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Biological Control, ISSN 1049-9644, 02/2019, Volume 129, pp. 123 - 127
•C. carnea showed 392.37-fold and 16.16-fold resistance when compared to Susceptible and Field Strains, respectively.•Cross-resistance to spinosad (3.21-fold)... 
Buprofezin | Resistance evaluation | Insecticide resistance | Chrysoperla carnea | Biological control | POPULATION | POTATO WHITEFLY HOMOPTERA | STABILITY | HEBETOR HYMENOPTERA | NEUROPTERA | DIAMONDBACK MOTH LEPIDOPTERA | ENTOMOLOGY | CHRYSOPIDAE | GENETICS | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | INCREASED FITNESS | COTTON | Oxidases | Enzyme inhibitors | Pests | Pesticide resistance
Journal Article
Journal of Invertebrate Pathology, ISSN 0022-2011, 03/2018, Volume 153, pp. 1 - 5
[Display omitted] •Nosema adaliae from two-spotted lady beetles infected few Chrysoperla carnea larvae.•C. carnea development was not affected when larvae ate... 
Chrysoperla carnea | Larval development | Microsporidia | Biological control | Lady beetles | Lacewing | MOLECULAR CHARACTERIZATION | L. COLEOPTERA-COCCINELLIDAE | NEUROPTERA CHRYSOPIDAE | SP NOV | TRANSMISSION | ZOOLOGY | AUGMENTATIVE BIOLOGICAL-CONTROL | SEX-RATIO DISTORTION | INTRAGUILD PREDATION | NATURAL ENEMIES | Chrysoperla cornea | CONVERGENS GUERIN-MENEVILLE
Journal Article
Pakistan Journal of Zoology, ISSN 0030-9923, 2015, Volume 47, Issue 1, pp. 103 - 109
Host quality is one of the important factors affecting the life-history traits of predators. Here, we examined the development and reproductive responses of... 
Development time | Intrinsic rate of population increase | Chrysoperla carnea | Amrasca devastans | POPULATION | STEPHENS NEUROPTERA | FECUNDITY | PAKISTAN | intrinsic rate of population increase | HOSTS | ZOOLOGY | development time | LABORATORY CONDITIONS | BIOLOGY | RESISTANCE | PREFERENCE | COTTON | Animal development | Analysis | Predation (Biology)
Journal Article
Biological Control, ISSN 1049-9644, 2007, Volume 42, Issue 2, pp. 172 - 177
In the greenhouse, survival of adult green lacewing, Chrysoperla carnea Stephens (Neuroptera: Chrysopidae), was reduced after feeding on flowers from plants... 
Greenhouse IPM | Imidacloprid | Chrysoperla carnea | Systemic insecticide | Chrysopidae | Neuroptera | HONEYBEES | TOXICITY | ENTOMOLOGY | imidacloprid | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | SYSTEMIC INSECTICIDES | greenhouse IPM | systemic insecticide | REPRODUCTION | NECTAR | Insects | Usage | Atmospheric carbon dioxide
Journal Article
Pakistan Journal of Zoology, ISSN 0030-9923, 08/2017, Volume 49, Issue 4, pp. 1491 - 1497
Journal Article
Journal of Insect Behavior, ISSN 0892-7553, 7/2014, Volume 27, Issue 4, pp. 454 - 461
A functional response study of Chrysoperla carnea (Stephens) larvae to different densities of sugar cane whitefly Aleurolobus barodensis (Maskell) was... 
Life Sciences | sugarcane whitefly | Functional response | Entomology | Behavioural Sciences | Neurobiology | Agriculture | biological control | Chrysoperla carnea | Animal Ecology | Evolutionary Biology | HETEROPTERA | APHID | ENTOMOLOGY | HOST-PLANT | EGGS | Aleyrodidae | Pests | Sugarcane | Agricultural pests | Biological control | Animal populations | Biopesticides | Insects | Animal behavior
Journal Article
Saudi Journal of Biological Sciences, ISSN 1319-562X, 05/2015, Volume 22, Issue 3, pp. 317 - 321
Chrysoperla carnea (Stephens) is an important biological control agent currently being used in many integrated pest management (IPM) programs to control insect... 
