In their own language: cues guiding sticky spiral placement by Micrathena duodecimspinosa (Araneae: Araneidae)

Author:

Eberhard William G.123ORCID

Affiliation:

1. Smithsonian Tropical Research Institute, 9100 Panama City Plaza, Washington, DC 20521-9100, USA

2. School of Biology, University of Costa Rica, San José, Costa Rica

3. Museum of Natural Science, Louisiana State University, Murphy J. Foster Hall, 119 Dalrymple Drive, Baton Rouge, LA 70802, USA

Abstract

Abstract Orb-web construction behaviour, a classic example of ‘innate’ behaviour, is highly flexible. Determining which cues guide construction behaviour is complicated by the strong correlations between some variables, and the difficulty of manipulating of some web variables in biologically realistic ways. This study utilized a new experimental technique, adding sticky lines to webs during construction, to examine cues that guide sticky spiral spacing. Deflections and subsequent reductions in spacing produced by experiments that involved relatively long radii resembled the reduced spacing pattern on short radii in control webs; radius length was thus not the cue eliciting reduced spacing in control webs. An alternative, that smaller inter-radius distances elicited reduced spacing, was supported by experimentally removing radii to increase the distances between radii. The new technique also elicited variation in responses that suggested that spiders may use mental cues such as memories or expectations of line positions to guide sticky spiral placement.

Publisher

Brill

Reference40 articles.

1. Memória e aprendizagem em aranhas;Ades, C.

2. Jumping spiders: an exceptional group for comparative cognition studies;Aguilar-Arguello, S.

3. Orb weaver aggregate glue protein composition as a mechanism for rapid evolution of material properties;Ayoub, N.A.

4. Distinct movement patterns generate stages of spider web building;Corver, A.

5. Computer simulation of orb-web construction;Eberhard, W.G.

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