Saturday, October 22, 2022

Differential mosquito attraction to humans is associated with skin acid levels

    • Abuin L.
    • Bargeton B.
    • Ulbrich M.H.
    • Isacoff E.Y.
    • Kellenberger S.
    • Benton R.

    Functional architecture of olfactory ionotropic glutamate receptors.

    Neuron. 2011; 69: 44-60
    • Acosta E.M.
    • Little K.A.
    • Bratton B.P.
    • Mao X.
    • Payne A.
    • Devenport D.
    • Gitai Z.

    Bacterial DNA on the skin surface overrepresents the viable skin microbiome.

    2021https://doi.org/10.1101/2021.1108.1116.455933 ()
    • Acree Jr., F.
    • Turner R.B.
    • Gouck H.K.
    • Beroza M.
    • Smith N.

    L-lactic acid: a mosquito attractant isolated from humans.

    Science. 1968; 161: 1346-1347
    • Ai M.
    • Min S.
    • Grosjean Y.
    • Leblanc C.
    • Bell R.
    • Benton R.
    • Suh G.S.

    Acid sensing by the Drosophila olfactory system.

    Nature. 2010; 468: 691-695
    • Anjomruz M.
    • Oshaghi M.A.
    • Sedaghat M.M.
    • Pourfatollah A.A.
    • Raeisi A.
    • Vatandoost H.
    • Mohtarami F.
    • Yeryan M.
    • Bakhshi H.
    • Nikpoor F.

    ABO blood groups of residents and the ABO host choice of malaria vectors in southern Iran.

    Exp. Parasitol. 2014; 136: 63-67
    • Ansell J.
    • Hamilton K.A.
    • Pinder M.
    • Walraven G.E.
    • Lindsay S.W.

    Short-range attractiveness of pregnant women to Anopheles gambiae mosquitoes.

    Trans. R. Soc. Trop. Med. Hyg. 2002; 96: 113-116
    • Basrur N.S.
    • De Obaldia M.E.
    • Morita T.
    • Herre M.
    • von Heynitz R.K.
    • Tsitohay Y.N.
    • Vosshall L.B.

    Fruitless mutant male mosquitoes gain attraction to human odor.

    eLife. 2020; 9: e63982
    • Benton R.
    • Vannice K.S.
    • Gomez-Diaz C.
    • Vosshall L.B.

    Variant ionotropic glutamate receptors as chemosensory receptors in Drosophila.

    Cell. 2009; 136: 149-162
    • Bernier U.R.
    • Booth M.M.
    • Yost R.A.

    Analysis of human skin emanations by gas chromatography/mass spectrometry. 1. Thermal desorption of attractants for the yellow fever mosquito (Aedes aegypti) from handled glass beads.

    Anal. Chem. 1999; 71: 1-7
    • Bernier U.R.
    • Kline D.L.
    • Allan S.A.
    • Barnard D.R.

    Laboratory comparison of Aedes aegypti attraction to human odors and to synthetic human odor compounds and blends.

    J. Am. Mosq. Control Assoc. 2007; 23: 288-293
    • Bernier U.R.
    • Kline D.L.
    • Barnard D.R.
    • Schreck C.E.
    • Yost R.A.

    Analysis of human skin emanations by gas chromatography/mass spectrometry. 2. Identification of volatile compounds that are candidate attractants for the yellow fever mosquito (Aedes aegypti).

    Anal. Chem. 2000; 72: 747-756
    • Bernier U.R.
    • Kline D.L.
    • Schreck C.E.
    • Yost R.A.
    • Barnard D.R.

    Chemical analysis of human skin emanations: comparison of volatiles from humans that differ in attraction of Aedes aegypti (Diptera: Culicidae).

    J. Am. Mosq. Control Assoc. 2002; 18: 186-195
    • Bhatt S.
    • Gething P.W.
    • Brady O.J.
    • Messina J.P.
    • Farlow A.W.
    • Moyes C.L.
    • Drake J.M.
    • Brownstein J.S.
    • Hoen A.G.
    • Sankoh O.
    • et al.

    The global distribution and burden of dengue.

