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1.
Beniamino Caputo Riccardo Moretti Chiara Virgillito Mattia Manica Elena Lampazzi Giulia Lombardi Paola Serini Verena Pichler Nigel W. Beebe Alessandra della Torre Maurizio Calvitti 《Pest management science》2023,79(9):3167-3176
BACKGROUND
Incompatible insect technique (IIT) is a population suppression approach based on the release of males with manipulated Wolbachia infection inducing egg inviability in wild females. We here present results of multiple field releases of incompatible ARwP males carried out in 2019 in a 2.7-ha green area within urban Rome (Italy) to assess the effect on Aedes albopictus egg viability. Data are compared with results obtained in 2018, when the approach was tested for the first time in Europe.RESULTS
An average of 4674 ARwP males were released weekly for 7 weeks, resulting in a mean ARwP:wild male ratio of 1.1:1 (versus 0.7:1 in 2018). Egg-viability dynamics in ovitraps significantly varied between treated and control sites, with an estimated overall reduction of 35% (versus 15% in 2018). The estimated proportion of females classified as mated with ARwP males was 41.8% and the viability rate of eggs laid by these females (9.5%) was on average significantly lower than that of females only mated with wild males (87.8%); however, high variability in fertility was observed. Values of ARwP male competitiveness were 0.36 and 0.73 based on the overall viability rate of eggs in ovitraps and on female fertility, respectively; thus, well above the conventional 0.2 threshold for an effective suppressive impact in the field.CONCLUSIONS
Results further support the potential of IIT as a tool to contribute to Ae. albopictus control in the urban context, stressing the need for larger field trials to evaluate the cost-efficacy of the approach in temperate regions. © 2023 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry. 相似文献2.
Frédéric Baldacchino Beniamino Caputo Fabrice Chandre Andrea Drago Alessandra della Torre Fabrizio Montarsi Annapaola Rizzoli 《Pest management science》2015,71(11):1471-1485
Five species of invasive Aedes mosquitoes have recently become established in Europe: Ae. albopictus, Ae. aegypti, Ae. japonicus japonicus, Ae. koreicus and Ae. atropalpus. These mosquitoes are a serious nuisance for people and are also competent vectors for several exotic pathogens such as dengue and chikungunya viruses. As they are a growing public health concern, methods to control these mosquitoes need to be implemented to reduce their biting and their potential for disease transmission. There is a crucial need to evaluate methods as part of an integrated invasive mosquito species control strategy in different European countries, taking into account local Aedes infestations and European regulations. This review presents the control methods available or in development against invasive Aedes mosquitoes, with a particular focus on those that can be implemented in Europe. These control methods are divided into five categories: environmental (source reduction), mechanical (trapping), biological (e.g. copepods, Bacillus thuringiensis var. israelensis, Wolbachia), chemical (insect growth regulators, pyrethroids) and genetic (sterile insect technique and genetically modified mosquitoes). We discuss the effectiveness, ecological impact, sustainability and stage of development of each control method. © 2015 Society of Chemical Industry 相似文献
3.
The sterile insect technique (SIT) is used as an environment-friendly means of suppressing Mediterranean fruit fly (Ceratitis capitata; ‘medfly’) populations in the Arava valley of Israel. The technique depends on released sterile males effectively wresting
the reproductive potential away from wild, fertile males. Studies carried out in other countries have indicated that sterile
males may sometimes be of inferior sexual competitiveness in comparison with their wild counterparts and that this may inhibit
SIT efficacy. In the present study, field-cage experiments were conducted to investigate the sexual competitiveness of sterile
male medflies (genetic sexing strain Vienna 4/Tol-94) produced in and shipped from Guatemala, in the presence of wild males
in Israel. In addition, we checked whether pre-release chilling affects their sexual success. Sterile and wild males were
found to be similar in mating frequency, latency until mating, insemination probability, and duration of copulations during
which no sperm were stored. There was, however, weak evidence that copulations involving sperm storage were shorter for sterile
males. Chilling did not influence any element of male sexual performance. In both experiments, copulations culminating in
sperm storage by females were longer than those that failed, suggesting that processes occurring early on in copulation may
sometimes be the source of sexual failure. Overall, these results indicate a high standard of vigor in the sterile male medfiies
used in the SIT program presently followed in Israel. 相似文献
4.
