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Temperature-Dependent Functional Response of Harmonia Axyridis Pallas (Coleoptera: Coccinellidae) Preying on Acyrthosiphon Pisum (Harris) (Hemiptera: Aphididae) Nymphs
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Abstract
Functional response models are often used to understand the foraging interactions and determine the suitable biocontrol agents. We determined the functional response of Harmonia axyridis to nymph Acyrthosiphon pisum at different but constant temperatures (between 15 and 35 °C) and prey densities. Logistic regression and Roger’s random predator models were employed to determine the type and parameters of functional response. Harmonia axyridis larvae and adults exhibited Type II functional responses to different densities of A. pisum. Warming increased both the predation activity and host aphid control mortality. The 4th instar and female H. axyridis consumed the most aphids. Warming contributed markedly in accelerating the predator action. For fourth instar larvae and female H. axyridis adult, the successful attack rates were 0.234 ± 0.014 h−1 and 0.247 ± 0.015 h−1; the handling times were 0.132 ± 0.005 h and 0.156 ± 0.004 h; and the estimated maximum predation rates were 181.28 ± 14.54 and 153.85 ± 4.06, respectively. These findings accentuate the high performance of 4th instar and female H. axyridis and the role of temperature in their efficiency. Further studies exploring intraguild predation and mutual interference will be required to conclude the biocontrol potential of H. axyridis to A. pisum.
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Title: Temperature-Dependent Functional Response of Harmonia Axyridis Pallas (Coleoptera: Coccinellidae) Preying on Acyrthosiphon Pisum (Harris) (Hemiptera: Aphididae) Nymphs
Description:
Abstract
Functional response models are often used to understand the foraging interactions and determine the suitable biocontrol agents.
We determined the functional response of Harmonia axyridis to nymph Acyrthosiphon pisum at different but constant temperatures (between 15 and 35 °C) and prey densities.
Logistic regression and Roger’s random predator models were employed to determine the type and parameters of functional response.
Harmonia axyridis larvae and adults exhibited Type II functional responses to different densities of A.
pisum.
Warming increased both the predation activity and host aphid control mortality.
The 4th instar and female H.
axyridis consumed the most aphids.
Warming contributed markedly in accelerating the predator action.
For fourth instar larvae and female H.
axyridis adult, the successful attack rates were 0.
234 ± 0.
014 h−1 and 0.
247 ± 0.
015 h−1; the handling times were 0.
132 ± 0.
005 h and 0.
156 ± 0.
004 h; and the estimated maximum predation rates were 181.
28 ± 14.
54 and 153.
85 ± 4.
06, respectively.
These findings accentuate the high performance of 4th instar and female H.
axyridis and the role of temperature in their efficiency.
Further studies exploring intraguild predation and mutual interference will be required to conclude the biocontrol potential of H.
axyridis to A.
pisum.
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