Sea-level rise in northern Australia's Kakadu National Park: a survey of floodplain eukaryotes

被引:3
|
作者
Stephenson, Sarah A. [1 ]
Nelson, Tiffanie M. [2 ]
Streten, Claire [2 ]
Gibb, Karen S. [3 ]
Williams, David [2 ]
Greenfield, Paul [1 ,4 ]
Chariton, Anthony A. [1 ,4 ]
机构
[1] CSIRO Oceans & Atmosphere, Locked Bag 2007, Kirrawee, NSW 2232, Australia
[2] Australian Inst Marine Sci, Sustainable Coastal Ecosyst & Ind Trop Australia, Arafura Timor Res Facil, 23 Ellengowan Dr, Casuarina, NT 0810, Australia
[3] Charles Darwin Univ, Res Inst Environm & Livelihoods, Darwin, NT 0810, Australia
[4] Macquarie Univ, Dept Biol Sci, Environm Genom Ecol & Ecotoxicol Lab, Sydney, NSW 2109, Australia
关键词
climate change; flood morphology; metabarcoding; river zone; saltwater; FRESH-WATER WETLAND; CLIMATE-CHANGE; PLANT-COMMUNITIES; SALINITY; SALT; IMPACTS; ECOSYSTEMS; DNA; BIODIVERSITY; INUNDATION;
D O I
10.1071/MF18067
中图分类号
S9 [水产、渔业];
学科分类号
0908 ;
摘要
Forecasted climate-change models predict that much of northern Australia's coastal habitats will be in retreat because of saltwater intrusion (SWI) from sea-level rise. A region of primary concern is the nutrient-rich and biodiverse floodplains of world heritage-listed Kakadu National Park (KNP). To understand the implications of SWI, we need fundamental baseline information for floodplain biota from the South Alligator River, KNP, northern Australia, and informative data on how increased and prolonged exposure to salt is likely to shape the eukaryotic community. To assist in addressing these key knowledge gaps, we used amplicon sequencing to examine the composition of eukaryotic soil communities from the South Alligator River floodplain, an ecologically important area at the coalface' of sea-level rise. Samples were obtained from three river zones and three floodplain morphologies, capturing a wide range of habitats and episodic exposures to both saltwater and freshwater. We found that both the floodplain morphology and positioning along the river significantly influenced eukaryotic composition. However, the influence of these variables varied greatly among the floodplain morphologies, with correlative evidence suggesting that both salinity and pH played a dominant role in shaping communities within lower parts of the floodplain, with this being particularly evident in those regions subjected to major tidal influence (estuarine funnel and sinuous, and cuspate).
引用
收藏
页码:1134 / 1145
页数:12
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