Takashi Kuriwada Norikuni Kumano Keiko Shiromoto Dai Haraguchi Takashi Matsuyama Tsuguo Kohama 《国际虫害防治杂志》2014,60(3):160-165
Sterile insect technique (SIT) is widely used to eradicate target pest species. Its effectiveness depends on the ability of released sterile males to mate with wild females. In pest species with a female choice mating system, there is potential for female preference to evolve in the wild population in view of the resulting zero-fitness in females that mate with sterile males. The evolution of female preference against sterile males can, therefore, reduce the efficiency of the SIT as the likelihood decreases that sterile males will mate with wild females. We examined this experimentally by using the solanaceous fruit fly Bactrocera latifrons, a serious pest of solanaceous crops, by allowing female preference in mass-reared fruit flies to select between fertile and sterile males over 12 generations. However, this did not generate a rapid evolutionary response. Also the remating rate of females did not increase, even when the first mating partner was a sterile male. We discuss the implication of the results for the eradication project by the SIT program. 相似文献
5.
Aedes albopictus (Skuse) is a globally significant vector that complexifies management programs already contending with Aedes aegypti (L.). The Ae. albopictus mosquito is a daytime biting, container breeding, anthropophilic mosquito that is generally considered unresponsive to operational larviciding that does not also incorporate source reduction. S-methoprene is a readily available juvenile hormone mimic common to pest management. This 14-week study examines direct and indirect treatment efficacy using s-methoprene as an ultra-low volume (ULV) truck spray in area-wide operations against Ae. albopictus in the southeastern United States. An overall 63.3% reduction of Ae. albopictus adults and 47.8% reduction of deposited eggs in treatment areas were observed compared with control. Indirect plots saw reduction in Ae. albopictus adults by 32.7% and eggs by 32.3%. Using insect growth regulator bioassays, truck-mounted ULV application of s-methoprene was effective to an inhibition of emergence (IE) of ≥92% within directly treated (sprayed) areas and >65% IE among containers placed up to 90 m away. S-methoprene could still benefit urban vector management programs when applied at an operational scale. 相似文献
6.
Hasan Mohammad Al-Amin Narayan Gyawali Melissa Graham Mohammad Shafiul Alam Audrey Lenhart Leon E Hugo Gordana Rašić Nigel W Beebe Gregor J Devine 《Pest management science》2023,79(8):2846-2861
BACKGROUND
With no effective drugs or widely available vaccines, dengue control in Bangladesh is dependent on targeting the primary vector Aedes aegypti with insecticides and larval source management. Despite these interventions, the dengue burden is increasing in Bangladesh, and the country experienced its worst outbreak in 2019 with 101 354 hospitalized cases. This may be partially facilitated by the presence of intense insecticide resistance in vector populations. Here, we describe the intensity and mechanisms of resistance to insecticides commonly deployed against Ae. aegypti in Dhaka, Bangladesh.RESULTS
Dhaka Ae. aegypti colonies exhibited high-intensity resistance to pyrethroids. Using CDC bottle assays, we recorded 2–24% mortality (recorded at 24 h) to permethrin and 48–94% mortality to deltamethrin, at 10× the diagnostic dose. Bioassays conducted using insecticide–synergist combinations suggested that metabolic mechanisms were contributing to pyrethroid resistance, specifically multi-function oxidases, esterases, and glutathione S-transferases. In addition, kdr alleles were detected, with a high frequency (78–98%) of homozygotes for the V1016G mutation. A large proportion (≤ 74%) of free-flying and resting mosquitoes from Dhaka colonies survived exposure to standard applications of pyrethroid aerosols in an experimental free-flight room. Although that exposure affected the immediate host-seeking behavior of Ae. aegypti, the effect was transient in surviving mosquitoes.CONCLUSION
The intense resistance characterized in this study is likely compromising the operational effectiveness of pyrethroids against Ae. aegypti in Dhaka. Switching to alternative chemical classes may offer a medium-term solution, but ultimately a more sustainable and effective approach to controlling dengue vectors is required. © 2023 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry. 相似文献7.
