Javascript must be enabled to continue!
The Seagrass Holobiont and Its Microbiome
View through CrossRef
Seagrass meadows are ecologically and economically important components of many coastal areas worldwide. Ecosystem services provided by seagrasses include reducing the number of microbial pathogens in the water, providing food, shelter and nurseries for many species, and decreasing the impact of waves on the shorelines. A global assessment reported that 29% of the known areal extent of seagrasses has disappeared since seagrass areas were initially recorded in 1879. Several factors such as direct and indirect human activity contribute to the demise of seagrasses. One of the main reasons for seagrass die-offs all over the world is increased sulfide concentrations in the sediment that result from the activity of sulfate-reducing prokaryotes, which perform the last step of the anaerobic food chain in marine sediments and reduce sulfate to H2S. Recent seagrass die-offs, e.g., in the Florida and Biscayne Bays, were caused by an increase in pore-water sulfide concentrations in the sediment, which were the combined result of unfavorable environmental conditions and the activities of various groups of heterotrophic bacteria in the sulfate-rich water-column and sediment that are stimulated through increased nutrient concentrations. Under normal circumstances, seagrasses are able to withstand low levels of sulfide, probably partly due to microbial symbionts, which detoxify sulfide by oxidizing it to sulfur or sulfate. Novel studies are beginning to give greater insights into the interactions of microbes and seagrasses, not only in the sulfur cycle. Here, we review the literature on the basic ecology and biology of seagrasses and focus on studies describing their microbiome.
Title: The Seagrass Holobiont and Its Microbiome
Description:
Seagrass meadows are ecologically and economically important components of many coastal areas worldwide.
Ecosystem services provided by seagrasses include reducing the number of microbial pathogens in the water, providing food, shelter and nurseries for many species, and decreasing the impact of waves on the shorelines.
A global assessment reported that 29% of the known areal extent of seagrasses has disappeared since seagrass areas were initially recorded in 1879.
Several factors such as direct and indirect human activity contribute to the demise of seagrasses.
One of the main reasons for seagrass die-offs all over the world is increased sulfide concentrations in the sediment that result from the activity of sulfate-reducing prokaryotes, which perform the last step of the anaerobic food chain in marine sediments and reduce sulfate to H2S.
Recent seagrass die-offs, e.
g.
, in the Florida and Biscayne Bays, were caused by an increase in pore-water sulfide concentrations in the sediment, which were the combined result of unfavorable environmental conditions and the activities of various groups of heterotrophic bacteria in the sulfate-rich water-column and sediment that are stimulated through increased nutrient concentrations.
Under normal circumstances, seagrasses are able to withstand low levels of sulfide, probably partly due to microbial symbionts, which detoxify sulfide by oxidizing it to sulfur or sulfate.
Novel studies are beginning to give greater insights into the interactions of microbes and seagrasses, not only in the sulfur cycle.
Here, we review the literature on the basic ecology and biology of seagrasses and focus on studies describing their microbiome.
Related Results
Improvement of Seagrass Habitat Mapping Using Integration of Habitat Suitability Model and Seafloor Classification Map
Improvement of Seagrass Habitat Mapping Using Integration of Habitat Suitability Model and Seafloor Classification Map
Acoustic datasets offer considerable advantages in high-resolution seagrass habitat mapping applications. However, the nature of seafloor features for seagrass habitat on a habitat...
Seagrass diversity in Pulau Banyak, Aceh Singkil District, Indonesia
Seagrass diversity in Pulau Banyak, Aceh Singkil District, Indonesia
Abstract. Erniati, Andika Y, Imanullah, Imamshadiqin, Erlangga, Rahmad, Tauladan TA, Siregar FR, Fitri A, Ritonga GH. 2023. Seagrass diversity in Pulau Banyak, Aceh Singkil Distric...
Seagrass communities at Koh Samui, Surat Thani Province
Seagrass communities at Koh Samui, Surat Thani Province
Seagrass communities at Koh Samui, Surat Thani Province was investigated by the techniques used in the ASEAN-Australia : Coastal Living Resources Project, From April 1986 – January...
Seagrass: A Dynamic System
Seagrass: A Dynamic System
<p>Small herbivorous invertebrates consume algal epiphytes, reducing negative effects (e.g. shading) on seagrass. Much research to date has focused on crustacean grazers, and...
Distribution changes of seagrass beds area using sentinel-2A imagery in lancang island, seribu island, Indonesia
Distribution changes of seagrass beds area using sentinel-2A imagery in lancang island, seribu island, Indonesia
Seagrass is a flowering plant (angiosperm) that inhabits shallow waters and plays a vital ecological role as a breeding ground, habitat, and food source for marine organisms. Howev...
Oceanic Carbon in Seagrass Ecosystems in Freshwaters of Northern Brazil
Oceanic Carbon in Seagrass Ecosystems in Freshwaters of Northern Brazil
Abstract
Seagrass ecosystems can sequester and retain considerable amount of oceanic carbon. However, few studies and limited data constrain seagrass carbon stocks on regio...
Review on Remote Sensing Technologies for Seagrass Mapping in Tropical Region
Review on Remote Sensing Technologies for Seagrass Mapping in Tropical Region
Seagrass ecosystems can be mapped using RS because this technique is versatile and accurate. The availability of seagrass information is very important for the sustainable manageme...
Co-occurrence of seagrass vegetation and coral colonies supports unique fish assemblages: a microhabitat-scale perspective
Co-occurrence of seagrass vegetation and coral colonies supports unique fish assemblages: a microhabitat-scale perspective
Numerous studies have suggested that seagrass beds provide nursery habitats for juvenile fish in both tropical and subtropical regions. Most of these previous studies applied a lan...

