Angeli S, Ceron F, Scaloni A, Monti M, Monteforti G, Minnocci A, Petacchi R, Pelosi P. 1999. Purification, structural characterization, cloning and immunocytochemical localization of chemoreception proteins from Schistocerca gregaria. European Journal of Biochemistry, 262, 745–754.
Burger J M. 2002. How to behave? Evolution of host-handling behaviour in the whitefly parasitoid Encarsia formosa. Ph D
thesis, Wageningen University, Netherlands. pp. 8–22.
Calvello M, Brandazza A, Navarrini A, Dani F R, Turillazzi S, Felicioli A, Pelosi P. 2005. Expression of odorant-binding proteins and chemosensory proteins in some Hymenoptera. Insect Biochemistry and Molecular Biology, 35, 297–307.
Campanacci V, Krieger J, Bette S, Sturgis J N, Lartigue A, Cambillau C, Breer H, Tegoni M. 2001. Revisiting the specificity of Mamestra brassicae and Antheraea polyphemus pheromone-binding proteins with a fluorescence binding assay. Journal of Biological Chemistry, 276, 20078–20084.
Campanacci V, Lartigue A, Hallberg B M, Jones T A, Giudici-Orticoni M T, Tegoni M, Cambillau C. 2003. Moth chemosensory protein exhibits drastic conformational changes and cooperativity on ligand binding. Proceedings of the National Academy of Sciences of the United States of America, 100, 5069–5074.
Caspermeyer J. 2018. MEGA software celebrates silver anniversary. Molecular Biology and Evolution, 35, 1558–1560.
Dippel S, Oberhofer G, Kahnt J, Gerischer L, Opitz L, Schachtner J, Stanke M, Schütz S, Wimmer E, Angeli S. 2014. Tissue-specific transcriptomics, chromosomal localization, and phylogeny of chemosensory and odorant binding proteins from the red flour beetle Tribolium castaneum reveal subgroup specificities for olfaction or more general functions. BMC Genomics, 15, 1141.
Duan S G, Li D Z, Wang M Q. 2019. Chemosensory proteins used as target for screening behaviourally active compounds in the rice pest Cnaphalocrocis medinalis (Lepidoptera: Pyralidae). Insect Molecular Biology, 28, 123–135.
Forli S, Huey R, Pique M E, Sanner M F, Goodsell D S, Olson A J. 2016. Computational protein-ligand docking and virtual drug screening with the AutoDock suite. Nature Protocols, 11, 905–919.
Gu S H, Wang S Y, Zhang X Y, Ji P, Liu J T, Wang G R, Wu K M, Guo Y Y, Zhou J J, Zhang Y J, Smagghe G. 2012. Functional characterizations of chemosensory proteins of the alfalfa plant bug Adelphocoris lineolatus indicate their involvement in host recognition. PLoS ONE, 7, e42871.
He Y Y, Wang K, Zeng Y, Guo Z J, Zhang Y J, Wu Q J, Wang S L. 2020. Analysis of the antennal transcriptome and odorant-binding protein expression profiles of the parasitoid wasp Encarsia formosa. Genomics, 112, 2291–2301.
Kaissling K E. 2001. Olfactory perireceptor and receptor events in moths: A kinetic model. Chemical Senses, 26, 125–150.
Kessler A, Baldwin I T. 2001. Defensive function of herbivore-induced plant volatile emissions in nature. Science, 291, 2141–2144.
Kitabayashi A N, Arai T, Kubo T, Natori S. 1998. Molecular cloning of cDNA for p10, a novel protein that increases in the regenerating legs of Periplaneta americana (American cockroach). Insect Biochemistry and Molecular Biology, 28, 785–790.
Leal W S. 2013. Odorant reception in insects: roles of receptors, binding proteins, and degrading enzymes. Annual Review of Entomology, 58, 373–391.
Li F Q, Dewer Y, Li D, Qu C, Luo C. 2021. Functional and evolutionary characterization of chemosensory protein CSP2 in the whitefly, Bemisia tabaci. Pest Management Science, 77, 378–388.
Li G W, Chen X L, Chen L H, Wang W Q, Wu J X. 2019. Functional analysis of the chemosensory protein GmolCSP8 from the oriental fruit moth, Grapholita molesta (Busck) (Lepidoptera: Tortricidae). Frontiers in Physiology, 10, 552.