BACKGROUND: Vector‐borne diseases continue to present significant threats to human, animal and plant health. Mosquitoes, houseflies, sand flies and stable flies are well‐known vectors of several human and animal pathogens. The toxicity of selected semiochemicals with molecular structures indicative of insecticidal activity was determined against these insect species with the aim of developing novel insecticides toxic to multiple insect species. RESULTS: Three semiochemicals, namely beta‐damascone, cyclemone A and melafleur, showed remarkable toxicity to three mosquitoes, Aedes aegypti L., Ae. albopictus (Skuse) and Anopheles quadrimaculatus Say, the housefly, Musca domestica L., the stable fly, Stomoxys calcitrans L., and the sand fly, Lutzomyia shannoni (Dyar). The chemicals were equally toxic to several field‐collected permethrin‐tolerant housefly strains. When formulated as 500 mL L?1 emulsifiable concentrates, the chemicals demonstrated stability and toxicity on filter paper and camouflage military fabrics, with persistence up to 8 days under laboratory conditions. The chemicals were equally effective under field conditions when evaluated on unpainted plywood panels, although a higher dosage was required under field conditions to achieve similar efficacy. CONCLUSION: Laboratory quantification of LC50 values and field efficacy of three semiochemicals as formulated compounds on mosquitoes, houseflies, stable flies and sand flies showed that these semiochemicals could serve as potent insecticides for multiple insect species. Copyright © 2010 Society of Chemical Industry 相似文献
8.
Unlu I Farajollahi A Healy SP Crepeau T Bartlett-Healy K Williges E Strickman D Clark GG Gaugler R Fonseca DM 《Pest management science》2011,67(8):965-974
BACKGROUND: Aedes (Stegomyia) albopictus (Skuse), the Asian tiger mosquito, is an introduced invasive species in the United States that is responsible for a significant proportion of service requests to local mosquito control programs. This container‐utilizing mosquito is refractory to standard mosquito abatement measures in the United States. This study is part of a USDA‐ARS project to develop an area‐wide management strategy for Ae. albopictus. The goal was to identify three study sites, similar in socioeconomic parameters, geography and Ae. albopictus abundance, in urban and suburban areas in Mercer and Monmouth counties in New Jersey. Prior service requests and light trap counts and also detailed county maps were used to chose nine preliminary sites (four in Mercer and five in Monmouth) where weekly surveillance for Ae. albopictus was performed throughout the 2008 active season. RESULTS: Although outliers were detected, socioeconomic variables in the study sites within each county were fairly consistent. Ae. albopictus abundance was associated with poverty levels and had the highest maxima in Mercer, although average mosquito abundance was similar in urban Mercer and suburban Monmouth. CONCLUSION: Three study sites in each county were identified for future studies. The summer‐long surveillance also revealed socioeconomic variables critical for the development of integrated mosquito management. Copyright © 2011 Society of Chemical Industry 相似文献
9.
