Arid
DOI10.1111/fwb.12707
Go with the flow: the movement behaviour of fish from isolated waterhole refugia during connecting flow events in an intermittent dryland river
Marshall, Jonathan C.1,2; Menke, Norbert1; Crook, David A.3; Lobegeiger, Jaye S.1; Balcombe, Stephen R.2; Huey, Joel A.4; Fawcett, James H.5; Bond, Nick R.2; Starkey, Alisa H.6; Sternberg, David2,7; Linke, Simon2; Arthington, Angela H.2
通讯作者Marshall, Jonathan C.
来源期刊FRESHWATER BIOLOGY
ISSN0046-5070
EISSN1365-2427
出版年2016
卷号61期号:8页码:1242-1258
英文摘要

In many intermittent, dryland rivers, fish are confined to isolated waterholes for much of the year. It is only during brief flow events, which typify the hydrology of these systems, that fish are able to move between waterholes and explore surrounding habitat. Because most of the river channel will dry afterwards, there is a strong advantage for selection of persistent waterholes. Two hundred and fifteen individual fish of three common large-bodied species were tagged in two isolated waterholes in the Moonie River (Queensland, Australia) over 3years. Their movements were monitored to identify the flow events that trigger fish movement between waterholes, differences in response among species and size classes and refuge selection preferences. Some individuals of all species moved during flow events and others remained within the same waterhole. There was no clear upstream or downstream preference, and most individuals used a reach of up to 20km, although some individuals ranged over more than 70km in only several days. Above a threshold flow of 2m above commence-to-flow level, timing of flow was more important than magnitude, with most movement occurring in response to the first post-winter flow event, independent of its magnitude and duration. Many of the fish that moved displayed philopatry and subsequently returned to their starting waterhole either by the end of a flow event or on subsequent events, suggesting ability to navigate and a preference for more permanent refuge pools. Maximising survival in a highly variable environment provides a plausible mechanism for maintaining these behaviours. Modifications to both flow regime and hydrological connectivity may reduce movement opportunities for fish in intermittent rivers. Our findings show that fish in intermittent systems use networks of waterholes and that management and conservation strategies should aim to maintain movement opportunities at large spatial scales to preserve population resilience.


英文关键词fish passage flow cues movement distance and direction partial migration philopatry
类型Article
语种英语
国家Australia
收录类别SCI-E
WOS记录号WOS:000379953800006
WOS关键词ARID-ZONE RIVER ; MEDITERRANEAN STREAM ; PARTIAL MIGRATION ; POPULATION PERSISTENCE ; ANTECEDENT FLOWS ; BODY CONDITION ; ECOLOGY ; VARIABILITY ; PATTERNS ; DROUGHT
WOS类目Ecology ; Marine & Freshwater Biology
WOS研究方向Environmental Sciences & Ecology ; Marine & Freshwater Biology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/193026
作者单位1.Dept Sci Informat Technol & Innovat, 41 Boggo Rd, Dutton Pk, Qld, Australia;
2.Griffith Univ, Australian Rivers Inst, Nathan, Qld, Australia;
3.Charles Darwin Univ, Res Inst Environm & Livelihoods, Darwin, NT, Australia;
4.Western Australian Museum, Welshpool, WA, Australia;
5.Dept Nat Resources & Mines, Toowoomba, Qld, Australia;
6.Ozius Spatial, Camp Hill, Qld, Australia;
7.Dept Nat Resources & Mines, Mackay, Qld, Australia
推荐引用方式
GB/T 7714
Marshall, Jonathan C.,Menke, Norbert,Crook, David A.,et al. Go with the flow: the movement behaviour of fish from isolated waterhole refugia during connecting flow events in an intermittent dryland river[J],2016,61(8):1242-1258.
APA Marshall, Jonathan C..,Menke, Norbert.,Crook, David A..,Lobegeiger, Jaye S..,Balcombe, Stephen R..,...&Arthington, Angela H..(2016).Go with the flow: the movement behaviour of fish from isolated waterhole refugia during connecting flow events in an intermittent dryland river.FRESHWATER BIOLOGY,61(8),1242-1258.
MLA Marshall, Jonathan C.,et al."Go with the flow: the movement behaviour of fish from isolated waterhole refugia during connecting flow events in an intermittent dryland river".FRESHWATER BIOLOGY 61.8(2016):1242-1258.
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