    Nature. 2013; 496: 504-507
    • Brady J.
    • Costantini C.
    • Sagnon N.
    • Gibson G.
    • Coluzzi M.

    The role of body odours in the relative attractiveness of different men to malarial vectors in Burkina Faso.

    Ann. Trop. Med. Parasitol. 1997; 91: S121-S122
  1. Incubated human sweat but not fresh sweat attracts the malaria mosquito Anopheles gambiae sensu stricto.

    J. Chem. Ecol. 1999; 25: 663-672
  2. Variations in human body odour as a cause of individual differences of attraction for malaria mosquitoes.

    Trop. Geogr. Med. 1960; 2: 186-192
    • Busula A.O.
    • Bousema T.
    • Mweresa C.K.
    • Masiga D.
    • Logan J.G.
    • Sauerwein R.W.
    • Verhulst N.O.
    • Takken W.
    • de Boer J.G.

    Gametocytemia and attractiveness of Plasmodium falciparum-Infected Kenyan children to Anopheles gambiae mosquitoes.

    J. Infect. Dis. 2017; 216: 291-295
    • Butterwick J.A.
    • Del Mármol J.
    • Kim K.H.
    • Kahlson M.A.
    • Rogow J.A.
    • Walz T.
    • Ruta V.

    Cryo-EM structure of the insect olfactory receptor Orco.

    Nature. 2018; 560: 447-452
    • Concordet J.P.
    • Haeussler M.

    CRISPOR: intuitive guide selection for CRISPR/Cas9 genome editing experiments and screens..

    Nucleic Acids Res. 2018; 46: W242-W245https://doi.org/10.1093/nar/gky354
    • De Moraes C.M.
    • Stanczyk N.M.
    • Betz H.S.
    • Pulido H.
    • Sim D.G.
    • Read A.F.
    • Mescher M.C.

    Malaria-induced changes in host odors enhance mosquito attraction.

    Proc. Natl. Acad. Sci. USA. 2014; 111: 11079-11084
    • De Moraes C.M.
    • Wanjiku C.
    • Stanczyk N.M.
    • Pulido H.
    • Sims J.W.
    • Betz H.S.
    • Read A.F.
    • Torto B.
    • Mescher M.C.

    Volatile biomarkers of symptomatic and asymptomatic malaria infection in humans.

    Proc. Natl. Acad. Sci. USA. 2018; 115: 5780-5785
    • DeGennaro M.
    • McBride C.S.
    • Seeholzer L.
    • Nakagawa T.
    • Dennis E.J.
    • Goldman C.
    • Jasinskiene N.
    • James A.A.
    • Vosshall L.B.

    orco mutant mosquitoes lose strong preference for humans and are not repelled by volatile DEET.

    Nature. 2013; 498: 487-491
    • Del Mármol J.
    • Yedlin M.A.
    • Ruta V.

    The structural basis of odorant recognition in insect olfactory receptors.

    Nature. 2021; 597: 126-131
    • Fernández-Grandon G.M.
    • Gezan S.A.
    • Armour J.A.
    • Pickett J.A.
    • Logan J.G.

    Heritability of attractiveness to mosquitoes.

    PLOS One. 2015; 10: e0122716
    • Fritz C.O.
    • Morris P.E.
    • Richler J.J.

    Effect size estimates: current use, calculations, and interpretation.

    J. Exp. Psychol. Gen. 2012; 141: 2-18
    • Gallagher M.
    • Wysocki C.J.
    • Leyden J.J.
    • Spielman A.I.
    • Sun X.
    • Preti G.

    Analyses of volatile organic compounds from human skin.

    Br. J. Dermatol. 2008; 159: 780-791
    • Geier M.
    • Bosch O.J.
    • Boeckh J.

    Ammonia as an attractive component of host odour for the yellow fever mosquito, Aedes aegypti.

    Chem. Senses. 1999; 24: 647-653
    • Gilbert I.H.
    • Gouck H.K.
    • Smith N.

    Attractiveness of men and women to Aedes aegypti and relative protection time obtained with DEET.

