Last data update: Mar 17, 2025. (Total: 48910 publications since 2009)
Records 1-4 (of 4 Records) |
Query Trace: Reimer LJ[original query] |
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Climate change, malaria and neglected tropical diseases: a scoping review
Klepac P , Hsieh JL , Ducker CL , Assoum M , Booth M , Byrne I , Dodson S , Martin DL , Turner CMR , van Daalen KR , Abela B , Akamboe J , Alves F , Brooker SJ , Ciceri-Reynolds K , Cole J , Desjardins A , Drakeley C , Ediriweera DS , Ferguson NM , Gabrielli AF , Gahir J , Jain S , John MR , Juma E , Kanayson P , Deribe K , King JD , Kipingu AM , Kiware S , Kolaczinski J , Kulei WJ , Laizer TL , Lal V , Lowe R , Maige JS , Mayer S , McIver L , Mosser JF , Nicholls RS , Nunes-Alves C , Panjwani J , Parameswaran N , Polson K , Radoykova HS , Ramani A , Reimer LJ , Reynolds ZM , Ribeiro I , Robb A , Sanikullah KH , Smith DRM , Shirima GG , Shott JP , Tidman R , Tribe L , Turner J , Vaz Nery S , Velayudhan R , Warusavithana S , Wheeler HS , Yajima A , Abdilleh AR , Hounkpatin B , Wangmo D , Whitty CJM , Campbell-Lendrum D , Hollingsworth TD , Solomon AW , Fall IS . Trans R Soc Trop Med Hyg 2024 To explore the effects of climate change on malaria and 20 neglected tropical diseases (NTDs), and potential effect amelioration through mitigation and adaptation, we searched for papers published from January 2010 to October 2023. We descriptively synthesised extracted data. We analysed numbers of papers meeting our inclusion criteria by country and national disease burden, healthcare access and quality index (HAQI), as well as by climate vulnerability score. From 42 693 retrieved records, 1543 full-text papers were assessed. Of 511 papers meeting the inclusion criteria, 185 studied malaria, 181 dengue and chikungunya and 53 leishmaniasis; other NTDs were relatively understudied. Mitigation was considered in 174 papers (34%) and adaption strategies in 24 (5%). Amplitude and direction of effects of climate change on malaria and NTDs are likely to vary by disease and location, be non-linear and evolve over time. Available analyses do not allow confident prediction of the overall global impact of climate change on these diseases. For dengue and chikungunya and the group of non-vector-borne NTDs, the literature privileged consideration of current low-burden countries with a high HAQI. No leishmaniasis papers considered outcomes in East Africa. Comprehensive, collaborative and standardised modelling efforts are needed to better understand how climate change will directly and indirectly affect malaria and NTDs. |
Tiger on the prowl: Invasion history and spatio-temporal genetic structure of the Asian tiger mosquito Aedes albopictus (Skuse 1894) in the Indo-Pacific
Maynard AJ , Ambrose L , Cooper RD , Chow WK , Davis JB , Muzari MO , van den Hurk AF , Hall-Mendelin S , Hasty JM , Burkot TR , Bangs MJ , Reimer LJ , Butafa C , Lobo NF , Syafruddin D , Maung Maung YN , Ahmad R , Beebe NW . PLoS Negl Trop Dis 2017 11 (4) e0005546 ![]() BACKGROUND: Within the last century, increases in human movement and globalization of trade have facilitated the establishment of several highly invasive mosquito species in new geographic locations with concurrent major environmental, economic and health consequences. The Asian tiger mosquito, Aedes albopictus, is an extremely invasive and aggressive daytime-biting mosquito that is a major public health threat throughout its expanding range. METHODOLOGY/PRINCIPAL FINDINGS: We used 13 nuclear microsatellite loci (on 911 individuals) and mitochondrial COI sequences to gain a better understanding of the historical and contemporary movements of Ae. albopictus in the Indo-Pacific region and to characterize its population structure. Approximate Bayesian computation (ABC) was employed to test competing historical routes of invasion of Ae. albopictus within the Southeast (SE) Asian/Australasian region. Our ABC results show that Ae. albopictus was most likely introduced to New Guinea via mainland Southeast Asia, before colonizing the Solomon Islands via either Papua New Guinea or SE Asia. The analysis also supported that the recent incursion into northern Australia's Torres Strait Islands was seeded chiefly from Indonesia. For the first time documented in this invasive species, we provide evidence of a recently colonized population (the Torres Strait Islands) that has undergone rapid temporal changes in its genetic makeup, which could be the result of genetic drift or represent a secondary invasion from an unknown source. CONCLUSIONS/SIGNIFICANCE: There appears to be high spatial genetic structure and high gene flow between some geographically distant populations. The species' genetic structure in the region tends to favour a dispersal pattern driven mostly by human movements. Importantly, this study provides a more widespread sampling distribution of the species' native range, revealing more spatial population structure than previously shown. Additionally, we present the most probable invasion history of this species in the Australasian region using ABC analysis. |
Mosquito genomics. Highly evolvable malaria vectors: the genomes of 16 Anopheles mosquitoes.