Lin X D, Mao Y W, Zhang L. 2018. Binding properties of four antennae-expressed chemosensory proteins (CSPs) with insecticides indicates the adaption of Spodoptera litura to environment. Pesticide Biochemistry and Physiology, 146, 43–51.
Liu G X, Ma H M, Xie H Y, Xuan N, Guo X, Fan Z X, Rajashekar B, Arnaud P, Offmann B, Picimbon J F, Wang X W. 2016. Biotype characterization, developmental profiling, insecticide response and binding property of Bemisia tabaci chemosensory proteins: role of CSP in insect defense. PLoS ONE, 11, e0154706.
Liu G X, Xuan N, Chu D, Xie H Y, Fan Z X, Bi Y P, Picimbon J F, Qin Y C, Zhong S T, Fa L Y, Gao Z L, Pan W L,Wang G Y, Rajashekar B J. 2014. Biotype expression and insecticide response of Bemisia tabaci chemosensory protein-1. Archives of Insect Biochemistry and Physiology, 85, 137–151.
Liu R, He X, Lehane S, Lehane M, Hertz-Fowler C, Berriman M, Field L M, Zhou J J. 2012. Expression of chemosensory proteins in the tsetse fly Glossina morsitans morsitans is related to female host-seeking behaviour. Insect Molecular Biology, 21, 41–48.
Liu X, Chen G, Zhang Y J, Xie W, Wu Q J, Wang S L. 2017. Virus-infected plants altered the host selection of Encarsia formosa, a parasitoid of whiteflies. Frontiers in Physiology, 8, 937.
Morris G M, Huey R, Lindstrom W, Sanner M F, Belew R K, Goodsell D S, Olson A J. 2009. AutoDock4 and AutoDockTools4: Automated docking with selective receptor flexibility. Journal of Computational Chemistry, 30, 2785–2791.
Ozaki K, Utoguchi A, Yamada A, Yoshikawa H. 2008. Identification and genomic structure of chemosensory proteins (CSP) and odorant binding proteins (OBP) genes expressed in foreleg tarsi of the swallowtail butterfly Papilio xuthus. Insect Biochemistry and Molecular Biology, 38, 969–976.
Pelosi P, Iovinella I, Zhu J, Wang G, Dani F R. 2018. Beyond chemoreception: diverse tasks of soluble olfactory proteins in insects. Biological Reviews of the Cambridge Philosophical Society, 93, 184–200.
Pelosi P, Zhou J J, Ban L P, Calvello M. 2006. Soluble proteins in insect chemical communication. Cellular and Molecular Life Sciences, 63, 1658–1676.
Peng X, Liu L, Huang Y X, Wang S J, Li D X, Chen S T, Simon J C, Qu M J, Chen M H. 2021. Involvement of chemosensory proteins in host plant searching in the bird cherry-oat aphid. Insect Science, 28, 1338–1353.
Peng Y, Wang S N, Li K M, Liu J T, Zheng Y, Shan S, Yang Y Q, Li R J, Zhang Y J, Guo Y Y, Falabella P. 2017. Identification of odorant binding proteins and chemosensory proteins in Microplitis mediator as well as functional characterization of chemosensory protein 3. PLoS ONE, 12, e0180775.
Roy A, Kucukural A, Zhang Y. 2010. I-TASSER: A unified platform for automated protein structure and function prediction. Nature Protocols, 5, 725–738.
Schuman M C, Barthel K, Baldwin I T. 2012. Herbivory-induced volatiles function as defenses increasing fitness of the native plant Nicotiana attenuata in nature. eLife, 1, e00007.
Swanson J I, Torto B, Kells S A, Mesce K A, Tumlinson J H, Spivak M. 2009. Odorants that induce hygienic behavior in honeybees: Identification of volatile compounds in chalkbrood-infected honeybee larvae. Journal of Chemical Ecology, 35, 1108–1116.
Tegoni M, Campanacci V, Cambillau C. 2004. Structural aspects of sexual attraction and chemical communication in insects. Trends in Biochemical Sciences, 29, 257–264.
Tian Z, Liu J Y, Zhang Y L. 2016. Structural insights into Cydia pomonella pheromone binding protein 2 mediated prediction of potentially active semiochemicals. Scientific Reports, 6, 22336.
