Bacterial symbionts influence host susceptibility to fenitrothion and imidacloprid in the obligate hematophagous bed bug, Cimex hemipterus |…

Brownlie, J. C. & Johnson, K. N. Symbiont-mediated protection in insect hosts. Trends Microbiol. 17, 348354 (2009).

CAS PubMed Google Scholar

Oliver, K. M., Moran, N. A. & Hunter, M. S. Variation in resistance to parasitism in aphids is due to symbionts not host genotype. Proc. Natl. Acad. Sci. U.S.A. 102, 1279512800 (2005).

ADS CAS PubMed PubMed Central Google Scholar

Hosokawa, T., Koga, R., Kikuchi, Y., Meng, X. Y. & Fukatsu, T. Wolbachia as a bacteriocyte-associated nutritional mutualist. Proc. Natl. Acad. Sci. 107, 769774 (2010).

ADS CAS PubMed Google Scholar

Hosokawa, T. & Fukatsu, T. Relevance of microbial symbiosis to insect behavior. Curr. Opin. Insect Sci. 39, 91100 (2020).

PubMed Google Scholar

McCutcheon, J. P., Boyd, B. M. & Dale, C. The life of an insect endosymbiont from the cradle to the grave. Curr. Biol. 29, 485495 (2019).

Google Scholar

Teoh, M. C., Furusawa, G. & Veera Singham, G. Multifaceted interactions between the pseudomonads and insects: Mechanisms and prospects. Arch. Microbiol. 203, 18911915 (2021).

CAS PubMed Google Scholar

Lehane, M. J. & Lehane, M. The Biology of Blood-Sucking in Insects (Cambridge University Press, 2005).

Google Scholar

Rio, R. V., Attardo, G. M. & Weiss, B. L. Grandeur alliances: Symbiont metabolic integration and obligate arthropod hematophagy. Trends Parasitol. 32, 739749 (2016).

CAS PubMed PubMed Central Google Scholar

Douglas, A. E. The B vitamin nutrition of insects: The contributions of diet, microbiome and horizontally acquired genes. Curr. Opin. Insect Sci. 23, 6569 (2017).

PubMed Google Scholar

Husnik, F. Host-symbiont-pathogen interactions in blood-feeding parasites: Nutrition, immune cross-talk and gene exchange. Parasitology 145, 12941303 (2018).

PubMed Google Scholar

Michalkova, V., Benoit, J. B., Weiss, B. L., Attardo, G. M. & Aksoy, S. Vitamin B6 generated by obligate symbionts is critical for maintaining proline homeostasis and fecundity in tsetse flies. Appl. Environ. Microbiol. 80, 58445853 (2014).

ADS PubMed PubMed Central Google Scholar

Puchta, O. Experimentelle untersuchungen uber die bedeutung der symbiose der kleiderlaus Pediculus vestimenti Burm. Z. Parasitenkd. 17, 1 (1955).

CAS PubMed Google Scholar

Perotti, M. A., Kirkness, E. F., Reed, D. L. & Braig, H. R. Endosymbionts of lice. In Insect Symbiosis (eds Bourtzis, K. & Miller, T. A.) 205219 (CRC Press, 2009).

Google Scholar

Kirkness, E. F. et al. Genome sequences of the human body louse and its primary endosymbiont provide insights into the permanent parasitic lifestyle. Proc. Natl. Acad. Sci. U. S. A. 107, 1216812173 (2010).

ADS CAS PubMed PubMed Central Google Scholar

Nikoh, N. et al. Evolutionary origin of insect-Wolbachia nutritional mutualism. Proc. Natl. Acad. Sci. U. S. A. 111, 1025710262 (2014).

ADS CAS PubMed PubMed Central Google Scholar

Duron, O. et al. Tick-bacteria mutualism depends on B vitamin synthesis pathways. Curr. Biol. 28, 18961902 (2018).

CAS PubMed Google Scholar

Usinger, R. L. Monograph of Cimicidae (Hemiptera, Heteroptera) (Thomas Say Foundation, College Park, 1966).