Marina CF Bond JG Casas M Muñoz J Orozco A Valle J Williams T 《Pest management science》2011,67(1):114-121
BACKGROUND: Field trials were conducted during the wet and dry seasons in periurban and semi‐rural cemeteries in southern Mexico to determine the efficacy of a suspension concentrate formulation of spinosad (Tracer 480SC) on the inhibition of development of Aedes albopictus L. and Ae. aegypti Skuse. For this, oviposition traps were treated with spinosad (1 or 5 mg L?1), Bacillus thuringiensis israelensis (Bti, VectoBac 12AS), a sustained release formulation of temephos and a water control. RESULTS: Ae. albopictus was subordinate to Ae. aegypti during the dry season, but became dominant or codominant during the wet season at both sites. The two species could not be differentiated in field counts on oviposition traps. Mean numbers of larvae + pupae of Aedes spp. in Bti‐treated containers were similar to the control at both sites during both seasons. The duration of complete absence of aquatic stages varied from 5 to 13 weeks for the spinosad treatments and from 6 to 9 weeks for the temephos treatment, depending on site, season and product concentration. Predatory Toxorhynchites theobaldi Dyar and Knab suffered low mortality in control and Bti treatments, but high mortality in spinosad and temephos treatments. Egg counts and percentage of egg hatch of Aedes spp. increased significantly between the dry and wet seasons, but significant treatment differences were not detected. CONCLUSION: Temephos granules and a suspension concentrate formulation of spinosad were both highly effective larvicides against Ae. aegypti and Ae. albopictus. These compounds merit detailed evaluation for inclusion in integrated control programs targeted at Ae. aegypti and Ae. albopictus in regions where they represent important vectors of human diseases. Copyright © 2010 Society of Chemical Industry 相似文献
10.
BACKGROUND: Mosquitoes are the most important vectors of human pathogens. Wide‐scale use of pesticides has led to the development of resistance to most common insecticide groups. The need to develop novel products that have a low impact on human health and the environment is well established. The toxicity of selected semiochemicals with molecular structures indicative of insecticidal activity was determined against adult Aedes aegypti (L.) and Anopheles quadrimaculatus (Say). The two most active insecticides against Ae. aegypti were also evaluated against Ae. albopictus (Skuse). RESULTS: Fifteen semiochemicals classified as terpenoid alcohols, ketones or carboxylic esters showed toxicity to both mosquito species. Geranyl acetone (LC50 = 38.51 µg cm?2) followed by citronellol (LC50 = 48.55 µg cm?2) were the most toxic compounds to Ae. aegypti, while geraniol and lavonax, with LC50 values of 31.88 and 43.40 µg cm?2, showed the highest toxicity to An. quadrimaculatus. Both geranyl acetone and citronellol were highly toxic to Ae. albopioctus. No semiochemical showed fumigation activity against either species. All semiochemicals persisted for less than 24 h when tested on filter paper. CONCLUSION: Quantification of LC50 values of several semiochemicals against Ae. Aegypti, An. quadrimaculatus and Ae. albopioctus showed that semiochemicals not only modify insect behaviors but also hold potential as potent insecticides for mosquito control programs. Copyright © 2010 Society of Chemical Industry 相似文献
11.
Frequency and intensity of pyrethroid resistance through the CDC bottle bioassay and their association with the frequency of kdr mutations in Aedes aegypti (Diptera: Culicidae) from Mexico
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Beatriz Lopez‐Monroy Selene M Gutierrez‐Rodriguez Olga Karina Villanueva‐Segura Gustavo Ponce‐Garcia Franco Morales‐Forcada Leslie C Alvarez Adriana E Flores 《Pest management science》2018,74(9):2176-2184
BACKGROUND
The control of Aedes aegypti (L.), the main urban vector that causes arboviral diseases such as dengue, Chikungunya and Zika, has proved to be a challenge because of a rapid increase in insecticide resistance. Therefore, adequate monitoring of insecticide resistance is an essential element in the control of Ae. aegypti and the diseases it transmits. We estimated the frequency and intensity (Resistance Frequency Rapid Diagnostic Test [F‐RDT] and Resistance Intensity Rapid Diagnostic Test [I‐RDT]) of pyrethroid resistance in populations of Ae. aegypti from Mexico using the bottle bioassay and results were related to the frequencies of knockdown resistance (kdr) mutations V1016I and F1534C.RESULTS
All populations under study were resistant to the pyrethroids: bifenthrin (99%), d‐(cis–trans)‐phenothrin (6.3% cis, 91.7% trans) and permethrin (99.5%) according to F‐RDT, and showed moderate to high‐intensity resistance at 10× the diagnostic dose (DD) in I‐RDT. Frequencies of the kdr mutation V1016I in Ae. aegypti populations were correlated with moderate permethrin resistance at 10× DD, whereas F1534C mutation frequencies were correlated with high bifenthrin resistance at 5× DD. Both I1016 and C1535 were highly correlated with high‐intensity phenothrin resistance at 1× to 10× DD.CONCLUSIONS
This study showed that high frequencies of kdr mutations V1016I and F1534C are reflected in the results of F‐RDT and I‐RDT tests. Bioassays in conjunction with the characterization of genetic resistance mechanisms are indispensable in the strategic and rational management of resistance in mosquitoes. © 2018 Society of Chemical Industry12.
