Sun, M. et al. Reduced phloem uptake of Myzus persicae on an aphid resistant pepper accession. BMC Plant Biol. 18, 1–14 (2018).
Google Scholar
Migeon, A. & Dorkeld, F. Spider Mites Web: A comprehensive database for the Tetranychidae. Available at http://www.montpellier.inra.fr/CBGP/spmweb (2021)
Sato, M. E. et al. Spiromesifen resistance in Tetranychus urticae (Acari: Tetranychidae): Selection, stability, and monitoring. Crop Prot. 89, 278–283 (2016).
Google Scholar
Melville, C. C., Andrade, S. C., Oliveira, N. T. & Andrade, D. J. Impact of Tetranychus ogmophallos (Acari: Tetranychidae) on different phenological stages of peanuts. Bragantia 77, 116–123 (2018).
Google Scholar
Savi, P. J., de Moraes, G. J., Melville, C. C. & Andrade, D. J. Population performance of Tetranychus evansi (Acari: Tetranychidae) on African tomato varieties and wild tomato genotypes. Exp. Appl. Acarol. 77, 555–570 (2019).
Google Scholar
Bass, C. et al. The evolution of insecticide resistance in the peach potato aphid, Myzus persicae. Insect Biochem. Mol. Biol. 51, 41–51 (2014).
Google Scholar
Tabet, V. G., Vieira, M. R., Martins, G. L. M. & Sousa, C. G. N. M. Plant extracts with potential to control of two-spotted spider mite. Arq. Inst. Biol. 85, 1–8 (2018).
Google Scholar
Özkara, A., Akyil, D. & Konuk, M. Pesticides, environmental pollution, and health. In Environmental Health Risk—Hazardous Factors to Living Species (eds Larramendy, M. & Soloneski, S.) (InTech, 2016).
Faraone, N., Evans, R., LeBlanc, J. & Hillier, N. K. Soil and foliar application of rock dust as natural control agent for two-spotted spider mites on tomato plants. Sci. Rep. 10, 12108 (2020).
Google Scholar
Taghizadeh, M., Iraninejad, K. H., Iranipour, S. & Vahed, M. M. Comparative study on the efficiency and consumption rate of Stethorus gilvifrons (Coleoptera, Coccinellidae) and Orius albidipennis (Hemiptera, Anthocoridae), the predators of Tetranychus urticae Koch (Acari, Tetranychidae). North-West. J. Zool. 16, 125–133 (2020).
Orr, D. & Lahiri, S. Biological control of insect pests in crops. In Integrated Pest Management: Current Concepts and Ecological Perspective (ed. Abrol, D. P.) 531–548 (Academic Press, 2014).
Google Scholar
Oliveira, N. C., Wilcken, C. F. & Matos, C. A. O. Biological cycle and predation of three coccinellid species (Coleoptera, Coccinellidae) on giant conifer aphid Cinara atlantica (Wilson) (Hemiptera, Aphididae). Rev. Bras. Entomol. 48, 529–533 (2004).
Google Scholar
Moghaddam, M. G. et al. Demographic traits of Hippodamia variegata (Goeze) (Coleoptera: Coccinellidae) fed on Sitobion avenae Fabricius (Hemiptera: Aphididae). J. Crop Prot. 5, 431–445 (2016).
Google Scholar
Gómez, W. D. & Polanía, I. Z. Life table of the predatory beetle Eriopis connexa (Germar) (Coleoptera: Coccinellidae). Rev. UDCA Act. Divulg. Cient. 12, 147–155 (2009).
Silva, R. B. et al. Biological aspects of Eriopis connexa (Germar) (Coleoptera: Coccinellidae) fed on different insect pests of maize (Zea mays L.) and sorghum [Sorghum bicolor L. (Moench)]. Braz. J. Biol. 73, 419–424 (2013).
Google Scholar
Nascimento, D. V., Lira, R., Ferreira, E. K. S. & Torres, J. B. Performance of the aphidophagous coccinellid Eriopis connexa fed on single species and mixed-species prey. Biocontrol. Sci. Technol. 31, 951–963 (2021).
Google Scholar
Miller, J. C. A comparison of techniques for laboratory propagation of a South American ladybeetle, Eriopis connexa (Coleoptera: Coccinellidae). Biol. Control 5, 462–465 (1995).
Google Scholar
Miller, J. C. & Paustian, J. W. Temperature-dependent development of Eriopis connexa (Coleoptera: Coccinellidae). Environ. Entomol. 21, 1139–1142 (1992).
Google Scholar
Sarmento, R. A. et al. Fat body morphology of Eriopis connexa (Coleoptera, Coccinellidae) in function of two alimentary sources. Braz. Arch. Biol. Technol. 47, 407–411 (2004).
Google Scholar
Van Driesche, R. et al. Catalog of Species Introduced into Canada, Mexico, the USA, or the USA Overseas Territories for Classical Biological Control of Arthropods 1985–2018 (USDA Forest Service, 2018).
