Functional Response of Harmonia axyridis to the Larvae of Spodoptera litura: The Combined Effect of Temperatures and Prey Instars

Functional responses are central to predator–prey dynamics and describe how predation varies with prey abundance. Functional responses often are measured without regard to prey size (i.e., body mass) or the temperature dependence of feeding rates. However, variation in prey size within populations i...

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Published inFrontiers in plant science Vol. 13; p. 849574
Main Authors Islam, Yasir, Shah, Farhan Mahmood, Güncan, Ali, DeLong, John Paul, Zhou, Xingmiao
Format Journal Article
LanguageEnglish
Published Frontiers Media S.A 01.07.2022
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Summary:Functional responses are central to predator–prey dynamics and describe how predation varies with prey abundance. Functional responses often are measured without regard to prey size (i.e., body mass) or the temperature dependence of feeding rates. However, variation in prey size within populations is ubiquitous, and predation rates are often both size and temperature-dependent. Here, we assessed functional responses of larvae and adult Harmonia axyridis on the 1st, 2nd, and 3rd instars of the prey Spodoptera litura across a range of temperatures (i.e., 15, 20, 25, 30, and 35°C). The type and parameters of the functional responses were determined using logistic regression and fitted to the Roger's random predator equation. The magnitude of predation varied with the predator and prey stage, but prey predation increased with warming and predator age. Predation by the female and 4th instar of H. axyridis on the 1st instar of prey was greater, followed by the 2nd and 3rd instar of prey S. litura . No predation occurred on the larger prey for the 1st, 2nd, and 3rd instars of H. axyridis . The larvae and adult H. axyridis produced a type II (hyperbolic) functional response curve across all temperatures and the three prey types they consumed. Space clearance rates, handling time, and maximum predation rates of H. axyridis changed with temperature and prey size, increasing with temperature and decreasing with prey size, suggesting more predation will occur on younger prey. This study indicates an interactive role of temperature and prey/predator size in shaping functional responses, which might complicate the planning of effective biocontrol strategies against this serious pest.
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Edited by: Xiao Ming Zhang, Yunnan Agricultural University, China
Ali Güncan orcid.org/0000-0003-1765-648X
Present address: Farhan Mahmood Shah, National Center for Natural Products Research, University of Mississippi, University, Oxford, MS, United States
Reviewed by: Stéphane Dupas, Institut de Recherche Pour le Développement (IRD), France; Deyu Zou, Tianjin Academy of Agricultural Sciences, China; Zdenka Svobodová, Biology Centre CAS, Czechia; Gaurav Kumar Taggar, Punjab Agricultural University, India
This article was submitted to Sustainable and Intelligent Phytoprotection, a section of the journal Frontiers in Plant Science
John Paul DeLong orcid.org/0000-0003-0558-8213
ORCID: Farhan Mahmood Shah orcid.org/0000-0002-6123-1860
ISSN:1664-462X
1664-462X
DOI:10.3389/fpls.2022.849574