PB (Punta Brava), AC (Achotines), DE (Destiladeros), PS (Playa Serena), CU (Culebra)

check: The experimental trials lasted 3 months, and were surveyed monthly - 0 (plot check after 1 month), 1 (plot-check after 2 months), 3 (plot-check after 3 months).

date: date when plot was surveyed ('checked').

block: code corresponding to each individual experimental block of treatments

treat: experimental treatments (C= open control), (PC= procedural control), (UC= unmanipulated control), E (molluscan exclusion).

 

Funding provided by: Smithsonian Tropical Research Institute
Crossref Funder Registry ID: http://dx.doi.org/10.13039/100009201
Award Number:

Funding provided by: McGill University
Crossref Funder Registry ID: http://dx.doi.org/10.13039/100008582
Award Number:

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