Fidelis, E. G. et al. Coccinellidae, Syrphidae and Aphidoletes are key mortality factors for Myzus persicae in tropical regions: A case study on cabbage crops. Crop Prot. 112, 288–294 (2018).
Google Scholar
Francesena, N. et al. Potential of predatory Neotropical ladybirds and minute pirate bug on strawberry aphid. Nat. Acad. Bras. Ciênc. 91, e20181001 (2019).
Google Scholar
Reed, D. K. & Pike, K. S. Summary of an exploration trip to South America. IOBC Nearctic Reg. Newsl. 36, 16–17 (1991).
Li, Y., Zhou, X., Duan, W. & Pang, B. Food consumption and utilization of Hippodamia variegata (Coleoptera: Coccinellidae) is related to host plant species of its prey, Aphis gossypii (Hemiptera: Aphididae). Acta Entomol. Sin. 58, 1091–1097 (2015).
Tian, M., Wei, Y., Zhang, S. & Liu, T. Suitability of Bemisia tabaci (Hemiptera: Aleyrodidae) biotype-B and Myzus persicae (Hemiptera: Aphididae) as prey for the ladybird beetle, Serangium japonicum (Coleoptera: Coccinellidae). Eur. J. Entomol. 114, 603–608 (2017).
Google Scholar
Chi, H. Life table analysis incorporating both sexes and variable development rates among individuals. Environ. Entomol. 17, 26–34 (1988).
Google Scholar
Midthassel, A., Leather, S. R. & Baxter, I. H. Life table parameters and capture success ratio studies of Typhlodromips swirskii (Acari: Phytoseiidae) to the factitious prey Suidasia medanensis (Acari: Suidasidae). Exp. Appl. Acarol. 61, 69–78 (2013).
Google Scholar
Hosseini, A. et al. Life history responses of Hippodamia variegata (Coleoptera: Coccinellidae) to changes in the nutritional content of its prey, Aphis gossypii (Hemiptera: Aphididae), mediated by nitrogen fertilization. Biol. Control 130, 27–33 (2019).
Google Scholar
Almeida, D. P., Berber, G. C. M., Aguiar-Menezes, E. L. & Resende, A. L. S. Evaluation of biological parameters of Eriopis connexa (Germar, 1824) and Coleomegilla maculata (DeGeer, 1775) (Coleoptera: Coccinellidae) fed with alternative prey developed at the integrated center for pest management – UFRRJ. Sci. Electron. Arch. 14, 8–16 (2021).
Google Scholar
Duarte, W., Arévalo, H. & Polanía, I. Z. Influence of three aphid species used as prey on some biological aspects of the predator Eriopis connexa. J. Anim. Sci. 3, 193–199 (2013).
Zazycki, L. C. F. et al. Biology and fertility life table of Eriopis connexa, Harmonia axyridis and Olla v-nigrum (Coleoptera: Coccinellidae). Braz. J. Biol. 75, 969–973 (2015).
Google Scholar
Chi, H. & Liu, H. Two new methods for the study of insect population ecology. Bull. Inst. Zool. Acad. Sin. 24, 225–240 (1985).
Santos, N. R. et al. Biological aspects of Harmonia axyridis fed on two prey species and intraguild predation with Eriopis connexa. Pesq. Agropec. Bras. 44, 554–560 (2009).
Google Scholar
Chi, H. TWOSEX-MSChart: A Computer Program for the Age-Stage, Two-Sex Life Table Analysis. National Chung Hsing University, Taichung, Taiwan. http://140.120.197.173/Ecology/prod02.htm (2021)
Efron, B. & Tibshirani, R. J. An Introduction to the Bootstrap (Springer, 1993). https://doi.org/10.1007/978-1-4899-4541-9.
Google Scholar
Hesterberg, T. It’s time to retire the ‘n > = 30’ rule. In Proceedings of the American Statistical Association, Statistical Computing Section (CD-ROM). http://home.comcast.net/~timhesterberg/articles/JSM08-n30.pdf (2008)
Huang, Y. B. & Chi, H. Age-stage, two-sex life tables of Bactrocera cucurbitae (Coquillett) (Diptera: Tephritidae) with a discussion on the problem of applying female age-specific life tables to insect populations. Insect Sci. 19, 263–273 (2012).
Google Scholar
Akkopru, E. P., Atlıhan, R., Okut, H. & Chi, H. Demographic assessment of plant cultivar resistance to insect pests: A case study of the dusky-veined walnut aphid (Hemiptera: Callaphididae) on five walnut cultivars. J. Econ. Entomol. 108, 378–387 (2015).
Google Scholar
Smucker, M. D., Allan, J. & Carterette, B. A comparison of statistical significance tests for information retrieval evaluation. In Proceedings of the Sixteenth ACM Conference on Conference on Information and Knowledge Management—CIKM ’07 623 (ACM Press, 2007).
Wei, M. et al. Demography of Cacopsylla chinensis (Hemiptera: Psyllidae) reared on four cultivars of Pyrus bretschneideri (Rosales: Rosaceae) and P. communis pears with estimations of confidence intervals of specific life table statistics. J. Econ. Entomol. 113, 2343–2353 (2020).