    Fla. Entomol. 1966; 49: 53-66
  3. Host preferences of various strains of Aedes aegypti and A. simpsoni as determined by an olfactometer.

    Bull. World Health Organ. 1972; 47: 680-683
  4. Coding of odors by a receptor repertoire.

    Cell. 2006; 125: 143-160
    • Harrington L.C.
    • Fleisher A.
    • Ruiz-Moreno D.
    • Vermeylen F.
    • Wa C.V.
    • Poulson R.L.
    • Edman J.D.
    • Clark J.M.
    • Jones J.W.
    • Kitthawee S.
    • et al.

    Heterogeneous feeding patterns of the dengue vector, Aedes aegypti, on individual human hosts in rural Thailand.

    PLOS Negl. Trop. Dis. 2014; 8: e3048
    • Herre M.
    • Goldman O.V.
    • Lu T.C.
    • Caballero-Vidal G.
    • Qi Y.
    • Gilbert Z.N.
    • Gong Z.
    • Morita T.
    • Rahiel S.
    • Ghaninia M.
    • et al.

    Non-canonical odor coding in the mosquito.

    Cell. 2022; 185: 3104-3123.e28
    • Himeidan Y.E.
    • Elbashir M.I.
    • Adam I.

    Attractiveness of pregnant women to the malaria vector, Anopheles arabiensis, in Sudan.

    Ann. Trop. Med. Parasitol. 2004; 98: 631-633
    • Huang Z.R.
    • Lin Y.K.
    • Fang J.Y.

    Biological and pharmacological activities of squalene and related compounds: potential uses in cosmetic dermatology.

    Molecules. 2009; 14: 540-554
    • Ives A.R.
    • Paskewitz S.M.
    • Inter-L&S 101, Biology Interest Groups, and Entomology Class 201

    Testing vitamin B as a home remedy against mosquitoes.

    J. Am. Mosq. Control Assoc. 2005; 21: 213-217
  5. Iso- and anteiso-fatty acids in bacteria: biosynthesis, function, and taxonomic significance.

    Microbiol. Rev. 1991; 55: 288-302
    • Khan S.A.
    • Ombugadu A.
    • Ahmad S.

    Host-seeking behavior and fecundity of the female Aedes aegypti to human blood types.

    Pest Manag. Sci. 2022; 78: 321-328
    • Kistler K.E.
    • Vosshall L.B.
    • Matthews B.J.

    Genome engineering with CRISPR-Cas9 in the mosquito Aedes aegypti.

    Cell Rep. 2015; 11: 51-60
    • Knols B.G.
    • de Jong R.
    • Takken W.

    Differential attractiveness of isolated humans to mosquitoes in Tanzania.

    Trans. R. Soc. Trop. Med. Hyg. 1995; 89: 604-606
    • Konopka J.K.
    • Task D.
    • Afify A.
    • Raji J.
    • Deibel K.
    • Maguire S.
    • Lawrence R.
    • Potter C.J.

    Olfaction in Anopheles mosquitoes.

    Chem. Senses. 2021; 46: 1-24
  6. Body odour of monozygotic human twins: a common pattern of odorant carboxylic acids released by a bacterial aminoacylase from axilla secretions contributing to an inherited body odour type.

    J. R. Soc. Interface. 2009; 6: 377-392
    • Lacroix R.
    • Mukabana W.R.
    • Gouagna L.C.
    • Koella J.C.

    Malaria infection increases attractiveness of humans to mosquitoes.

    PLoS Biol. 2005; 3: e298
    • Larsson M.C.
    • Domingos A.I.
    • Jones W.D.
    • Chiappe M.E.
    • Amrein H.
    • Vosshall L.B.

    Or83b encodes a broadly expressed odorant receptor essential for Drosophila olfaction.

    Neuron. 2004; 43: 703-714
    • Lefèvre T.
    • Gouagna L.C.
    • Dabiré K.R.
    • Elguero E.
    • Fontenille D.
    • Renaud F.
    • Costantini C.
    • Thomas F.

    Beer consumption increases human attractiveness to malaria mosquitoes.