Sorada Tapsuwan Tim Capon Mia Tam John Kandulu Penny Measham Stuart Whitten 《国际虫害防治杂志》2020,66(4):351-367
AbstractFruit flies are a biosecurity threat to international trade of horticultural produce around the world. Area-wide management (AWM) of fruit flies offers a promising solution to coordinate farmers’ activities to fight against the spread of this pest. The incorporation of the sterile insect technique (SIT) may increase the effectiveness of AWM and lead to greater suppression and possible eradication of the fruit fly pest. This article presents findings from a choice experiment survey to ascertain the willingness to pay (WTP) for the benefits of a suite of AWM features and SIT. These features include the benefits from (1) coordinated fruit fly monitoring, (2) coordinated on-farm male annihilation of fruit flies, (3) management of fruit fly in residential areas, and (4) coordinated release of sterile flies. This is the first study of its kind to assess the WTP for AWM and SIT in a developed country. Results suggest that growers are willing to pay for SIT and coordinated fruit fly management in residential areas but are not willing to pay for other coordinated services that they are already practicing on their farms. 相似文献
13.
Sen‐Sung Cheng Hui‐Ting Chang Chun‐Ya Lin Pin‐Sheng Chen Chin‐Gi Huang Wei‐June Chen Shang‐Tzen Chang 《Pest management science》2009,65(3):339-343
BACKGROUND: The current study investigates, for the first time, the mosquito larvicidal activities of leaf and twig essential oils from Clausena excavata Burm. f. and their individual constituents against Aedes aegypti L. and Aedes albopictus Skuse larvae. The yields of essential oils obtained from hydrodistillation were compared, and their constituents were determined by GC‐MS analyses. RESULTS: The LC50 values of leaf and twig essential oils against fourth‐instar larvae of Ae. aegypti and Ae. albopictus were 37.1–40.1 µg mL?1 and 41.1–41.2 µg mL?1 respectively. This study demonstrated that C. excavata leaf and twig essential oils possess mosquito larvicidal activity, inhibiting the growth of mosquito larvae for both species at a low concentration. In addition, results of larvicidal assays showed that the effective constituents in leaf and twig essential oils were limonene, γ‐terpinene, terpinolene, β‐myrcene, 3‐carene and p‐cymene. The LC50 values of these constituents against both mosquito larvae were below 50 µg mL?1. Among these effective constituents, limonene had the best mosquito larvicidal activity, with LC50 of 19.4 µg mL?1 and 15.0 µg mL?1 against Ae. aegypti and Ae. albopictus larvae respectively. CONCLUSION: The findings suggested that the essential oils from Clausena excavata leaf and twig and their effective constituents may be explored as a potential natural larvicide. Copyright © 2008 Society of Chemical Industry 相似文献
14.
