Augmenting mark-recapture with beach counts to estimate the abundance of little penguins on Penguin Island, Western Australia

被引:7
作者
Cannell, Belinda [1 ]
Pollock, Ken [1 ]
Bradley, Stuart [1 ]
Wooller, Ron [1 ]
Sherwin, William [2 ]
Sinclair, Jennifer [2 ]
机构
[1] Murdoch Univ, Sch Biol Sci & Biotechnol, Murdoch, WA 6150, Australia
[2] Univ New S Wales, Sch Biol Earth & Environm Sci, Sydney, NSW 2052, Australia
基金
澳大利亚研究理事会;
关键词
closed mark-recapture models; count methods; double sampling; Eudyptula minor; Penguin Island; ESTIMATING POPULATION-SIZE; HIGH ANNUAL VARIABILITY; EUDYPTULA-MINOR; REPRODUCTIVE SUCCESS; SEASONAL-VARIATION; SURVIVAL; COLONY; RADIOTELEMETRY; SEABIRDS; MODELS;
D O I
10.1071/WR11042
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Context. Penguin Island supports the largest colony of little penguins in Western Australia. It is subjected to a suite of anthropogenic threats because of its proximity to an increasing urban population. For effective management of the colony, it is necessary to not only have knowledge of the size of the colony, but also the population trend of the colony. Aims. To demonstrate a new cost-effective method of estimating the island-wide population of penguins on Penguin Island. Methods. We estimated the island-wide population by combining mark-recapture sampling over 2 years on part of the island and beach counts of penguins arriving at night around the entire island. We estimated the abundance using closed population models, allowing for sex and time effects in capture probabilities. We had four capture occasions in 2008 only, and so considered heterogeneity of capture probabilities (M-h), using the Chao heterogeneity moment estimator. The proportion of all penguins counted that arrived at the four mark-recapture sites was then used to inflate the population estimate for the whole island. Key results. In all, 62% of all penguins counted used the four mark-recapture sites. In 2007, there were an estimated 2369 +/- 198 penguins, and 1543 +/- 82 in 2008. When capture heterogeneity was allowed for in 2008, this estimate increased to 2069 +/- 172. Conclusions. Fewer eggs were laid and all measures of breeding performance were lower in 2008 than in 2007. Hence, the lower population estimate is most likely to represent fewer birds attempting to breed. However, further work on population estimates is required to determine whether capture heterogeneity occurs in both good and poor breeding years. Capture rates were affected by the presence of a full moon and high tides. Implications. The estimate of the population can be used as part of the basis of a long-term monitoring program needed for effective management of the penguin colony. However, such studies must be coincident with the monitoring of a suite of reproductive and foraging parameters if short-term impacts of threats are to be recognised and well managed.
引用
收藏
页码:491 / 500
页数:10
相关论文
共 64 条
[11]  
Burnham K. P., 2002, MODEL SELECTION INFE, DOI [DOI 10.1007/B97636, 10.1007/b97636]
[12]  
Burnham Kenneth P., 1993, P199
[13]   Intermittent breeding in the Herring Gull Larus argentatus and the Lesser Black-backed Gull Larus fuscus [J].
Calladine, J ;
Harris, MP .
IBIS, 1997, 139 (02) :259-263
[14]   ESTIMATING POPULATION-SIZE FOR SPARSE DATA IN CAPTURE RECAPTURE EXPERIMENTS [J].
CHAO, A .
BIOMETRICS, 1989, 45 (02) :427-438
[15]  
CHAPE S, 1984, PENGUIN ISLAND DRAFT
[16]   Influence of body condition on reproductive decision and reproductive success in the Blue Petrel [J].
Chastel, O ;
Weimerskirch, H ;
Jouventin, P .
AUK, 1995, 112 (04) :964-972
[17]   HIGH ANNUAL VARIABILITY IN REPRODUCTIVE SUCCESS AND SURVIVAL OF AN ANTARCTIC SEABIRD, THE SNOW PETREL PAGODROMA-NIVEA - A 27-YEAR STUDY [J].
CHASTEL, O ;
WEIMERSKIRCH, H ;
JOUVENTIN, P .
OECOLOGIA, 1993, 94 (02) :278-285
[18]  
Chiaradia Andre F., 1999, Marine Ornithology, V27, P13
[19]  
Connard MN, 1995, Patterns of foraging by little penguins Eudyptula minor from Penguin Island, Western Australia
[20]   Implications for seabirds off South Africa of a long-term change in the distribution of sardine [J].
Crawford, R. J. M. ;
Sabarros, P. S. ;
Fairweather, T. ;
Underhill, L. G. ;
Wolfaardt, A. C. .
AFRICAN JOURNAL OF MARINE SCIENCE, 2008, 30 (01) :177-184