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1.
The life history ofNephus reunioni, introduced from the Reunioni island has been studied. Optimum temperature for the development of the entomophagous insect is 24–25°C. In this case the population has the highest survival at preimaginal stages, life duration of adults and reproductive capacity. The rate of population growth was calculated by the formula:
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2.
Spalgis epius (Lepidoptera: Lycaenidae) has been recorded as a potential predator of various species of mealybug crop pests worldwide. We describe the mass rearing of S. epius, as no information on this topic is available. Outdoor nylon tent cages of different dimensions were provided to achieve mating and oviposition as S. epius adults did not mate in the laboratory cages. Adults mated only in the tent cage (6×6×10 m) placed over a native tree (9 m height). The presence of a tree canopy inside the cage is essential to achieve courtship and mating. Gravid females of S. epius deposited eggs on the mealybug-infested pumpkins inside the different sized nylon cages with or without a bush/tree. Spalgis epius eggs were maintained on mealybug-infested pumpkins in the laboratory and developmental stages of the predator were reared. Adults fed on various diets laid significantly higher number of eggs than those of starved individuals. Spalgis epius with a life cycle completed in 21.2 days and 55.7 larvae, could be reared on a single mealybug-infested pumpkin.  相似文献   
3.
Many species of mealybugs (Hemiptera: Pseudococcidae) are serious pests of economically important crops worldwide. We evaluated the influence of constant temperatures: 14, 16, 18, 20, 22, 24, 26, 28, 30, 32 and 34°C on the life history and demographic parameters of Spalgis epius (Lepidoptera: Lycaenidae), a candidate biological control agent of various species of mealybugs. No eggs completed their development at 14 and 34°C. Egg-to-adult developmental time significantly decreased from 89.9 days at 16°C to 20.4 days at 32°C. The estimated lower temperature threshold of 10.2°C and 416.6 degree-days were required to complete egg-to-adult development. The mortality of immature stages was maximum at 16 and 32°C and minimum at 28°C. The highest lifetime fecundity was recorded at 28°C and it significantly decreased at 32°C. The longevity of adults was about three times more at 16°C than at 30 and 32°C. The net reproductive rate (R 0) significantly increased with increased temperatures up to 28°C and significantly decreased at 32°C. The mean generation time (T) significantly decreased with increased temperature up to 30°C, but it significantly increased at 32°C. The intrinsic rate of population increase (r m ) was highest at 30°C. The finite rate of increase (λ) was significantly greater at 30°C than at other temperatures. These data suggest that S. epius can develop, reproduce and survive in a wide range of temperatures and thus could be regarded a potential biological control agent of mealybugs.  相似文献   
4.
报道了采自辽宁阜新,黑龙江镜泊湖和云南昆明的跳小蜂,即阔柄杜丝跳小蜂,新种Dusmetia latiscapa Xu,sp.nov、云南蚧狼跳小蜂,新种Gyranusoidea yunnanensis Xu,sp.nov.。对新种进行了详细描述。本也是杜丝跳小蜂属Dusmetia Mercet和蚧狼跳小蜂属Gyranusoidea Compere在我国分布的首次记录。阔柄杜丝跳小蜂,新种Dusmetia latiscapa Xu,sp.nov.寄主:粉蚧。分布:黑龙江(镜泊湖),辽宁(阜新)。本种与Dusmetia cardinalis Hoffer,1969相似,有以下几点区别:(1)本种索节第4节端部和第5、6节为白色,后索节3-6节为白色;(2)本种柄节长为宽的2.7倍,后柄节长为宽的5倍;(3)本种前翅完全退化,呈翅芽状,后前翅退化,末端尖;(4)前头胸腹呈现黑褐色,后呈红褐色。云南蚧狼跳小蜂,新种Gyranusoidea yunnanensis Xu,sp.nov.寄主:粉蚧。分布:云南(昆明)。本新种与Gyranusoidea hecale Noyes et Hayat 1988很相似,主要区别是新种:(1)触角窝与复眼之间有1褐色斑,后触角窝与复眼之间有1褐色线相连;(2)触角柄节细长,长为最宽处的5倍,后柄节膨大,长为最宽处的2.5—2.8倍;(3)触角柄节近端无白色环斑,后触角柄节近端有白色环斑。  相似文献   
5.