Larvicidal and residual activity of imidazolium salts against Aedes aegypti (Diptera: Culicidae)
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Emanuelle Goellner Ademir Tramontini Schmitt Júlia Lacerda Couto Nicolas Drumm Müller Harry Luiz Pilz‐Junior Henri Stephan Schrekker Carlos Eugenio Silva Onilda Santos da Silva 《Pest management science》2018,74(4):1013-1019
BACKGROUND
Aedes aegypti is an important mosquito species that can transmit several arboviruses such as dengue fever, yellow fever, chikungunya and zika. Because these mosquitoes are becoming resistant to most chemical insecticides used around the world, studies with new larvicides should be prioritized. Based on the known biological profile of imidazolium salts (IS), the objective of this study was to evaluate the potential of six IS as larvicides against Ae. aegypti, as tested against Ae. aegypti larvae. Larval mortality was measured after 24 and 48 h, and residual larvicidal activity was also evaluated.RESULTS
Promising results were obtained with aqueous solutions of two IS: 1‐n‐octadecyl‐3‐methylimidazolium chloride ( C 18 MImCl ) and 1‐n‐hexadecyl‐3‐methylimidazolium methanesulfonate ( C 16 MImMeS ), showing up to 90% larval mortality after 48 h exposure. C 18 MImCl was more effective than C 16 mIMeS , causing mortality until day 15 after exposure. An application of C 18 MImCl left to dry under ambient conditions for at least 2 months and then dissolved in water showed a more pronounced residual effect (36 days with 95% mortality and 80% mortality up to 78 days).CONCLUSION
This is the first study to show the potential of IS in the control of Ae. aegypti. Further studies are needed to understand the mode of action of these compounds in the biological development of this mosquito species. © 2017 Society of Chemical Industry15.
为了解草间钻头蛛Hylyphantes graminicola体内共生菌的组成及共生菌对宿主的影响,通过高通量测序技术确定其体内的优势共生菌,采用常规PCR法对草间钻头蛛进行优势共生菌的感染检测,并研究了优势共生菌感染对草间钻头蛛子代的发育历期和性比的影响。结果表明:经高通量测序细菌16S r DNA的V3、V4区,确定草间钻头蛛的优势共生菌为沃尔巴克氏体Wolbachia和Cardinium。167头被检测蜘蛛中,Cardinium的感染率为100.00%,沃尔巴克氏体的感染率为38.92%。感染沃尔巴克氏体的草间钻头蛛F1代雌蛛的2龄期、3龄期、4龄期和总历期均极显著低于未感染的草间钻头蛛,感染沃尔巴克氏体的草间钻头蛛F1代雌蛛1龄期显著低于未感染的F1代个体,感染和未感染沃尔巴克氏体的草间钻头蛛F1代雌蛛的卵期和5龄期均无显著差异。感染沃尔巴克氏体后,草间钻头蛛F1代雄蛛的1龄期和总历期极显著缩短,2龄期、3龄期和5龄期显著缩短,而卵期和4龄期与未感染沃尔巴克氏体的F1代雄蛛之间无显著差异。另外,沃尔巴克氏体感染极显著提高了草间钻头蛛的子代性比。 相似文献
16.
S.H.P.P. Karunaratne T.C. Weeraratne M.D.B. Perera S.N. Surendran 《Pesticide biochemistry and physiology》2013
Unprecedented incidence of dengue has been recorded in Sri Lanka in recent times. Source reduction and use of insecticides in space spraying/fogging and larviciding, are the primary means of controlling the vector mosquitoes Aedes aegypti and Ae. albopictus in the island nation. A study was carried out to understand insecticide cross-resistance spectra and mechanisms of insecticide resistance of both these vectors from six administrative districts, i.e. Kandy, Kurunegala, Puttalam, Gampaha, Ratnapura and Jaffna, of Sri Lanka. Efficacy of the recommended dosages of frequently used insecticides in space spraying and larviciding in dengue vector control programmes was also tested. 相似文献
17.