Neafsey DE , Waterhouse RM , Abai MR , Aganezov SS , Alekseyev MA , Allen JE , Amon J , Arca B , Arensburger P , Artemov G , Assour LA , Basseri H , Berlin A , Birren BW , Blandin SA , Brockman AI , Burkot TR , Burt A , Chan CS , Chauve C , Chiu JC , Christensen M , Costantini C , Davidson VL , Deligianni E , Dottorini T , Dritsou V , Gabriel SB , Guelbeogo WM , Hall AB , Han MV , Hlaing T , Hughes DS , Jenkins AM , Jiang X , Jungreis I , Kakani EG , Kamali M , Kemppainen P , Kennedy RC , Kirmitzoglou IK , Koekemoer LL , Laban N , Langridge N , Lawniczak MK , Lirakis M , Lobo NF , Lowy E , MacCallum RM , Mao C , Maslen G , Mbogo C , McCarthy J , Michel K , Mitchell SN , Moore W , Murphy KA , Naumenko AN , Nolan T , Novoa EM , O'Loughlin S , Oringanje C , Oshaghi MA , Pakpour N , Papathanos PA , Peery AN , Povelones M , Prakash A , Price DP , Rajaraman A , Reimer LJ , Rinker DC , Rokas A , Russell TL , Sagnon N , Sharakhova MV , Shea T , Simao FA , Simard F , Slotman MA , Somboon P , Stegniy V , Struchiner CJ , Thomas GW , Tojo M , Topalis P , Tubio JM , Unger MF , Vontas J , Walton C , Wilding CS , Willis JH , Wu YC , Yan G , Zdobnov EM , Zhou X , Catteruccia F , Christophides GK , Collins FH , Cornman RS , Crisanti A , Donnelly MJ , Emrich SJ , Fontaine MC , Gelbart W , Hahn MW , Hansen IA , Howell PI , Kafatos FC , Kellis M , Lawson D , Louis C , Luckhart S , Muskavitch MA , Ribeiro JM , Riehle MA , Sharakhov IV , Tu Z , Zwiebel LJ , Besansky NJ . Science 2015 347 (6217) 1258522 ![]() Variation in vectorial capacity for human malaria among Anopheles mosquito species is determined by many factors, including behavior, immunity, and life history. To investigate the genomic basis of vectorial capacity and explore new avenues for vector control, we sequenced the genomes of 16 anopheline mosquito species from diverse locations spanning ~100 million years of evolution. Comparative analyses show faster rates of gene gain and loss, elevated gene shuffling on the X chromosome, and more intron losses, relative to Drosophila. Some determinants of vectorial capacity, such as chemosensory genes, do not show elevated turnover but instead diversify through protein-sequence changes. This dynamism of anopheline genes and genomes may contribute to their flexible capacity to take advantage of new ecological niches, including adapting to humans as primary hosts. |
Barrier screens: a method to sample blood-fed and host-seeking exophilic mosquitoes
Burkot TR , Russell TL , Reimer LJ , Bugoro H , Beebe NW , Cooper RD , Sukawati S , Collins FH , Lobo NF . Malar J 2013 12 49 BACKGROUND: Determining the proportion of blood meals on humans by outdoor-feeding and resting mosquitoes is challenging. This is largely due to the difficulty of finding an adequate and unbiased sample of resting, engorged mosquitoes to enable the identification of host blood meal sources. This is particularly difficult in the south-west Pacific countries of Indonesia, the Solomon Islands and Papua New Guinea where thick vegetation constitutes the primary resting sites for the exophilic mosquitoes that are the primary malaria and filariasis vectors. METHODS: Barrier screens of shade-cloth netting attached to bamboo poles were constructed between villages and likely areas where mosquitoes might seek blood meals or rest. Flying mosquitoes, obstructed by the barrier screens, would temporarily stop and could then be captured by aspiration at hourly intervals throughout the night. RESULTS: In the three countries where this method was evaluated, blood-fed females of Anopheles farauti, Anopheles bancroftii, Anopheles longirostris, Anopheles sundaicus, Anopheles vagus, Anopheles kochi, Anopheles annularis, Anopheles tessellatus, Culex vishnui, Culex quinquefasciatus and Mansonia spp were collected while resting on the barrier screens. In addition, female Anopheles punctulatus and Armigeres spp as well as male An. farauti, Cx. vishnui, Cx. quinquefasciatus and Aedes species were similarly captured. CONCLUSIONS: Building barrier screens as temporary resting sites in areas where mosquitoes were likely to fly was an extremely time-effective method for collecting an unbiased representative sample of engorged mosquitoes for determining the human blood index. |
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