Rhopus antennalis sp. nov. and R. qingdaoensis sp. nov. are described as new to science and R. nigroclavatus (Ashmead, 1902) is first recorded from China. A key to all the known Chinese species of the genus also presented.  相似文献   
6.
The study was carried out to determine the effect of shading levels and/or distance from the natural alpine vegetation (NAV) on the occurrence of two insect functional groups: hemipteran herbivores and generalist predators in farmers' coffee fields in the Mt. Elgon region of Uganda. Three distance categories from the NAV, that is (i) 0–250 m; (ii) 250–1000 m and (iii) 1000–1500 m, were used to demarcate farms in the first stage of selection, and within each distance category, three levels of shading, that is (i) no shade, (ii) moderate shade and (iii) full shade, were used for final selection of coffee farms for the study. A total of 90 individually owned coffee fields were studied; 30 for each distance category, of which 10 represented each shading level. In two separate rounds, inventories of scale insects (Coccus spp.), antestia bugs (Antestiopsis spp.), root mealybugs (Planococcus spp.) and aphids (Toxoptera aurantii) on coffee plants were made for the hemipteran herbivores, whereas ants (Formicidae) and spiders (Araneae) were recorded for the predatory taxa. The results showed that the interaction between distance from the NAV and shading level consistently influenced the occurrence of the insects in both functional groups. For scale insects, root mealybugs and ants, it was closest to the NAV that shading‐level effects were most discernible and generally limiting. To the contrary, the occurrence of aphids and spiders increased with the increase in the level of shading for plants furthest from the NAV. These results indicate that if inclusion of shade trees is to be a strategy in ecological pest management, the level of shading should be determined basing on the insect taxa as well as other pertinent factors in the landscape.  相似文献   
7.
Associations between Sternorrhyncha insects and intracellular bacteria are common in nature. Mealybugs are destructive pests that seriously threaten the production of agriculture and forestry. Mealybugs have evolved intimate endosymbiotic relationships with bacteria, which provide them with essential amino acids, vitamins, and other nutrients. In this study, the divergence of five mealybugs was analyzed based up the sequences of the mitochondrial cytochrome oxidase I (mtCOI). Meanwhile, the distinct regions of the 16S rRNA gene of primary symbionts in the mealybugs were sequenced. Finally, high‐throughput sequencing (HTS) techniques were used to study the microbial abundance and diversity in mealybugs. Molecular phylogenetic analyses revealed that these five mealybugs were subdivided into two different clusters. One cluster of mealybugs (Dysmicoccus neobrevipes, Pseudococcus comstocki, and Planococcus minor) harbored the primary endosymbiont “Candidatus Tremblaya princeps,” and another cluster (Phenacoccus solenopsis and Phenacoccus solani) harbored “Ca. Tremblaya phenacola.” The mtCOI sequence divergence between the two clusters was similar to the 16S rRNA sequence divergence between T. princeps and T. phenacola. Thus, we concluded that the symbiont phylogeny was largely concordant with the host phylogeny. The HTS showed that the microbial abundance and diversity within P. solani and P. solenopsis were highly similar, and there was lower overall species richness compared to the other mealybugs. Among the five mealybugs, we also found significant differences in Shannon diversity and observed species. These results provide a theoretical basis for further research on the coevolution of mealybugs and their symbiotic microorganisms. These findings are also useful for research on the effect of symbiont diversity on the pest status of mealybugs in agricultural systems.  相似文献   
8.