为建立基于X射线辐照的害虫不育技术,以梨小食心虫2、5、8日龄的雄蛹为研究对象,利用X射线对其进行0(CK)、67、133和200 Gy剂量的辐照处理,明确其最适辐照蛹龄;并对最适辐照蛹龄的梨小食心虫进行X射线辐照,明确辐照处理对其羽化成虫的繁殖能力、寿命、飞行能力和交配竞争力的影响。结果表明,梨小食心虫最适辐照蛹龄为8日龄;雄蛹经67 Gy与133 Gy辐照剂量处理后,与其羽化后成虫交配后的雌成虫单雌产卵量分别为25.14粒和24.56粒,卵孵化率分别为18.21%和14.61%,寿命分别为16.80 d和15.60 d,均显著低于对照;梨小食心虫雄蛹辐照处理对其羽化成虫与雌成虫的交配次数无显著影响,但辐照处理雄蛹羽化后的雄成虫与雌成虫交配后,雌成虫的日产卵量比对照明显减少,且辐照剂量越高,日产卵量变化幅度越小,产卵期也越短;辐照处理对雄蛹羽化后雄成虫的飞行能力无明显影响,但其与雌成虫的交配竞争指数下降为0.15。 相似文献
18.
Jeffers LA Shen H Khalil S Bissinger BW Brandt A Gunnoe TB Roe RM 《Pest management science》2012,68(1):49-59
BACKGROUND: Trypsin modulating oostatic factor (TMOF), a decapeptide (Tyr-Asp-Pro-Ala-Pro6) isolated from the ovaries of the adult yellow fever mosquito, Aedes aegypti, regulates trypsin biosynthesis. TMOF per os is insecticidal to larval mosquitoes and a good model for the development of technologies to enhance protein insecticide activity by reduced catabolism and/or enhanced delivery to the target. RESULTS: TFA-TMOF-K (TFA = trifluoro acetyl) allowed the specific conjugation of monodispersed, aliphatic polyethylene glycol (PEG) to the amino group of lysine-producing TMOF-K-methyl(ethyleneglycol)7-O-propionyl (TMOF-K-PEG7P). The addition of lysine to TMOF reduced its per os larval mosquitocidal activity relative to the parent TMOF, but conjugation of TMOF-K with methyl(ethyleneglycol)7-O-propionyl increased its toxicity 5.8- and 10.1-fold above that of TMOF and TMOF-K for Ae. aegypti. Enhanced insecticidal activity was also found for larval Ae. albopictus and for neonates of Heliothis virescens and Heliocoverpa zea. Only TMOF-K was found by MS/MS in the hemolymph for H. virescens fed on TMOF-K-PEG7P. No TMOF, TMOF-K or PEGylated TMOF-K was detected in the hemolymph after topical applications. CONCLUSIONS: This research suggests that aliphatic PEG polymers can be used as a new method for increasing the activity of insecticidal proteins. Copyright © 2011 Society of Chemical Industry 相似文献
19.
BACKGROUND: One of the most studied actions of juvenile hormone (JH) is its ability to modulate ecdysteroid signaling during insect development and metamorphosis. Previous studies in mosquitoes showed that 20‐hydroxyecdysone (20E) regulates vitellogenin synthesis. However, the action of JH and its mimics, e.g. methoprene, on female reproduction of mosquitoes remains unknown. RESULTS: Here, a major malaria vector, Anopheles gambiae Giles, was used as a model insect to study the action of methoprene on female reproduction. Ecdysteroid titers and expression profiles of ecdysone‐regulated genes were determined before and after a blood meal. An ecdysteroid peak was detected at 12 h post blood meal (PBM). The maximum expression of ecdysone‐regulated genes, such as ecdysone receptor (EcR), hormone receptor 3 (HR3) and vitellogenin (Vg) gene, coincided with the ecdysteroid peak. Interestingly, topical application of methoprene at 6 h PBM delayed ovarian development and egg maturation by suppressing the expression of ecdysone‐regulated genes in female mosquitoes. CONCLUSION: The data suggest that ecdysteroid titers are correlated with Vg synthesis, and methoprene affects vitellogenesis by modulating ecdysteroid action in A. gambiae. Copyright © 2010 Society of Chemical Industry 相似文献
20.
Humayra Akter Benjamin G Fanson Jess Inskeep Polychronis Rempoulakis 《Pest management science》2023,79(12):4858-4867