Temperature coefficient | Insecticide | Chrysoperla carnea | Biological control | POPULATION | DIPTERA | SODIUM-CHANNELS | PYRETHROIDS | ORGANOPHOSPHATES | DEMOGRAPHY | OSTRINIA-NUBILALIS LEPIDOPTERA | BIOLOGY | RESISTANCE | DEGRADATION | METHAMIDOPHOS | Original
Journal Article
Acta Horticulturae, ISSN 0567-7572, 10/2014, Volume 1054, pp. 89 - 94
Conference Proceeding
Journal of Asia-Pacific Entomology, ISSN 1226-8615, 06/2015, Volume 18, Issue 2, pp. 297 - 302
This research investigated the effect of different hunger levels on the functional response of three larval instars of Chrysoperla carnea Stephens (Neuroptera:... 
Aphis fabae | Starvation | Chrysoperla carnea | Functional response | Predator–prey interactions | Predator-prey interactions | DEPENDENT FUNCTIONAL-RESPONSE | ACARI | L. COLEOPTERA-COCCINELLIDAE | PODISUS-MACULIVENTRIS SAY | ENTOMOLOGY | HOST-PLANT | SPIDER-MITE | PREY | TEMPERATURE | NOCTUIDAE | HOMOPTERA | Chrysoperla cameo | 농수해양학
Journal Article
BioControl, ISSN 1386-6141, 6/2007, Volume 52, Issue 3, pp. 385 - 398
The effects of imidacloprid, propargite, and pymetrozine on the common green lacewing, Chrysoperla carnea (Stephens) were investigated in the laboratory, using... 
Life Sciences | Plant Pathology | propargite | life table response experiment | pesticide | pymetrozine | Chrysoperla carnea | Evolutionary Biology | Plant Sciences | Animal Systematics/Taxonomy/Biogeography | imidacloprid | Propargite | Imidacloprid | Pesticide | Life table response experiment | Pymetrozine | PHYTOSEIIDAE | ACARI | SUSCEPTIBILITY | MITE | TOXICITY | ENTOMOLOGY | ARTHROPODS | INSECTICIDES | Pesticides | Life tables
Journal Article
Agronomy for Sustainable Development, ISSN 1774-0746, 6/2016, Volume 36, Issue 2, pp. 1 - 10
Biological control is the use of natural enemies, such as predators, of crop pests. For instance, Chrysoperla carnea (Stephens) is a major predator of olive... 
Life Sciences | Olive grove | Trehalose | Sustainable Development | Agriculture | Ecosystem services | Chrysoperla carnea | Soil Science & Conservation | Ecological engineering | DAUCUS-CAROTA APIACEAE | GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY | HYMENOPTERA | AGRONOMY | INSECT | METABOLISM | BIOLOGICAL-CONTROL | VISITORS
Journal Article
Ecological Entomology, ISSN 0307-6946, 2002, Volume 27, Issue 4, pp. 441 - 447
1. Chrysoperla carnea is an important predatory insect in maize. To assess the ecological effects of Bt-maize, expressing the Cry1Ab protein, on larvae of this... 
Tetranychus urticae | Transgenic maize | Bacillus thuringiensis | Risk assessment | Chrysoperla carnea | Predator | Rhopalosiphum padi | Biosafety | Spodoptera littoralis | SURVIVAL | risk assessment | transgenic maize | CRY1AB TOXIN | FED PREY | predator | FIELD | NEUROPTERA | ENTOMOLOGY | CHRYSOPIDAE | BACILLUS-THURINGIENSIS CORN | MITES | PESTS | NOCTUIDAE | biosafety
Journal Article
Pesticide Biochemistry and Physiology, ISSN 0048-3575, 2010, Volume 98, Issue 3, pp. 325 - 332
Journal Article