Influences of DRA and non-DRA vision on visual responses of locusts stimulated by linearly polarized and unpolarized lights
Abstract
Keywords: Locusta migratoria, linearly polarized light, spectral light, visual response, DRA and non-DRA vision
DOI: 10.25165/j.ijabe.20231603.7959
Citation: Zou S G, Liu T, Ma Y C, Zhang P C Liu Q H. Influences of DRA and non-DRA vision on visual responses of locusts stimulated by linearly polarized and unpolarized lights. Int J Agric & Biol Eng, 2023; 16(3): 15–22.
Keywords
Full Text:
PDFReferences
Kim K N, Huang Q Y, Lei C L. Advances in insect phototaxis and application to pest management: A review. Pest. Manag. Sci., 2019; 7(28): 118-126.
Liu Q H, Jiang Y L, Miao J, Gong Z J, Li T, Duan Y, et al. Photoreceptive reaction spectrum effect and phototactic activity intensity of locusts visual display characteristics stimulated by spectral light. Int J Agric & Biol Eng, 2021; 14(2): 19-25.
Zhang L, Lecoq M, Latchininsky A, Hunter D. Locust, and grasshopper management. Annu. Rev. Entomol., 2019; 64: 15-34.
Liu Q H, Wang X F, Zhao M F, Liu T. Synergistic influence of the capture effect of western flower thrips (Frankliniella occidentalis) induced by proportional yellow-green light in the greenhouse. Int J Agric & Biol Eng, 2023; 16(1): 88–94.
Liu Q H, Wu Y Q, Zhao M F. Photo-induced visual response of western flower thrips attracted and repulsed by their phobotaxis spectrum light. Int J Agric & Biol Eng, 2022; 15(2): 48-57.
Bech M, Homberg U, Pfeiffer K. Receptive fields of locust brain neurons are matched to polarization patterns of the sky. Current Biology, 2014; 24(18): 2124-2129.
Mouritsen H. Long-distance navigation and magnetoreception in migratory animals. Nature, 2018; 558(7708): 50-59.
Dreyer D, Frost B, Mouritsen H, Adrien L, Warrant E. A guide for using flight simulators to study the sensory basis of long-distance migration in insects. Frontiers in Behavioral Neuroscience, 2021; 15: 678-936.
Horváth G. Polarized light and polarization vision in animal sciences. Vision Research, 2014; 8(4): 61-70.
Mappes M, Homberg U. Behavioral analysis of polarization vision in tethered flying locusts. Journal of Comparative Physiology A, 2004; 190(1): 61-68.
Jundi B, Homberg U. Receptive field properties and intensity response functions of polarization-sensitive neurons of the optic tubercle in gregarious and solitarious locusts. J Neurophysiol, 2012; 108: 1695-1710.
Liu Q H, Kong X H, Fu S F, Du J X, Zhou Q. Experimental investigation of light quality attributes of locusts visual sensitivity response to stimulation effect of different polarized blue light. Transactions of the CSAM, 2018; 49(6): 239-245. (in Chinese)
Michiyo K, Keram P, Homberg U. Spectral properties of identified polarized-light sensitive interneurons in the brain of the desert locust Schistocerca gregaria. Journal of Experimental Biology, 2007; 210(8): 1350-1361.
Schmeling F, Tegtmeier J, Kinoshita M, Homberg U. Photoreceptor projections and receptive fields in the dorsal rim area and main retina of the locust eye. J Comp Physiol A, 2015; 202: 585-599.
Liu Q H, Jiang Y L, Miao J, Gong Z J, Li T, Duan Y, Wu Y Q. Study on the visual response of Frankliniella occidentalis to ultra violet-visible spectroscopy with different wavelength ranges. Journal of Biobased Materials and Bioenergy, 2021; 15(4): 497-503.
Liu Q H, Jiang Y L, Miao J, Gong Z J, Li T, Duan Y, Wu Y Q. Visual response effects of western flower thrips manipulated by different light spectra. Int J Agric & Biol Eng, 2019; 12(5): 21-27.
Liu Q H, Zhao M Q, Miao J, Fu G C, Wu Y Q. Influences of yellow and green lights on the visual response of western flower thrips and field verification. Int J Agric & Biol Eng, 2022; 15(4): 49-56.
Pfeiffer K, Kinoshita M, Homberg U. Polarization-sensitive and light-sensitive neurons in two parallel pathways passing through the anterior optic tubercle in the locust brain. Journal of Neurophysiology, 2005; 94(6): 3903-3915.
Krapp H G. Sensory integration: neuronal filters for polarized light patterns. Current Biology, 2014; 24(18): 840-841.
Wen C, Ma T, Wang S, Wen J B, Ji Y C, Wen X J. Progress in research on the compound eye structure and visual navigation of insects. Chinese Academy of Sciences, 2020; 56(1): 28-36.
Andreas B, Marcel S, Rowell C. The perception of the visual flow field by flying locusts: a behavioral and neuronal analysis. J. Exp. Biol, 1992; 165: 137-160.
Glantz R M, Schroeter J P. Polarization contrast and motion detection. J Comp Physiol A, 2006; 192: 905-914.
Heinze S, Homberg U. Maplike representation of celestial E-vector orientations in the brain of an insect. Science, 2007; 315: 995-997.
Stukenberg N, Poehling H M. Blue-green opponency and trichromatic vision in the greenhouse whitefly (Trialeurodes vaporariorum) explored using light emitting diodes. Ann. Appl. Biol., 2019; 175: 146-163.
Richard P B, Gert S, Eric J W. Form vision in the insect dorsal ocelli: An anatomicaland optical analysis of the Locust Ocelli. Vision Research, 2007; 47: 1382-1393.
Liu Q H, Gao X G, Zhou G T, Zhou Q. Influence of polarized vector mode of polarization spectrum light state on the polarized response effect of Locusta migratoria. Acta Agriculturae Zhejiangensis, 2022; 34(8): 1762-1771.
Liu Q H, Jiang Y L, Miao J, Gong Z G, Li T, Duan Y, Wu Y Q. Changes in the visual response and thoracic temperature of Locusta migratoria manilensis stimulated by LED spectral light. Pakistan J. Zool., 2020; 52(1): 355-362.
Jander R, Barry C K. The phototactic push-pull-coupling between dorsal ocelli and compound eyes in the phototropotaxis of locusts and crickets. ZeitschriftfürVergleichende Physiologie, 1968; 57(4): 432-458.
French A S, Immonen E V, Frolov R V. Static and dynamic adaptation of insect photoreceptor responses to naturalistic stimuli. Front Physiol., 2016; 7: 477-486.
Copyright (c) 2023 International Journal of Agricultural and Biological Engineering

This work is licensed under a Creative Commons Attribution 4.0 International License.