Google Scholar

Doggett, S. L., Miller, D. M. & Lee, C. Y. Introduction. In Advances in the Biology and Management of Modern Bed Bugs (eds Doggett, S. L. et al.) 17 (Wiley-Blackwell, 2018).

Google Scholar

Doggett, S. L., Dwyer, D. E., Peas, P. F. & Russell, R. C. Bed bugs: Clinical relevance and control options. Clin. Microbiol. Rev. 25, 164192 (2012).

PubMed PubMed Central Google Scholar

Hwang, S. J. E., Doggett, S. L. & Fernandez-Penas, P. Dermatology and immunology. In Advances in the Biology and Management of Modern Bed Bugs (eds Doggett, S. L. et al.) 109116 (Wiley-Blackwell, 2018).

Google Scholar

Lee, C. Y., Miller, D. M. & Doggett, S. L. Chemical control. In Advances in the Biology and Management of Modern Bed Bugs (eds Doggett, S. L. et al.) 285310 (Wiley-Blackwell, 2018).

Google Scholar

Dang, K., Doggett, S. L., Singham, G. V. & Lee, C. Y. Insecticide resistance and resistance mechanisms in bed bugs, Cimex spp. (Hemiptera: Cimicidae). Parasit. Vectors 10, 318 (2017).

PubMed PubMed Central Google Scholar

Romero, A. Insecticide resistance. In Advances in the Biology and Management of Modern Bed Bugs (eds Doggett, S. L. et al.) 273280 (Wiley-Blackwell, 2018).

Google Scholar

Leong, X. Y. et al. Performance of commercial insecticide formulations against different developmental stages of insecticide-resistant tropical bed bugs (Hemiptera: Cimicidae). J. Econ. Entomol. 113, 353366 (2020).

CAS PubMed Google Scholar

Punchihewa, R., de Silva, W. P. P., Weeraratne, T. C. & Karunaratne, S. P. Insecticide resistance mechanisms with novel kdr type gene mutations in the tropical bed bug Cimex hemipterus. Parasit. Vectors 12, 310 (2019).

PubMed PubMed Central Google Scholar

Zhao, Y., Feng, X., Li, M. & Qiu, X. The double-mutation (M918I+ L1014F) kdr allele is fixed in Cimex hemipterus populations in Guangxi, China. Bull. Entomol. Res. 110, 506511 (2020).

CAS PubMed Google Scholar

Zhu, F. et al. Bed bugs evolved unique adaptive strategy to resist pyrethroid insecticides. Sci. Rep. 3, 18 (2013).

Google Scholar

Kilpinen, O., Kristensen, M. & Jensen, K. M. V. Resistance differences between chlorpyrifos and synthetic pyrethroids in Cimex lectularius population from Denmark. Parasitol. Res. 109, 14611464 (2011).

PubMed Google Scholar

Karunaratne, S., Damayanthi, B., Fareena, M., Imbuldeniya, V. & Hemingway, J. Insecticide resistance in the tropical bedbug Cimex hemipterus. Pestic. Biochem. Physiol. 88, 102107 (2007).

CAS Google Scholar

Leong, X. Y., Singham, G. V., Shu-Chien, A. C., Doggett, S. L. & Lee, C. Y. Influences of exposure time and mortality assessment interval on bioassay results of insecticide-resistant tropical bed bugs (Hemiptera: Cimicidae). Insects 11, 640 (2020).

PubMed Central Google Scholar

Tawatsin, A. et al. Insecticide resistance in bedbugs in Thailand and laboratory evaluation of insecticides for the control of Cimex hemipterus and Cimex lectularius (Hemiptera: Cimicidae). J. Med. Entomol. 48, 10231030 (2011).

CAS PubMed Google Scholar

Romero, A. & Anderson, T. D. High levels of resistance in the common bed bug, Cimex lectularius (Hemiptera: Cimicidae), to neonicotinoid insecticides. J. Med. Entomol. 53, 727731 (2016).

CAS PubMed Google Scholar

Busvine, J. R. Insecticide-resistance in bed-bugs. Bull. World Health Organ. 19, 1041 (1958).

