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Title:Invasion dynamics of the disease vector Aedes japonicus in Spain
Authors:ID Lucati, Federica (Author)
ID Chaoui, Fatima (Author)
ID Gómez, Maria Miranda (Author)
ID Caner, Jenny (Author)
ID Adam, Katja (Author)
ID Anicic, Nikoleta (Author)
ID Bakran-Lebl, Karin (Author)
ID Barandika, Jesús (Author)
ID Barrón, Manuel (Author)
ID Barzon, Luisa (Author)
Files:URL https://www.nature.com/articles/s41598-026-49121-x
 
.pdf RAZ_Lucati_Federica_2026.pdf (2,79 MB)
MD5: FB804F69DACA6DB705FC60CDAB281EB2
 
Language:English
Work type:Article
Typology:1.01 - Original Scientific Article
Organization:FAMNIT - Faculty of Mathematics, Science and Information Technologies
Abstract:Native to East Asia, the Asian bush mosquito (Aedes japonicus) has recently expanded its global range, with established invasive populations in Europe and North America. Given its potential role as a vector of various arboviruses, understanding its invasion process and ecological dynamics is crucial for managing its spread and mitigating public health risks. In the Iberian Peninsula, the species was first detected in Asturias in 2018 and has since expanded to neighbouring regions. Here, we elucidate the invasion pathways and possible origins of Ae. japonicus populations in Spain using sequence data and microsatellite markers, and by screening for the presence of maternally transmitted bacteria of the genus Wolbachia. We analysed 635 Ae. japonicus from 14 countries, including Japan (native range), the United States, and 12 European countries. No clear association between haplotypes and geographical location was detected in any of the three genes analysed (nuclear ITS2, mitochondrial COI and ND4). Wolbachia was not detected in any of the screened samples. In contrast, microsatellite-based population structure analyses showed that most Spanish samples clustered closely with those from College Park, Maryland (USA), located near the Port of Baltimore, one of the largest ports in the United States and a recognised gateway for invasive species introductions. Northern Spain hosts major seaports such as Bilbao and Gijón, whereas the nearest established Ae. japonicus population in Europe lies over 1,000 km away in northeastern France. Taken together, these findings suggest that the most plausible invasion route of Ae. japonicus into Spain involves maritime transport from the eastern coast of the United States to northern Spanish ports, likely accompanied by additional minor introductions of European origin. The inclusion of additional microsatellite loci originally developed for Ae. albopictus yielded results consistent with those obtained using Ae. japonicus-specific loci, reinforcing the robustness of the observed patterns. This work provides new insights into the invasion process of Ae. japonicus in Europe and highlights the need for continuous monitoring and tailored interventions at key ports of entry.
Keywords:Aedes, invasive mosquitoes, invasion genetics, northern Spain, points of entry, wsp marker
Publication version:Version of Record
Publication date:06.05.2026
Year of publishing:2026
Number of pages:str. 1-12
Numbering:Vol. 16, article no. 20733
PID:20.500.12556/RUP-23547 This link opens in a new window
UDC:595.771.1(460)
ISSN on article:2045-2322
DOI:10.1038/s41598-026-49121-x This link opens in a new window
COBISS.SI-ID:288915715 This link opens in a new window
Publication date in RUP:26.08.2026
Views:53
Downloads:2
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Record is a part of a journal

Title:Scientific reports
Shortened title:Sci. rep.
Publisher:Nature Publishing Group
ISSN:2045-2322
COBISS.SI-ID:18727432 This link opens in a new window

Licences

License:CC BY 4.0, Creative Commons Attribution 4.0 International
Link:http://creativecommons.org/licenses/by/4.0/
Description:This is the standard Creative Commons license that gives others maximum freedom to do what they want with the work as long as they credit the author.

Secondary language

Language:Slovenian
Abstract:Azijski grmičasti komar (Aedes japonicus), ki izvira iz vzhodne Azije, je v zadnjem času razširil svoje območje razširjenosti po svetu, pri čemer so se v Evropi in Severni Ameriki že vzpostavile invazivne populacije. Glede na njegovo potencialno vlogo prenašalca različnih arbovirusov je razumevanje procesa njegovega širjenja in ekološke dinamike ključnega pomena za obvladovanje njegovega razširjanja ter zmanjševanje tveganj za javno zdravje. Na Iberskem polotoku je bila vrsta prvič zaznana v Asturiji leta 2018, od takrat pa se je razširila v sosednje regije. V tej raziskavi smo preučili poti širjenja in možne izvore populacij vrste Ae. japonicus v Španiji z uporabo podatkov o zaporedjih in mikrosatelitnih označevalcev ter s preverjanjem prisotnosti materinsko prenašanih bakterij rodu Wolbachia. Analizirali smo 635 osebkov vrste Ae. japonicus iz 14 držav, vključno z Japonsko (območje avtohtone razširjenosti), Združenimi državami Amerike in 12 evropskimi državami. Pri nobenem od treh analiziranih genov (jedrnem ITS2 ter mitohondrijskih genih COI in ND4) nismo ugotovili jasne povezave med haplotipi in geografskim območjem. Bakterije Wolbachia niso bile ugotovljene v nobenem od pregledanih vzorcev. Nasprotno pa so analize populacijske strukture na podlagi mikrosatelitov pokazale, da se je večina španskih vzorcev tesno združevala z vzorci iz College Parka v Marylandu (ZDA), ki leži v bližini pristanišča Baltimore, enega največjih pristanišč v Združenih državah Amerike in prepoznanega vstopnega območja za vnos invazivnih vrst. V severni Španiji so pomembna morska pristanišča, kot sta Bilbao in Gijón, medtem ko je najbližja vzpostavljena evropska populacija vrste Ae. japonicus več kot 1.000 km stran, v severovzhodni Franciji. Na podlagi vseh ugotovitev sklepamo, da najverjetnejša pot vnosa vrste Ae. japonicus v Španijo vključuje pomorski promet z vzhodne obale Združenih držav Amerike v severnošpanska pristanišča, verjetno pa je prišlo tudi do dodatnih, manjših vnosov evropskega izvora. Vključitev dodatnih mikrosatelitnih lokusov, ki so bili prvotno razviti za vrsto Ae. albopictus, je dala rezultate, skladne z rezultati, pridobljenimi z lokusi, specifičnimi za Ae. japonicus, kar dodatno potrjuje zanesljivost ugotovljenih vzorcev. Raziskava prinaša nova spoznanja o procesu širjenja vrste Ae. japonicus v Evropi ter poudarja potrebo po stalnem spremljanju in ciljno usmerjenih ukrepih na ključnih vstopnih pristaniščih.
Keywords:Aedes, invazivni komarji, genetika invazije, severna Španija, vstopne točke, wsp marker


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