    PLoS One. 2010; 5: e9546
    • Lindsay S.
    • Ansell J.
    • Selman C.
    • Cox V.
    • Hamilton K.
    • Walraven G.

    Effect of pregnancy on exposure to malaria mosquitoes.

    Lancet. 2000; 355: 1972
    • Logan J.G.
    • Birkett M.A.
    • Clark S.J.
    • Powers S.
    • Seal N.J.
    • Wadhams L.J.
    • Mordue Luntz A.J.
    • Pickett J.A.

    Identification of human-derived volatile chemicals that interfere with attraction of Aedes aegypti mosquitoes.

    J. Chem. Ecol. 2008; 34: 308-322
    • Logan J.G.
    • Stanczyk N.M.
    • Hassanali A.
    • Kemei J.
    • Santana A.E.
    • Ribeiro K.A.
    • Pickett J.A.
    • Mordue Luntz A.J.

    Arm-in-cage testing of natural human-derived mosquito repellents.

    Malar. J. 2010; 9: 239
    • Lu Y.J.
    • Zhang Y.M.
    • Rock C.O.

    Product diversity and regulation of type II fatty acid synthases.

    Biochem. Cell Biol. 2004; 82: 145-155
    • Matthews B.J.
    • Dudchenko O.
    • Kingan S.B.
    • Koren S.
    • Antoshechkin I.
    • Crawford J.E.
    • Glassford W.J.
    • Herre M.
    • Redmond S.N.
    • Rose N.H.
    • et al.

    Improved reference genome of Aedes aegypti informs arbovirus vector control.

    Nature. 2018; 563: 501-507
    • McBride C.S.
    • Baier F.
    • Omondi A.B.
    • Spitzer S.A.
    • Lutomiah J.
    • Sang R.
    • Ignell R.
    • Vosshall L.B.

    Evolution of mosquito preference for humans linked to an odorant receptor.

    Nature. 2014; 515: 222-227
    • McMeniman C.J.
    • Corfas R.A.
    • Matthews B.J.
    • Ritchie S.A.
    • Vosshall L.B.

    Multimodal integration of carbon dioxide and other sensory cues drives mosquito attraction to humans.

    Cell. 2014; 156: 1060-1071
  7. The distribution of anopheline mosquito bites among different age groups; a new factor in malaria epidemiology.

    Br. Med. J. 1951; 1: 1114-1117
    • Mukabana W.R.
    • Takken W.
    • Coe R.
    • Knols B.G.

    Host-specific cues cause differential attractiveness of Kenyan men to the African malaria vector Anopheles gambiae.

    Malar. J. 2002; 1: 17
    • Neuhaus E.M.
    • Gisselmann G.
    • Zhang W.
    • Dooley R.
    • Störtkuhl K.
    • Hatt H.

    Odorant receptor heterodimerization in the olfactory system of Drosophila melanogaster.

    Nat. Neurosci. 2005; 8: 15-17
  8. Skin lipids: their biochemical uniqueness.

    Science. 1974; 186: 19-26
    • Nicolaides N.
    • Fu H.C.
    • Rice G.R.

    The skin surface lipids of man compared with those of eighteen species of animals.

    J. Invest. Dermatol. 1968; 51: 83-89
    • Njiru B.N.
    • Mukabana W.R.
    • Takken W.
    • Knols B.G.

    Trapping of the malaria vector Anopheles gambiae with odour-baited MM-X traps in semi-field conditions in western Kenya.

    Malar. J. 2006; 5: 39
    • Oh J.
    • Byrd A.L.
    • Park M.
    • Kong H.H.
    • Segre J.A.
    • NISC Comparative Sequencing Program

    Temporal stability of the human skin microbiome.

    Cell. 2016; 165: 854-866
    • Omasits U.
    • Ahrens C.H.
    • Müller S.
    • Wollscheid B.

    Protter: interactive protein feature visualization and integration with experimental proteomic data.

    Bioinformatics. 2014; 30: 884-886
    • Pang Z.
    • Chong J.
    • Zhou G.
    • de Lima Morais D.A.
    • Chang L.
    • Barrette M.
    • Gauthier C.
    • Jacques P.É.
    • Li S.
    • Xia J.

