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The lethal efficacy of three vaporizing insecticides – 0.6% transfluthrin and 0.6% metofluthrin in portable battery‐powered blowers and 2.5% bioallethrin in electric mats – was assessed in unventilated and ventilated screened room conditions against Ochlerotatus togoi (Theobald) females. The mosquitoes were highly susceptible to transfluthrin and metofluthrin. Mean mortality rates of mosquitoes exposed to transfluthrin and metofluthrin in portable blowers ranged from 95 to 100% at a distance of 10 cm from mosquito cages in both room conditions; this was a >2.4‐fold greater mortality rate than for mosquitoes exposed to bioallethrin in electric mats under the same conditions (mean 40%). The three insecticides showed a decrease in mortality rate at a distance of 70 cm: rates were <5.0, 32.5, 85.0 and 90.0% for 10, 30, 60, and 120 min after exposure, respectively, for the same exposure periods in a closed room. In semi‐field repellent tests with human volunteers, 0.6% concentrations of transfluthrin and metofluthrin provided mean biting protection of 76.1 and 59.9% on legs, 68.5 and 52.1% on arms, 63.4 and 63.1% on the chest, and 87.1 and 52.9% on the face, respectively. In field tests, 0.6% transfluthrin effectively repelled Armigeres subalbatus and Aedes albopictus, with mean biting protection of 85.4 and 89.3% on exposed legs and arms, respectively, of the human volunteers. Metofluthrin at 0.6% also effectively repelled Ar. subalbatus, with mean biting protection levels of 71.8 and 73.5% on the legs and arms, respectively. There was no significant difference of repellent activity between the two vaporizing insecticides in the field.  相似文献   
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Ostrinia palustralis memnialis is an oligophagous insect that feeds on the species of the genus Rumex. Continuous rearing of O. palustralis memnialis was carried out from 2004 to 2005, and its general biology was studied. The preliminary host specificity test showed a promising result for O. palustralis memnialis as a potential biological control agent for Rumex spp.  相似文献   
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We investigated to minimize the dependency on the use of chemicals and thus develop safe and environmental friendly control program for the most perishable fruits i.e., apple,‘ber’, guava and mango. Our findings on the composition of fruit fly species reveal that Bactrocera dorsalis was dominant on apple (33.96% existence), Corpomya incompleta on‘ber’(51.91% existence) and Bactrocera zonata on guava (49.62% existence) and mango (74.66% existence). The correlation between population and infestation percentage was non‐significant in apple orchards, whereas positive and highly significant in between population and infestation, as well as on the cumulative basis in‘ber’, guava and mango orchards during 1998‐1999. Hoeing, baiting and methyl eugenol were statistically equal resulting about 77% decrease in infestation. The maximum control of 91.68% was observed where all four‐control operations including Dipterex® were integrated together. Weather factors, when computed together, had maximum effect on population fluctuation and infestation with rainfall contributing the major role. For guava fruits, the months of August (14.06A individuals/trap/day) and September (13.81A individuals/trap/day) were important, resulting in maximum infestation percentage of 10.76 to 14.74%, respectively.  相似文献   
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ABSTRACT Four new species of Symphypleona, Ptenothrix plumiseta, Deuterosminthurus serratus, Sminthurus annulatus, Smithurinus distinctus , are described from Korea. Especially two genera, Deuterosminthurus and Sminthurinus are new record to Korea. Korean Collembola Symphypleona add up to 18 species, 11 genera in 6 family.  相似文献   
110.
Climate change poses a considerable threat to the biodiversity of high latitude and altitude ecosystems, with alpine regions across the world already showing responses to warming. However, despite probable hydrological change as alpine glaciers and snowpacks shrink, links between alpine stream biota and reduced meltwater input are virtually unknown. Using data from the French Pyrénées, we demonstrate that taxonomic richness and total abundance of stream macroinvertebrates increase significantly as meltwater (snow melt and glacier melt) contributions to river flow decrease. Macroinvertebrate species showed a gradation of optimum meltwater conditions at which they persist. For example: Habroleptoides berthelemyi (Ephemeroptera), Perla grandis (Plecoptera) and Rhithrogena spp. (Ephemeroptera) increased in abundance when meltwater contributions to streamflow decrease, whereas in contrast, Rhyacophila angelieri (Trichoptera) and Diamesa latitarsis spp. (Diptera) decreased in abundance. Changes in alpine stream macroinvertebrate community composition as meltwater contributions decline were associated with lower suspended sediment concentration, and higher water temperature, electrical conductivity and pH. Our results suggest α diversity (at a site) of streams presently fed by meltwaters will increase with future meltwater reductions. However, β diversity (between‐sites) will be reduced as snow melt and glacier melt decrease because the habitat heterogeneity associated with spatiotemporal variability of water source contributions will become lower as meltwater contributions decline. Extinction of some endemic alpine aquatic species (such as the Pyrenean caddis fly R. angelieri) is predicted with reduced meltwater inputs, leading to decreases in γ diversity (region). Our identification of significant links between meltwater production and stream macroinvertebrate biodiversity has wider implications for the conservation of alpine river ecosystems under scenarios of climate change induced glacier and snowpack loss.  相似文献   
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