A stable isotope study of linkages between stream and terrestrial food webs through spider predation

Freshwater Biology - Tập 47 Số 9 - Trang 1651-1659 - 2002
Kevin J. Collier1, Sarah J. Bury2, Max M. Gibbs1
1National Institute of Water & Atmospheric Research Ltd, Hamilton, New Zealand
2National Institute of Water and Atmospheric Research Ltd., Wellington, New Zealand

Tóm tắt

SUMMARY 1. Transfer of carbon from freshwater to terrestrial ecosystems can occur through predation on adult aquatic insects, but the significance of this trophic pathway to the energetics of riparian communities is poorly understood. We used stable isotopes of carbon and nitrogen to explore linkages between aquatic insect production and the nutrition of web‐building and free‐living spiders alongside two streams in the North Island of New Zealand.

2. δ13C values for riparian tree leaves (means for each site = −32.2 and −30.3‰) were distinct from those of lichens collected from stream channel rocks and instream algae, both of which were similar (−23.4 to −22.4‰). δ15N values for leaves were similar at both sites (−3.4 and −2.7‰), but algae were considerably more depleted in δ15N atonesite suggesting significant differences in instream nitrogen sources between the twostreams.

3. Isotope values for potential aquatic prey of spiders indicated that aquatic algal production was their primary carbon source at both sites. Terrestrial invertebrates collected and assumed to be potential prey reflected a range of carbon sources and represented several trophic levels.

4. At one site, δ13C values indicated a primarily algae‐aquatic insect pathway of carbon transfer to both web‐building and free‐living spider guilds. The other site appeared to have a primarily terrestrial carbon pathway for the free‐living spider guild, and a mixed aquatic‐terrestrial pathway for the web‐building guild.

5. Overall, web‐building spiders were estimated to obtain around 61% of their body carbon from aquatic production compared with 55% for free‐living spiders. Our findings suggest that consumption of prey derived from aquatic sources can provide significant nutrition for spiders living along some stream channels. This pathway may represent an important feedback mechanism contributing to the energetics of riparian communities at sites where aquatic insect production is high.

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Tài liệu tham khảo

Allen J., 2000, Are you a spider?

10.1002/(SICI)1099-1646(199901/06)15:1/3<141::AID-RRR536>3.0.CO;2-E

10.1016/0304-3770(94)90077-9

10.1016/S0006-3207(96)00083-3

Collier K.J., 2000, New Zealand Stream Invertebrates: Ecology and Implications for Management, 179

10.1023/A:1003133208818

10.1076/0165-0424(200010)22:4;1-Y;FT275

10.2307/1313537

10.1139/f96-114

10.2307/1942301

Foelix R.F., 1996, Biology of Spiders

Forster R., 1999, Spiders of New Zealand andtheir worldwide kin.

10.1139/f95-065

10.1890/0012-9658(1997)078[1271:SIIAEA]2.0.CO;2

10.1002/rrr.3450100223

10.1890/0012-9658(2001)082[2403:EOSDNO]2.0.CO;2

10.1034/j.1600-0706.2001.930308.x

Hering D., 1998, Riparian beetles (Coleoptera) along a small stream in the Oregon Coast Range and their interactions with the aquatic environment, Coleopterists Bulletin, 52, 161

10.1080/00288330.1999.9516872

McLean J.A., 1967, Studies of Ephemeroptera in the Auckland area I. Light trapping in Cascade Kauri Park, Tane, 13, 99

10.1080/03014223.1998.9518149

NorrieP.H.(1969)The flight activity of Ephemeroptera and Trichoptera in a Waitakere Stream.Unpublished MSc Thesis University of Auckland Auckland New Zealand.

10.1111/j.1365-2427.1991.tb00477.x

10.1111/j.1474-919X.1991.tb04810.x

Power M.E., 2000, The Ecological Consequences of Environmental Heterogeneity, 291

10.1016/S0169-5347(00)02098-X

10.2307/1310304

10.2307/3544485

10.1076/0165-0424(200010)22:4;1-Y;FT285

10.2307/1942433

10.1080/03014223.1979.10428352

10.1139/z95-183

Winterbourn M.J., 1966, Studies of New Zealand stoneflies 2. The ecology and life history of Zelandoperla maculata (Hare), and Aucklandobius trivacuatus (Tillyard) – Gripopterygidae, New Zealand Journal of Science, 9, 312