    MetaboAnalyst 5.0: narrowing the gap between raw spectra and functional insights.

    Nucleic Acids Res. 2021; 49: W388-W396
    • Ponlawat A.
    • Harrington L.C.

    Blood feeding patterns of Aedes aegypti and Aedes albopictus in Thailand.

    J. Med. Entomol. 2005; 42: 844-849
    • Prieto-Godino L.L.
    • Rytz R.
    • Cruchet S.
    • Bargeton B.
    • Abuin L.
    • Silbering A.F.
    • Ruta V.
    • Dal Peraro M.
    • Benton R.

    Evolution of acid-sensing olfactory circuits in Drosophilids.

    Neuron. 2017; 93: 661-676.e6
    • Qiu Y.T.
    • Smallegange R.C.
    • Van Loon J.J.
    • Ter Braak C.J.
    • Takken W.

    Interindividual variation in the attractiveness of human odours to the malaria mosquito Anopheles gambiae s. s.

    Med. Vet. Entomol. 2006; 20: 280-287
    • Rajan T.V.
    • Hein M.
    • Porte P.
    • Wikel S.

    A double-blinded, placebo-controlled trial of garlic as a mosquito repellant: a preliminary study.

    Med. Vet. Entomol. 2005; 19: 84-89
    • Raji J.I.
    • Melo N.
    • Castillo J.S.
    • Gonzalez S.
    • Saldana V.
    • Stensmyr M.C.
    • DeGennaro M.

    Aedes aegypti mosquitoes detect acidic volatiles found in human odor using the IR8a pathway.

    Curr. Biol. 2019; 29: 1253-1262.e7
    • Robinson A.
    • Busula A.O.
    • Voets M.A.
    • Beshir K.B.
    • Caulfield J.C.
    • Powers S.J.
    • Verhulst N.O.
    • Winskill P.
    • Muwanguzi J.
    • Birkett M.A.
    • et al.

    Plasmodium-associated changes in human odor attract mosquitoes.

    Proc. Natl. Acad. Sci. USA. 2018; 115: E4209-E4218
    • Rose N.H.
    • Sylla M.
    • Badolo A.
    • Lutomiah J.
    • Ayala D.
    • Aribodor O.B.
    • Ibe N.
    • Akorli J.
    • Otoo S.
    • Mutebi J.P.
    • et al.

    Climate and urbanization drive mosquito preference for humans.

    Curr. Biol. 2020; 30: 3570-3579.e6
    • Rytz R.
    • Croset V.
    • Benton R.

    Ionotropic receptors (IRs): chemosensory ionotropic glutamate receptors in Drosophila and beyond.

    Insect Biochem. Mol. Biol. 2013; 43: 888-897
    • Sato K.
    • Pellegrino M.
    • Nakagawa T.
    • Nakagawa T.
    • Vosshall L.B.
    • Touhara K.

    Insect olfactory receptors are heteromeric ligand-gated ion channels.

    Nature. 2008; 452: 1002-1006
    • Shirai O.
    • Tsuda T.
    • Kitagawa S.
    • Naitoh K.
    • Seki T.
    • Kamimura K.
    • Morohashi M.

    Alcohol ingestion stimulates mosquito attraction.

    J. Am. Mosq. Control Assoc. 2002; 18: 91-96
    • Shirai Y.
    • Funada H.
    • Seki T.
    • Morohashi M.
    • Kamimura K.

    Landing preference of Aedes albopictus (Diptera: Culicidae) on human skin among ABO blood groups, secretors or nonsecretors, and ABH antigens.

    J. Med. Entomol. 2004; 41: 796-799
    • Silbering A.F.
    • Rytz R.
    • Grosjean Y.
    • Abuin L.
    • Ramdya P.
    • Jefferis G.S.
    • Benton R.

    Complementary function and integrated wiring of the evolutionarily distinct Drosophila olfactory subsystems.