This study examined the feeding habits of Nephus arcuatus Kapur (Coleoptera: Coccinellidae), an important predator of mealybugs in south-western Iran. The consumption capacity of male and female N. arcuatus adults was determined by their feeding on eggs, first-instar nymphs, and adult females of two destructive mealybugs, Nipaecoccus viridis (Newstead) and Planococcus citri Risso, over a 24-h period. N arcuatus consumed significantly more first-instar nymphs than eggs, and more eggs than female adults of both prey species. In addition, we also studied the developmental stage prey preference of adults reared on either N. viridis or P. citri and found that the prey preference of females did not change with the developmental stage of the mealybug. Meanwhile, the males reared on either N. viridis or P. citri showed a significant preference for the first-instar nymphs of P. citri over first-instar nymphs of N. viridis, while a preference for the eggs or adult females of these two mealybugs was not observed. This selection of first-instar nymphs by males was not tied to its previous feeding experience. Our findings suggest that prey stage, prey size and previous feeding experience had no effect on the prey selection of N. arcuatus, making it a good candidate for the biological control of mealybugs.  相似文献   
9.
利用种特异性COI引物(SS-COI)鉴别扶桑绵粉蚧   总被引:1,自引:0,他引:1  
扶桑绵粉蚧Phenacoccus solenopsis Tinsley是我国近年新发现的一种严重威胁农林业生产的重要外来入侵害虫。针对扶桑绵粉蚧与其他粉蚧类昆虫难以准确快速识别且适生区广泛的问题, 以扶桑绵粉蚧为靶标, 以我国常见的其他7种粉蚧为参照, 采用基于线粒体DNA细胞色素C氧化酶亚基Ⅰ (mtDNA COI) 基因序列的种特异性(species-specific COI, SS-COI) PCR方法, 研究其快速分子检测技术。通过已知粉蚧的COI基因序列设计通用型引物1对, 获得扶桑绵粉蚧及其他7种粉蚧包括康氏粉蚧Pseudococcus comstocki Kuwana、 南洋臀纹粉蚧Planococcus lilacius Cockerell、 木槿曼粉蚧Maconellicoccus hirsutus (Green)、 甘蔗红粉蚧Saccharicoccus sacchari (Cockerell)、 新菠萝灰粉蚧Dysmicoccus neobrevipes Beardsley、 番石榴粉蚧Planococcus minor Maskel和石蒜绵粉蚧Phenacoccus solani Ferris的COI基因序列, 根据测序结果及数据库中已知粉蚧的COI基因序列设计SS COI引物1对(PSZTF1/PSZTR1), 其扩增片段大小为546 bp。种特异性检验结果表明, 该引物只对扶桑绵粉蚧的COI基因具有扩增能力, 对其他7种粉蚧不具有扩增效果; 该引物不仅对成虫具有良好的扩增能力, 对不同虫态的扶桑绵粉蚧以及来自我国不同省市的14个地理种群和口岸截获的来自巴基斯坦的扶桑绵粉蚧亦具有同样的扩增效能。这些结果表明, 该技术体系完全可用于扶桑绵粉蚧的准确识别及其检测监测, 对有效阻截其进一步扩张蔓延意义重大。  相似文献   
10.
Encapsulation is a common defense mechanism exerted by a host insect in response to invasion by a metazoan parasitoid or other foreign organisms. In the process of encapsulation, the host forms a capsule around the parasitoid egg or larva, which is usually composed of host blood cells and the pigment melanin. The capsule may kill the parasitoid and thus prevent successful parasitism. Encapsulation may adversely affect the degree of biological control effected by parasitoids as it may either prevent the establishment of exotic parasitoids in new regions or reduce parasitoid efficacy. A high incidence of encapsulation may also cause difficulties in mass rearing of parasitoids. In the Coccoidea (Homoptera), parasitoid encapsulation has so far been recorded in three families: Coccidae (soft scale insects), Diaspididae (armored scale insects), and Pseudococcidae (mealybugs). Important factors that affect the frequency of parasitoid encapsulation in the Coccoidea include: Host and parasitoid species, the host's physiological age and physiological condition, the host origin (or strain), superparasitism, the rearing and/or ambient temperature, and the host plant. The effects of these factors on the incidence of parasitoid encapsulation in the Coccidae, Diaspididae, and Pseudococcidae are described.  相似文献   
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