Richness of Primary Producers and Consumer Abundance Mediate Epiphyte Loads in a Tropical Seagrass System
Consumer communities play an important role in maintaining ecosystem structure and function. In seagrass systems, algal regulation by mesograzers provides a critical maintenance function which promotes seagrass productivity. Consumer communities also represent a key link in trophic energy transfer a...
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doaj-746e90b1628543609b6b815b060d5ae02020-11-25T03:07:33ZengMDPI AGDiversity1424-28182020-10-011238438410.3390/d12100384Richness of Primary Producers and Consumer Abundance Mediate Epiphyte Loads in a Tropical Seagrass SystemLuke Hoffmann0Will Edwards1Paul H. York2Michael A. Rasheed3Centre for Tropical Water and Aquatic Ecosystem Research, James Cook University, Cairns, QLD 4870, AustraliaCollege of Science and Engineering, James Cook University, Cairns, QLD 4870, AustraliaCentre for Tropical Water and Aquatic Ecosystem Research, James Cook University, Cairns, QLD 4870, AustraliaCentre for Tropical Water and Aquatic Ecosystem Research, James Cook University, Cairns, QLD 4870, AustraliaConsumer communities play an important role in maintaining ecosystem structure and function. In seagrass systems, algal regulation by mesograzers provides a critical maintenance function which promotes seagrass productivity. Consumer communities also represent a key link in trophic energy transfer and buffer negative effects to seagrasses associated with eutrophication. Such interactions are well documented in the literature regarding temperate systems, however, it is not clear if the same relationships exist in tropical systems. This study aimed to identify if the invertebrate communities within a tropical, multispecies seagrass meadow moderated epiphyte abundance under natural conditions by comparing algal abundance across two sites at Green Island, Australia. At each site, paired plots were established where invertebrate assemblages were perturbed via insecticide manipulation and compared to unmanipulated plots. An 89% increase in epiphyte abundance was seen after six weeks of experimental invertebrate reductions within the system. Using generalised linear mixed-effect models and path analysis, we found that the abundance of invertebrates was negatively correlated with epiphyte load on seagrass leaves. Habitat species richness was seen to be positively correlated with invertebrate abundance. These findings mirrored those of temperate systems, suggesting this mechanism operates similarly across latitudinal gradients.https://www.mdpi.com/1424-2818/12/10/384epiphyte–grazer interactionstrophic interactionsecosystem function and servicesinvertebrate assemblages |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Luke Hoffmann Will Edwards Paul H. York Michael A. Rasheed |
spellingShingle |
Luke Hoffmann Will Edwards Paul H. York Michael A. Rasheed Richness of Primary Producers and Consumer Abundance Mediate Epiphyte Loads in a Tropical Seagrass System Diversity epiphyte–grazer interactions trophic interactions ecosystem function and services invertebrate assemblages |
author_facet |
Luke Hoffmann Will Edwards Paul H. York Michael A. Rasheed |
author_sort |
Luke Hoffmann |
title |
Richness of Primary Producers and Consumer Abundance Mediate Epiphyte Loads in a Tropical Seagrass System |
title_short |
Richness of Primary Producers and Consumer Abundance Mediate Epiphyte Loads in a Tropical Seagrass System |
title_full |
Richness of Primary Producers and Consumer Abundance Mediate Epiphyte Loads in a Tropical Seagrass System |
title_fullStr |
Richness of Primary Producers and Consumer Abundance Mediate Epiphyte Loads in a Tropical Seagrass System |
title_full_unstemmed |
Richness of Primary Producers and Consumer Abundance Mediate Epiphyte Loads in a Tropical Seagrass System |
title_sort |
richness of primary producers and consumer abundance mediate epiphyte loads in a tropical seagrass system |
publisher |
MDPI AG |
series |
Diversity |
issn |
1424-2818 |
publishDate |
2020-10-01 |
description |
Consumer communities play an important role in maintaining ecosystem structure and function. In seagrass systems, algal regulation by mesograzers provides a critical maintenance function which promotes seagrass productivity. Consumer communities also represent a key link in trophic energy transfer and buffer negative effects to seagrasses associated with eutrophication. Such interactions are well documented in the literature regarding temperate systems, however, it is not clear if the same relationships exist in tropical systems. This study aimed to identify if the invertebrate communities within a tropical, multispecies seagrass meadow moderated epiphyte abundance under natural conditions by comparing algal abundance across two sites at Green Island, Australia. At each site, paired plots were established where invertebrate assemblages were perturbed via insecticide manipulation and compared to unmanipulated plots. An 89% increase in epiphyte abundance was seen after six weeks of experimental invertebrate reductions within the system. Using generalised linear mixed-effect models and path analysis, we found that the abundance of invertebrates was negatively correlated with epiphyte load on seagrass leaves. Habitat species richness was seen to be positively correlated with invertebrate abundance. These findings mirrored those of temperate systems, suggesting this mechanism operates similarly across latitudinal gradients. |
topic |
epiphyte–grazer interactions trophic interactions ecosystem function and services invertebrate assemblages |
url |
https://www.mdpi.com/1424-2818/12/10/384 |
work_keys_str_mv |
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