Wang Q, Liu J T, Zhang Y J, Chen J L, Gu S H. 2021. Coordinative mediation of the response to alarm pheromones by three odorant binding proteins in the green peach aphid Myzus persicae. Insect Biochemistry and Molecular Biology, 130, 103528.
Wang Z H, Yang F, Sun A, Shan S, Zhang Y J, Wang S N. 2021. Expression profiles and functional characterization of chemosensory protein 15 (HhalCSP15) in the brown marmorated stink bug Halyomorpha Halys. Frontiers in Physiology, 12, 721247.
Waris M I, Younas A, Adeel M M, Duan S G, Quershi S R, Ullah R M K, Wang M Q. 2020. The role of chemosensory protein 10 in the detection of behaviorally active compounds in brown planthopper, Nilaparvata lugens. Insect Science, 27, 531–544.
Wu Z Z, Cui Y, Qu M Q, Lin J H, Chen M S, Bin S Y, Lin J T. 2019. Candidate genes coding for odorant binding proteins and chemosensory proteins identified from dissected antennae and mouthparts of the southern green stink bug Nezara viridula. Comparative Biochemistry and Physiology (Part D: Genomics and Proteomics), 31, 100594.
Yang J, Yan R, Roy A, Xu D, Poisson J, Zhang Y. 2015. The I-TASSER Suite: protein structure and function prediction. Nature Methods, 12, 7–8.
Younas A, Waris M I, Muhammad T U Q, Muhammad S, Prager S M, Wang M Q. 2018. Functional analysis of the chemosensory protein MsepCSP8 from the oriental armyworm Mythimna separata. Frontiers in Physiology, 9, 872.
Zeng F F, Liu H, Zhang A, Lu Z X, Leal W S, Abdelnabby H, Wang M Q. 2018. Three chemosensory proteins from the rice leaf folder Cnaphalocrocis medinalis involved in host volatile and sex pheromone reception. Insect Molecular Biolology, 27, 710–723.
Zeng Y, Merchant A, Wu Q J, Wang S L, Kong L, Zhou X G, Xie W, Zhang Y J. 2020. A chemosensory protein BtabCSP11 mediates reproduction in Bemisia tabaci. Frontiers in Physiology, 11, 709.
Zhang H, Chen J L, Lin J H, Lin J T, Wu Z Z. 2020. Odorant-binding proteins and chemosensory proteins potentially involved in host plant recognition in the Asian citrus psyllid, Diaphorina citri. Pest Management Science, 76, 2609–2618.
Zhang S A, Zhang Y J, Su H H, Gao X W, Guo Y Y. 2009. Identification and expression pattern of putative odorant-binding proteins and chemosensory proteins in antennae of the Microplitis mediator (Hymenoptera: Braconidae). Chemical Senses, 34, 503–512.
Zhang S F, Kong X B, Wang H B, Zhou G, Yu J X, Liu F, Zhang Z. 2016. Sensory and immune genes identification and analysis in a widely used parasitoid wasp Trichogramma dendrolimi (Hymenoptera: Trichogrammatidae). Insect Science, 23, 417–429.
Zhang Y B, Dong X L, Liu J X, Hu M Y, Zhong G H, Geng P, Yi X. 2012. Molecular cloning, expression and molecular modeling of chemosensory protein from Spodoptera litura and its binding properties with Rhodojaponin III. PLoS ONE, 7, e47611.
Zhang Y N, Ye Z F, Yang K, Dong S L. 2014. Antenna-predominant and male-biased CSP19 of Sesamia inferens is able to bind the female sex pheromones and host plant volatiles. Gene, 536, 279–286.
Zhao Y N, Wang F Z, Zhang X Y, Zhang S H, Guo S L, Zhu G P, Liu Q, Li M, Hull J J. 2016. Transcriptome and expression patterns of chemosensory genes in antennae of the parasitoid wasp Chouioia cunea. PLoS ONE, 11, e0148159.
Zhou C X, Min S F, Yan L T, Wang M Q. 2015. Analysis of antennal transcriptome and odorant binding protein expression profiles of the recently identified parasitoid wasp, Sclerodermus sp. Comparative Biochemistry and Physiology (Part D: Genomics and Proteomics), 16, 10–19.
Zhou Y T, Li L, Zhou X R, Tan Y, Pang B P. 2020. Three chemosensory proteins involved in chemoreception of Oedaleus asiaticus (Orthopera: Acridoidea). Journal of Chemical Ecology, 46, 138–149.
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