CAS PubMed PubMed Central Google Scholar

Dang, K., Doggett, S. L., Leong, X. Y., Veera Singham, G. & Lee, C. Y. Multiple mechanisms conferring broad-spectrum insecticide resistance in the tropical bed bug (Hemiptera: Cimicidae). J. Econ. Entomol. 114, 24732484 (2021).

PubMed Google Scholar

Gonzlez-Morales, et al. Resistance to fipronil in the common bed bug (Hemiptera: Cimicidae). J. Med. Entomol. 58, 17981807 (2021).

PubMed Google Scholar

Lilly, D. G., Latham, S. L., Webb, C. E. & Doggett, S. L. Cuticle thickening in a pyrethroid-resistant strain of the common bed bug, Cimex lectularius L.(Hemiptera: Cimicidae). PLoS ONE 11, e0153302 (2016).

PubMed PubMed Central Google Scholar

Dang, K. et al. Identification of putative kdr mutations in the tropical bed bug, Cimex hemipterus (Hemiptera: Cimicidae). Pest Manag. Sci. 71, 10151020 (2015).

CAS PubMed Google Scholar

Gressel, J. Microbiome facilitated pest resistance: Potential problems and uses. Pest Mang. Sci. 74, 511515 (2018).

CAS Google Scholar

Kikuchi, Y. et al. Symbiont-mediated insecticide resistance. Proc. Natl. Acad. Sci. 109, 86188622 (2012).

ADS CAS PubMed PubMed Central Google Scholar

Blanton, A. G. & Peterson, B. F. Symbiont-mediated insecticide detoxification as an emerging problem in insect pests. Fron. Microbiol. 11, 547108 (2020).

Google Scholar

Langille, M. G. et al. Predictive functional profiling of microbial communities using 16S rRNA marker gene sequences. Nat. Biotechnol. 31, 814821 (2013).

CAS PubMed PubMed Central Google Scholar

Soh, L. S. & Singham, G. V. Cuticle thickening associated with fenitrothion and imidacloprid resistance and influence of voltage-gated sodium channel mutations on pyrethroid resistance in the tropical bed bug Cimex hemipterus. Pest Manag. Sci. 77, 52025212 (2021).

CAS PubMed Google Scholar

Williamson, M. S., Martinez-Torres, D., Hick, C. A. & Devonshire, A. L. Identification of mutations in the housefly para-type sodium channel gene associated with knockdown resistance (kdr) to pyrethroid insecticides. Mol. Gen. Genet. 252, 5160 (1996).

CAS PubMed Google Scholar

Sonoda, S. et al. Frequencies of the M918I mutation in the sodium channel of the diamondback moth in China, Thailand and Japan and its association with pyrethroid resistance. Pestic. Biochem. Physiol. 102, 142145 (2012).

CAS Google Scholar

Boush, M. G. & Matsumura, F. Insecticidal degradation by Pseudomonas melophthora, the bacterial symbiote of the apple maggot. J. Econ. Entomol. 60, 918920 (1967).

CAS Google Scholar

Cheng, D. F. et al. Gut symbiont enhances insecticide resistance in a significant pest, the oriental fruit fly Bactrocera dorsalis (Hendel). Microbiome 5, 13 (2017).

PubMed PubMed Central Google Scholar

Xie, X., Sun, B. & Gurr, G. Gut microbiota mediate insecticide resistance in the diamondback moth, Plutella xylostella (L.). Front. Microbiol. 9, 25 (2018).

CAS Google Scholar

Pang, R. et al. A distinct strain of Arsenophonus symbiont decreases insecticide resistance in its insect host. PLoS Genet. 14, e1007725 (2018).

PubMed PubMed Central Google Scholar

Akami, M. et al. Gut bacteria of the cowpea beetle mediate its resistance to dichlorvos and susceptibility to Lippia adoensis essential oil. Sci. Rep. 9, 6435 (2019).

ADS PubMed PubMed Central Google Scholar

Pietri, J. E., Tiffany, C. & Liang, D. Disruption of the microbiota affects physiological and evolutionary aspects of insecticide resistance in the German cockroach, an important urban pest. PLoS ONE 13, e0207985 (2018).

CAS PubMed PubMed Central Google Scholar

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