We conducted RAPD analyses at multiple spatial scales to contribute to the conservation and future restoration of New Zealand's seagrass, Zostera muelleri Irmisch ex Asch. (Zosteraceae). Initially we focused on fine-scale genetic variation within two estuaries on the North Island, one on the East coast the other on the West coast. Within each estuary individuals were genetically similar, however, there was clear genetic separation between the two sites (genetic distance D = 0.2965). Genetic variation within a sampling location (m scale) was similar to that observed among sampling locations (km scale) within a site (21% and 28%, respectively) and smaller than that observed between sites (51%). We then expanded our sampling to include a furth...
Investigating the ecological effects of intraspecific genetic diversity is integral to understanding...
We examined the genetic population structure in eelgrass (Zostera marina L.), the dominant seagrass ...
Seagrasses are marine angiosperms with a worldwide distribution that form conspicuous beds in nearsh...
We conducted RAPD analyses at multiple spatial scales to contribute to the conservation and future r...
Seagrasses are ecosystem engineers that offer important habitat for a large number of species and pr...
Seagrasses are ecosystem engineers that offer important habitat for a large number of species and pr...
Connectivity among populations influences resilience, genetic diversity , adaptation and speciation,...
The seagrass Zostera marina is widely distributed in coastal regions throughout much of the northern...
Genetic diversity is one of three forms of biodiversity recognized by the IUCN as deserving conserva...
Seagrass ecosystems have suffered significant declines globally and focus is shifting to restoration...
The seagrass Zostera marina is widely distributed in coastal regions throughout much of the northern...
Seagrasses are one of the most productive and economically important habitats in the coastal zone, b...
We examined the genetic population structure in eelgrass (Zostera marina L.), the dominant seagrass ...
Investigating the ecological effects of intraspecific genetic diversity is integral to understanding...
We examined the genetic population structure in eelgrass (Zostera marina L.), the dominant seagrass ...
Seagrasses are marine angiosperms with a worldwide distribution that form conspicuous beds in nearsh...
We conducted RAPD analyses at multiple spatial scales to contribute to the conservation and future r...
Seagrasses are ecosystem engineers that offer important habitat for a large number of species and pr...
Seagrasses are ecosystem engineers that offer important habitat for a large number of species and pr...
Connectivity among populations influences resilience, genetic diversity , adaptation and speciation,...
The seagrass Zostera marina is widely distributed in coastal regions throughout much of the northern...
Genetic diversity is one of three forms of biodiversity recognized by the IUCN as deserving conserva...
Seagrass ecosystems have suffered significant declines globally and focus is shifting to restoration...
The seagrass Zostera marina is widely distributed in coastal regions throughout much of the northern...
Seagrasses are one of the most productive and economically important habitats in the coastal zone, b...
We examined the genetic population structure in eelgrass (Zostera marina L.), the dominant seagrass ...
Investigating the ecological effects of intraspecific genetic diversity is integral to understanding...
We examined the genetic population structure in eelgrass (Zostera marina L.), the dominant seagrass ...
Seagrasses are marine angiosperms with a worldwide distribution that form conspicuous beds in nearsh...