Can spatial and temporal food variability explain the winter foraging movements of a threatened saltmarsh insectivore?

被引:4
作者
Lindsay, Kurtis J. [1 ]
Allen, Andrew P. [1 ]
Major, Richard E. [2 ]
机构
[1] Macquarie Univ, Dept Biol Sci, N Ryde, NSW, Australia
[2] Australian Museum, Res Inst, Sydney, NSW 2010, Australia
关键词
arthropod; Epthianura albifrons; fragmentation; Meliphagidae; wetland; CHAT EPHTHIANURA-ALBIFRONS; SEASONAL PATTERNS; TIDAL MARSHES; PREY; DIVERSITY; AUSTRALIA; ABUNDANCE; SELECTION; HABITAT; TIME;
D O I
10.1111/aec.12189
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
The white-fronted chat (Epthianura albifrons) is a small, insectivorous passerine that is threatened with extinction in the north-eastern part of its range, partially due to loss and degradation of its saltmarsh habitat. Food availability is a potential limiting factor for the disjunct populations that survive in saltmarsh refugia, surrounded by urbanized land, because the anthropogenic matrix reduces the capacity of birds to commute to alternative grassland habitat to exploit temporary insect outbreaks. This limitation is likely to be exacerbated during the winter months when local arthropod abundance in saltmarsh is reduced. This study measured temporal and spatial variation in the abundance of saltmarsh arthropods to determine whether patch switching by foraging flocks can be explained by variation in food availability. Arthropods in the size range known to be important in the diet of white-fronted chats were vacuum-sampled from six patches within a continuous area of Sarcocornia-dominated saltmarsh over a four-month period. The location of foraging birds was recorded during the same period. Despite superficial similarity in vegetation composition and structure, there was significant variation in arthropod biomass among sites through time, such that the patches with the highest food abundance changed from month to month. There was little evidence, however, to suggest that white-fronted chats foraged in saltmarsh patches with the highest overall food abundance. During the course of the study, birds were discovered flying 2km from the saltmarsh to a development site where they foraged in weedy grassland. Arthropod samples collected from this site contained an extremely high abundance of Hemiptera and Neuroptera larvae, supporting previous research indicating that white-fronted chats forage on irruptions of particular arthropod taxa. These findings indicate that food abundance is unlikely to be the main determinant of foraging site selection within saltmarsh, but highlights the potential importance of alternative foraging habitat types for this species.
引用
收藏
页码:160 / 169
页数:10
相关论文
共 64 条
  • [31] Insect diversity and trophic structure differ on native and non-indigenous congeneric rushes in coastal salt marshes
    Harvey, Kerinne J.
    Britton, David R.
    Minchinton, Todd E.
    [J]. AUSTRAL ECOLOGY, 2010, 35 (05) : 522 - 534
  • [32] Examining Tidal Inundation and Salt Marsh Vegetation Distribution Patterns using Spatial Analysis (Botany Bay, Australia)
    Hickey, Deanne
    Bruce, Eleanor
    [J]. JOURNAL OF COASTAL RESEARCH, 2010, 26 (01) : 94 - 102
  • [33] HOGSTAD O, 1988, Fauna Norvegica Series C Cinclus, V11, P27
  • [34] Population decline of the White-fronted Chat (Epthianura albifrons) in New South Wales, Australia
    Jenner, Ben
    French, Kris
    Oxenham, Katherine
    Major, Richard E.
    [J]. EMU-AUSTRAL ORNITHOLOGY, 2011, 111 (01): : 84 - 91
  • [35] Keast Allan, 1995, Australian Zoologist, V30, P3
  • [36] Laegdsgaard P, 2009, AUSTRALIAN SALTMARSH ECOLOGY, P179
  • [37] SEASONAL ABUNDANCE OF AQUATIC DIPTERA IN 2 OLIGOHALINE TIDAL MARSHES IN MISSISSIPPI
    LASALLE, MW
    BISHOP, TD
    [J]. ESTUARIES, 1987, 10 (04): : 303 - 315
  • [38] Impact of urbanization on coastal wetland structure and function
    Lee, SY
    Dunn, RJK
    Young, RA
    Connolly, RM
    Dale, PER
    Dehayr, R
    Lemckert, CJ
    McKinnon, S
    Powell, B
    Teasdale, PR
    Welsh, DT
    [J]. AUSTRAL ECOLOGY, 2006, 31 (02) : 149 - 163
  • [39] Nonlethal effects in the ecology of predator-prey interactions - What are the ecological effects of anti-predator decision-making?
    Lima, SL
    [J]. BIOSCIENCE, 1998, 48 (01) : 25 - 34
  • [40] Genetic isolation of endangered bird populations inhabiting salt marsh remnants surrounded by intensive urbanization
    Major, R. E.
    Johnson, R. N.
    King, A. G.
    Cooke, G. M.
    Sladek, J. L. T.
    [J]. ANIMAL CONSERVATION, 2014, 17 (05) : 419 - 429