International audienceSeaweed-associated microbiota experience spatial and temporal shifts in response to changing environmental conditions and seaweed physiology. These shifts may result in structural, functional and behavioral changes in the host with potential consequences for its fitness. They, thus, may help the host to adapt to changing environmental conditions. The current knowledge of seasonal variation of seaweed-associated microbiota is however still limited. In this study, we explored temporal and spatial variation of microbial communities associated with the invasive brown seaweed S. muticum. We sampled in northern and southern Portugal, in September, March and July-August (summer). In addition, as (pseudo-)perennial seaweeds di...
Growth and activity of coastal microbial mats is strongly seasonal. The development of these mats st...
Interactions between hosts and their microbiota are critical to the functioning and resilience of eu...
Here we describe, the longest microbial time-series analyzed to date using high-resolution 16S rRNA ...
Seaweed-associated microbiota experience spatial and temporal shifts in response to changing environ...
Seaweed-associated microbiota experience spatial and temporal shifts in response to changing environ...
Seaweed-associated microbiota experience spatial and temporal shifts in response to changing environ...
Over 90% of introduced marine species are seaweeds. Seaweeds rely on their microbiome for host settl...
Over 90% of introduced marine species are seaweeds. Seaweeds rely on their microbiome for host settl...
The establishment of epibacterial communities is fundamental to seaweed health, and fitness, in modu...
The establishment of epibacterial communities is fundamental to seaweed health and fitness, in modul...
Relative distribution of the bacteria phyla associated with different structures of the brown seawee...
Surfaces of marine macrophytes are inhabited by diverse microbial communities. Most studies focusing...
© 2014 Campbell, Marzinelli, Gelber and Steinberg. Macroalgal surfaces support abundant and diverse ...
Communities are shaped by scale dependent processes. To study the diversity and variation of microbi...
Although the effects of certain species of seaweed on the microbial community structure have long be...
Growth and activity of coastal microbial mats is strongly seasonal. The development of these mats st...
Interactions between hosts and their microbiota are critical to the functioning and resilience of eu...
Here we describe, the longest microbial time-series analyzed to date using high-resolution 16S rRNA ...
Seaweed-associated microbiota experience spatial and temporal shifts in response to changing environ...
Seaweed-associated microbiota experience spatial and temporal shifts in response to changing environ...
Seaweed-associated microbiota experience spatial and temporal shifts in response to changing environ...
Over 90% of introduced marine species are seaweeds. Seaweeds rely on their microbiome for host settl...
Over 90% of introduced marine species are seaweeds. Seaweeds rely on their microbiome for host settl...
The establishment of epibacterial communities is fundamental to seaweed health, and fitness, in modu...
The establishment of epibacterial communities is fundamental to seaweed health and fitness, in modul...
Relative distribution of the bacteria phyla associated with different structures of the brown seawee...
Surfaces of marine macrophytes are inhabited by diverse microbial communities. Most studies focusing...
© 2014 Campbell, Marzinelli, Gelber and Steinberg. Macroalgal surfaces support abundant and diverse ...
Communities are shaped by scale dependent processes. To study the diversity and variation of microbi...
Although the effects of certain species of seaweed on the microbial community structure have long be...
Growth and activity of coastal microbial mats is strongly seasonal. The development of these mats st...
Interactions between hosts and their microbiota are critical to the functioning and resilience of eu...
Here we describe, the longest microbial time-series analyzed to date using high-resolution 16S rRNA ...