The control of woody weeds in the mulga lands of south-west Queensland is commonly regarded as essential for restoration of degraded systems. However, these shrubs have become a dominant and stable component of many mulga land ecosystems, and their removal may have unknown ecosystem impacts. This paper reports an experiment to determine the effect of woody weeds and grazing pressure on grass recruitment, cover and diversity in two vegetation communities in Queensland's mulga lands. Both factors influence grass recruitment, cover and diversity, but the response differs between the two vegetation communities investigated. The overall grass cover is consistently greater in sites where woody weeds were removed, and where grazing pressure was lowest. However, in the Dunefields community the cover and frequency of grass plants responded mon to the removal of woody weeds than in the Mulga Sandplain community. In contrast, in the Mulga Sandplain community the grasses responded more to reducing or removing grazing pressure. Results suggest that subtle differences between systems influence grass dynamics, highlighting the need for community-specific research and management.
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NSW Dept Environm Climate Change & Water, Rivers & Wetlands Unit, POB A290, Sydney S, NSW 1232, AustraliaNSW Dept Environm Climate Change & Water, Rivers & Wetlands Unit, POB A290, Sydney S, NSW 1232, Australia
Thomas, Rachael
Bowen, Sharon
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NSW Dept Environm Climate Change & Water, Rivers & Wetlands Unit, POB A290, Sydney S, NSW 1232, AustraliaNSW Dept Environm Climate Change & Water, Rivers & Wetlands Unit, POB A290, Sydney S, NSW 1232, Australia
Bowen, Sharon
Simpson, Shannon
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NSW Dept Environm Climate Change & Water, Rivers & Wetlands Unit, POB A290, Sydney S, NSW 1232, AustraliaNSW Dept Environm Climate Change & Water, Rivers & Wetlands Unit, POB A290, Sydney S, NSW 1232, Australia
Simpson, Shannon
Cox, Steve
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NSW Dept Environm Climate Change & Water, Rivers & Wetlands Unit, POB A290, Sydney S, NSW 1232, AustraliaNSW Dept Environm Climate Change & Water, Rivers & Wetlands Unit, POB A290, Sydney S, NSW 1232, Australia
Cox, Steve
Sims, Neil
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CSIRO Land & Water, Water Healthy Country, Clayton, Vic 3169, AustraliaNSW Dept Environm Climate Change & Water, Rivers & Wetlands Unit, POB A290, Sydney S, NSW 1232, Australia
Sims, Neil
Hunter, Simon
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NSW Dept Environm Climate Change & Water, Rivers & Wetlands Unit, POB A290, Sydney S, NSW 1232, AustraliaNSW Dept Environm Climate Change & Water, Rivers & Wetlands Unit, POB A290, Sydney S, NSW 1232, Australia
Hunter, Simon
Lu, Yi
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NSW Dept Environm Climate Change & Water, Rivers & Wetlands Unit, POB A290, Sydney S, NSW 1232, AustraliaNSW Dept Environm Climate Change & Water, Rivers & Wetlands Unit, POB A290, Sydney S, NSW 1232, Australia
Lu, Yi
ECOSYSTEM RESPONSE MODELLING IN THE MURRAY-DARLING BASIN,
2010,
: 137
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150
机构:
North West Univ, Unit Environm Sci & Management, Potchefstroom, South AfricaNorth West Univ, Unit Environm Sci & Management, Potchefstroom, South Africa