Improved fish and crustacean passage in tidal creeks following floodgate remediation

被引:51
作者
Boys, Craig A. [1 ]
Kroon, Frederieke J. [2 ]
Glasby, Tim M. [1 ]
Wilkinson, Kevin [3 ]
机构
[1] Port Stephens Fisheries Inst, New S Wales Dept Primary Ind, Locked Bag 1, Nelson Bay, NSW 2315, Australia
[2] CSIRO Ecosyst Sci, Atherton, Qld 4883, Australia
[3] Univ New England, Sch Environm & Rural Sci, Armidale, NSW 2351, Australia
关键词
BACI; connectivity; crustaceans; estuarine wetland; fish; tidal restriction; COMMUNITY STRUCTURE; SALT MARSHES; HABITAT-USE; MULTIVARIATE; ASSEMBLAGES; RESTORATION; ESTUARINE; RIVER; CONNECTIVITY; AUSTRALIA;
D O I
10.1111/j.1365-2664.2011.02101.x
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
1. Estuarine wetlands are important nurseries for fish and decapod crustaceans. Flood mitigation structures (such as levees, culverts and floodgates) that fragment wetland habitat can reduce fish and crustacean passage and subsequently impact biodiversity. 2. Remediating structures to enhance connectivity, tidal flushing and fish and crustacean passage are assumed to be important ways to rehabilitate estuarine wetlands, but they are rarely evaluated with a robust sampling protocol. Furthermore, studies are inconsistently applied across different barrier types, and success is variable. Consequently, those rehabilitating wetlands are left with an incomplete understanding of what trajectories of change (if any) may be expected from barrier remediation. 3. In collaboration with landholders and managers, 'floodgate remediation' (structural and operational changes to increase tidal flushing and connectivity) was undertaken in three tidal creeks in two coastal river systems in northern New South Wales, Australia. Changes in fish and crustacean passage were measured for two different techniques (flap gates built into larger gates and the intermittent opening of gates with manual winching) using a BACI design over 2 years. Temporal changes in assemblages and species richness in managed creeks were compared to those in reference creeks (i.e. without floodgates) and control creeks (with closed floodgates). 4. Both types of floodgate remediation enhanced the passage of fish and crustaceans and had significant impacts on assemblages in managed creeks when compared to control and reference creeks. This shift was sustained for the duration of our study in two of the three creeks and was driven primarily by an increase in the number of estuarine-marine-dependent species. 5. Synthesis and applications. Our study demonstrates that floodgate remediation can facilitate fish and crustacean passage and rehabilitate aquatic assemblages in defaunated, tidally restricted wetlands. Given that the vast majority of floodgates throughout south-eastern Australia can be altered to promote connectivity, such remediation may play an important part in guarding against future declines in estuarine connectivity arising from climate change.
引用
收藏
页码:223 / 233
页数:11
相关论文
共 71 条
[61]   Floristic development patterns in a restored Elk River estuarine marsh, Grays Harbor, Washington [J].
Thom, RM ;
Zeigler, R ;
Borde, AB .
RESTORATION ECOLOGY, 2002, 10 (03) :487-496
[62]  
Tulau M., 1999, AUSTRALASIAN J NATUR, V6, P1
[63]  
Turner R. Eugene, 1992, Marine Recreational Fisheries, V14, P97
[64]   BEYOND BACI - EXPERIMENTAL-DESIGNS FOR DETECTING HUMAN ENVIRONMENTAL IMPACTS ON TEMPORAL VARIATIONS IN NATURAL-POPULATIONS [J].
UNDERWOOD, AJ .
AUSTRALIAN JOURNAL OF MARINE AND FRESHWATER RESEARCH, 1991, 42 (05) :569-587
[65]   Habitat connectivity as a factor affecting fish assemblages in temperate reefs [J].
Vega Fernandez, T. ;
D'Anna, G. ;
Badalamenti, F. ;
Perez-Ruzafa, A. .
AQUATIC BIOLOGY, 2008, 1 (03) :239-248
[66]   Food Web Structure and Habitat Connectivity in Fish Estuarine Nurseries-Impact of River Flow [J].
Vinagre, Catarina ;
Salgado, Joao ;
Cabral, Henrique N. ;
Costa, Maria J. .
ESTUARIES AND COASTS, 2011, 34 (04) :663-674
[67]   Human domination of Earth's ecosystems [J].
Vitousek, PM ;
Mooney, HA ;
Lubchenco, J ;
Melillo, JM .
SCIENCE, 1997, 277 (5325) :494-499
[68]  
Walsh S., 2004, FISHERIES FINAL REPO, V68
[69]  
Warren ML, 1998, T AM FISH SOC, V127, P637, DOI 10.1577/1548-8659(1998)127<0637:RCABTS>2.0.CO
[70]  
2