Google Scholar
Wu, X., Zhou, X. & Pang, B. Influence of five host plants of Aphis gossypii Glover on some population parameters of Hippodamia variegata (Goeze). J Pest Sci 83, 77–83 (2010).
Google Scholar
Kalushkov, P. & Hodek, I. New essential aphid prey for Anatis ocellata and Calvia quatuordecimguttata (Coleoptera: Coccinellidae). Biocontrol Sci. Technol. 11, 35–39 (2001).
Google Scholar
Hodek, I. & Honěk, A. Ecology of Coccinellidae (Springer, 1996).
Google Scholar
Hodek, I. & Evans, E. Food relationships. In Ecology and Behaviour of the Ladybird Beetles (Coccinellidae) (eds Hodek, I. et al.) (Wiley, 2012).
Google Scholar
Pervez, A. & Kumar, R. Preference of the aphidophagous ladybird Propylea dissecta for two species of aphids reared on toxic host plants. Eur. J. Environ. Sci 7, 130–134 (2017).
Omkar, & Bind, R. B. Prey quality dependent growth, development and reproduction of a biocontrol agent, Cheilomenes sexmaculata (Fabricius) (Coleoptera: Coccinellidae). Biocontrol Sci. Technol. 14, 665–673 (2004).
Google Scholar
Omkar, & James, B. E. Influence of prey species on immature survival, development, predation and reproduction of Coccinella transversalis Fabricius (Col., Coccinellidae). J. Appl. Entomol. 128, 150–157 (2004).
Google Scholar
Farooq, M., Shakeel, M., Iftikhar, A., Shahid, M. R. & Zhu, X. Age-stage, two-sex life tables of the lady beetle (Coleoptera: Coccinellidae) feeding on different aphid species. J. Econ. Entomol. 111, 575–585 (2018).
Google Scholar
Giles, K. L. et al. Host plants affect predator fitness via the nutritional value of herbivore prey: Investigation of a plant-aphid-ladybeetle system. Biocontrol 47, 1–21 (2002).
Google Scholar
Savi, P. J., de Moraes, G. J. & Andrade, D. J. Effect of tomato genotypes with varying levels of susceptibility to Tetranychus evansi on performance and predation capacity of Phytoseiulus longipes. Biocontrol 66, 687–700 (2021).
Google Scholar
Hodek, I. & Honěk, A. Scale insects, mealybugs, whiteflies and psyllids (Hemiptera, Sternorrhyncha) as prey of ladybirds. Biol. Control 51, 232–243 (2009).
Google Scholar
Qureshi, J. A. & Stansly, P. A. Three Homopteran pests of citrus as prey for the convergent lady beetle: Suitability and preference. Environ. Entomol. 40, 1503–1510 (2011).
Google Scholar
Sarmento, R. A. et al. Functional response of the predator Eriopis connexa (Coleoptera: Coccinellidae) to different prey types. Braz. Arch. Biol. Technol. 50, 121–126 (2007).
Google Scholar
Oliveira, E. E. et al. Biological aspects of the predator Cycloneda sanguinea (Linnaeus, 1763) (Coleoptera: Coccinellidae) fed with Tetranychus evansi (Baker and Pritchard, 1960) (Acari: Tetranychidae) and Macrosiphum euphorbiae (Thomas, 1878) (Homoptera: Aphididae). Biosci. J. 21, 33–39 (2005).
de Moraes, G. J., McMurtry, J. A. & Baker, E. W. Redescription and distribution of the spider mites Tetranychus evansi and T. marianae. Acarologia 28, 333–343 (1987).
Iperti, G. Biodiversity of predaceous coccinellidae in relation to bioindication and economic importance. Agric. Ecosyst. Environ. 74, 323–342 (1999).
Google Scholar
Cruz-Rivera, E. & Hay, M. E. Prey nutritional quality interacts with chemical defenses to affect consumer feeding and fitness. Ecol. Monogr. 73, 483–506 (2003).
Google Scholar
Munyaneza, J. & Obrycki, J. J. Development of three populations of Coleomegilla maculata (Coleoptera: Coccinellidae) feeding on eggs of colorado potato beetle (Coleoptera: Chrysomelidae). Environ. Entomol. 27, 117–122 (1998).
Google Scholar
Adams, T. S. Effect of diet and mating status on ovarian development in a predaceous stink bug Perillus bioculatus (Hemiptera: Pentatomidae). Ann. Entomol. Soc. Am. 93, 529–535 (2000).
Google Scholar
Lima, M. S., Pontes, W. J. T. & Nóbrega, R. L. Pollen did not provide suitable nutrients for ovary development in a ladybird Brumoides foudrasii (Coleoptera: Coccinellidae). Diversitas J. 5, 1486–1494 (2020).
Google Scholar
Melville, C. C. et al. Peanut cultivars display susceptibility by triggering outbreaks of Tetranychus ogmophallos (Acari: Tetranychidae). Exp. Appl. Acarol. 78, 295–314 (2019).
Google Scholar
Source: Ecology - nature.com