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The effects of temperature and prey density on the development rates and growth of damselfly larvae (Odonata: Zygoptera)
Author(s) -
PICKUP JONATHAN,
THOMPSON DAVID J.
Publication year - 1990
Publication title -
ecological entomology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.865
H-Index - 81
eISSN - 1365-2311
pISSN - 0307-6946
DOI - 10.1111/j.1365-2311.1990.tb00800.x
Subject(s) - damselfly , biology , odonata , instar , predation , coenagrionidae , larva , predator , ecology , biomass (ecology) , population density , population , functional response , zoology , demography , sociology
. 1. The effects of prey density and temperature on the feeding and development rates of several late instars of the larvae of three common European damselflies ( Lestes sponsa (Hansemann), Coenagrion puella (L.) and Ischnura elegans van der Linden) were investigated in a laboratory experiment. 2. Functional responses were used to estimate maximum feeding rates. Maximum feeding rates were compared between species, instars and temperatures by expressing prey consumption in terms of prey biomass consumed per unit predator biomass. Lestes was capable of feeding at almost twice the rate of either Coenagrion or Ischnura. 3. Higher feeding rates led to faster development rates and there was an interaction between species and temperature. With the exception of those with very low feeding rates, larvae maintained at higher temperatures, but similar feeding rates, developed faster. Under similar conditions of temperature and feeding rate, Lestes larvae developed faster than larvae of either Coenagrion or Ischnura. 4. Faster development rates at similar rates of food intake were achieved at the cost of reduced size‐increases between instars. 5. The differences in the responses of the three species are discussed in the light of their respective life histories, and with reference to a recent model of population regulation in damselflies.

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