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1.
Mar Pollut Bull ; 134: 166-176, 2018 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-28935363

RESUMEN

Seagrass ecosystems are inherently dynamic, responding to environmental change across a range of scales. Habitat requirements of seagrass are well defined, but less is known about their ability to resist disturbance. Specific means of recovery after loss are particularly difficult to quantify. Here we assess the resistance and recovery capacity of 12 seagrass genera. We document four classic trajectories of degradation and recovery for seagrass ecosystems, illustrated with examples from around the world. Recovery can be rapid once conditions improve, but seagrass absence at landscape scales may persist for many decades, perpetuated by feedbacks and/or lack of seed or plant propagules to initiate recovery. It can be difficult to distinguish between slow recovery, recalcitrant degradation, and the need for a window of opportunity to trigger recovery. We propose a framework synthesizing how the spatial and temporal scales of both disturbance and seagrass response affect ecosystem trajectory and hence resilience.


Asunto(s)
Alismatales/fisiología , Ecosistema , Modelos Biológicos , Zosteraceae/fisiología , Ambiente , Océanos y Mares , Análisis Espacio-Temporal
2.
Mar Pollut Bull ; 51(1-4): 428-37, 2005.
Artículo en Inglés | MEDLINE | ID: mdl-15757741

RESUMEN

During the last decade there has been a significant rise in observations of blooms of the toxic cyanobacterium Lyngbya majuscula along the east coast of Queensland, Australia. Whether the increase in cyanobacterial abundance is a biological indicator of widespread water quality degradation or also a function of other environmental change is unknown. A bioassay approach was used to assesses the potential for runoff from various land uses to stimulate productivity of L. majuscula. In Moreton Bay, L. majuscula productivity was significantly (p<0.05) stimulated by soil extracts, which were high in phosphorus, iron and organic carbon. Productivity of L. majuscula from the Great Barrier Reef was also significantly (p<0.05) elevated by iron and phosphorus rich extracts, in this case seabird guano adjacent to the bloom site. Hence, it is possible that other L. majuscula blooms are a result of similar stimulating factors (iron, phosphorus and organic carbon), delivered through different mechanisms.


Asunto(s)
Cianobacterias/crecimiento & desarrollo , Eutrofización , Contaminantes del Agua/envenenamiento , Animales , Bioensayo , Aves , Carbono , Monitoreo del Ambiente , Hierro , Estiércol , Fósforo , Queensland , Factores de Riesgo , Movimientos del Agua
3.
Water Res ; 44(15): 4487-96, 2010 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-20598731

RESUMEN

Cyanobacterial blooms in drinking water reservoirs present a major ecosystem functioning and human health issue. The ability to predict reservoir vulnerability to these blooms would provide information critical for decision making, hazard prevention and management. We developed a new, comparative index of vulnerability based on simple measures of reservoir and catchment characteristics, rather than water quality data, which were instead used to test the index's effectiveness. Testing was based on water quality data collected over a number of seasons and years from 15 drinking water reservoirs in subtropical, southeast Queensland. The index correlated significantly and strongly with algal cell densities, including potentially toxic cyanobacteria, as well as with the proportions of cyanobacteria in summer months. The index also performed better than each of the measures of reservoir and catchment characteristics alone, and as such, was able to encapsulate the physical characteristics of subtropical reservoirs, and their catchments, into an effective indicator of the vulnerability to summer blooms. This was further demonstrated by calculating the index for a new reservoir to be built within the study region. Under planned dimensions and land use, a comparatively high level of vulnerability was reached within a few years. However, the index score and the number of years taken to reach a similar level of vulnerability could be reduced simply by decreasing the percentage of grazing land cover via revegetation within the catchment. With climate change, continued river impoundment and the growing demand for potable water, our index has potential decision making benefits when planning future reservoirs to reduce their vulnerability to cyanobacterial blooms.


Asunto(s)
Cianobacterias/crecimiento & desarrollo , Eutrofización , Agua Dulce/análisis , Abastecimiento de Agua/análisis , Ecosistema , Monitoreo del Ambiente/métodos , Agua Dulce/microbiología , Geografía , Humanos , Salud Pública , Queensland , Estaciones del Año
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