    J. Neurosci. 2011; 31: 13357-13375
    • Smallegange R.C.
    • Qiu Y.T.
    • Bukovinszkiné-Kiss G.
    • Van Loon J.J.
    • Takken W.

    The effect of aliphatic carboxylic acids on olfaction-based host-seeking of the malaria mosquito Anopheles gambiae sensu stricto.

    J. Chem. Ecol. 2009; 35: 933-943
    • Smallegange R.C.
    • Qiu Y.T.
    • van Loon J.J.
    • Takken W.

    Synergism between ammonia, lactic acid and carboxylic acids as kairomones in the host-seeking behaviour of the malaria mosquito Anopheles gambiae sensu stricto (Diptera: Culicidae).

    Chem. Senses. 2005; 30: 145-152
    • Steib B.M.
    • Geier M.
    • Boeckh J.

    The effect of lactic acid on odour-related host preference of yellow fever mosquitoes.

    Chem. Senses. 2001; 26: 523-528
    • Task D.
    • Lin C.C.
    • Vulpe A.
    • Afify A.
    • Ballou S.
    • Brbic M.
    • Schlegel P.
    • Raji J.
    • Jefferis G.
    • Li H.
    • et al.

    Chemoreceptor co-expression in Drosophila melanogaster olfactory neurons.

    eLife. 2022; 11: e72599
    • Thornton C.
    • Doré C.J.
    • Willson J.O.C.
    • Hubbard J.L.

    Effects of human blood group, sweating and other factors on individual host selection by species A of the Anopheles gambiae complex (Diptera, Culicidae).

    Bull. Entomol. Res. 1976; 66: 651-663
    • Verhulst N.O.
    • Mbadi P.A.
    • Kiss G.B.
    • Mukabana W.R.
    • van Loon J.J.
    • Takken W.
    • Smallegange R.C.

    Improvement of a synthetic lure for Anopheles gambiae using compounds produced by human skin microbiota.

    Malar. J. 2011; 10: 28
    • Verhulst N.O.
    • Qiu Y.T.
    • Beijleveld H.
    • Maliepaard C.
    • Knights D.
    • Schulz S.
    • Berg-Lyons D.
    • Lauber C.L.
    • Verduijn W.
    • Haasnoot G.W.
    • et al.

    Composition of human skin microbiota affects attractiveness to malaria mosquitoes.

    PLOS One. 2011; 6: e28991
    • Wood C.S.
    • Harrison G.A.
    • Doré C.
    • Weiner J.S.

    Selective feeding of Anopheles gambiae according to ABO blood group status.

    Nature. 1972; 239: 165
  9. R: A language and environment for statistical computing.

    R Foundation for Statistical Computing, 2021
    • Ye Z.
    • Liu F.
    • Sun H.
    • Ferguson S.T.
    • Baker A.
    • Ochieng S.A.
    • Zwiebel L.J.

    Discrete roles of Ir76b ionotropic coreceptor impact olfaction, blood feeding, and mating in the malaria vector mosquito Anopheles coluzzii.

    Proc. Natl. Acad. Sci. USA. 2022; 119 ()
    • Yeap H.L.
    • Endersby N.M.
    • Johnson P.H.
    • Ritchie S.A.
    • Hoffmann A.A.

    Body size and wing shape measurements as quality indicators of Aedes aegypti mosquitoes destined for field release.

    Am. J. Trop. Med. Hyg. 2013; 89: 78-92
    • Zhang H.
    • Zhu Y.
    • Liu Z.
    • Peng Y.
    • Peng W.
    • Tong L.
    • Wang J.
    • Liu Q.
    • Wang P.
    • Cheng G.

    A volatile from the skin microbiota of Flavivirus-infected hosts promotes mosquito attractiveness.

    Cell. 2022; 185: 2510-2522.e2516
    • Zhao Z.
    • Zung J.L.
    • Hinze A.
    • Kriete A.L.
    • Iqbal A.
    • Younger M.A.
    • Matthews B.J.
    • Merhof D.
    • Thiberge S.
    • Ignell R.
    • et al.

    Mosquito brains encode unique features of human odour to drive host seeking.

    Nature. 2022; 605: 706-712


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