Open Access

New data on the Metarhizium pemphigi pathogenicity against economically and ecologically important insect species in laboratory conditions

, , , ,  and   
May 23, 2025

Cite
Download Cover

Arslangündoğdu, Z., Hizal, E., Acer, S., 2018: First record of Oxycarenus lavaterae (Fabricius, 1787) (Heteroptera, Lygaeidae) in Turkey. Applied Ecology and Environmental Research, 16:1305–1311. Search in Google Scholar

Barra-Bucarei, L., Vergara, P., Cortes, A., 2016: Conditions to optimize mass production of Metarhizium anisopliae (Metschn) Sorokin 1883 in different substrates. Chilean Journal of Agricultural Research, 76:448–454. Search in Google Scholar

Barta, M., Horáková, M. K. M., Georgieva, M., Mirchev, P., Zaemdzhikova, G., Pilarska, D. et al., 2020: Entomopathogenic fungi (Ascomycota: Hypocreales) as natural antagonists of the pine processionary moth Thaumetopoea pityocampa (Denis & Schiffermüller, 1775) (Lepidoptera: Notodontidae) in Bulgaria. Acta Zoologica Bulgarica, suppl. 15:89–96. Search in Google Scholar

Brownbridge, M., Reay, S. D., Cummings, N. J., 2010: Association of entomopathogenic fungi with exotic bark beetles in New Zealand pine plantations. Mycopathologia, 169:75–80. Search in Google Scholar

Brunner-Mendoza, C., Reyes-Montes, M. D. R., Moon-jely, S., Bidochka, M. J., Toriello, C., 2019: A review on the genus Metarhizium as an entomopathogenic microbial biocontrol agent with emphasis on its use and utility in Mexico. Biocontrol Science and Technology, 29:83–102. Search in Google Scholar

Chen, Z. H., Zhang, Y. G., Yang, X. N., Chen, K., Liu, Q., Xu, L., 2018: A new fungus Metarhizium gaoligongense from China. International Journal of Agriculture and Biology, 20:2271–2276. Search in Google Scholar

Csóka, G., Hirka, A., Mutun, S., Glavendekić, M., Mikó, A., Szőcs, L. et al., 2019: Spread and potential host range of the invasive oak lace bug [Corythucha arcuata (Say, 1832) – Heteroptera: Tingidae] in Eurasia. Agricultural and Forest Entomology, 22:61–74. Search in Google Scholar

Driver, F., Milner, R. J., Trueman, J. W., 2000: A taxonomic revision of Metarhizium based on a phylogenetic analysis of rDNA sequence data. Mycological Research, 104:134–150. Search in Google Scholar

Faria, M. R., Wraight, S. P., 2007: Mycoinsecticides and mycoacaricides: a comprehensive list with worldwide coverage and international classification of formulation types. Biological Control, 43:237–256. Search in Google Scholar

Finney, D. J., 1971: Probit analysis: 3rd ed. Cambridge, Cambridge University Press, 350 p. Search in Google Scholar

Fisher, J. J., Rehner, S. A., Bruck, D. J., 2011: Diversity of rhizosphere associated entomopathogenic fungi of perennial herbs, shrubs and coniferous trees. Journal of Invertebrate Pathology, 106:289–295. Search in Google Scholar

Foster, W. A., 1975: The life history and population biology of an intertidal aphid, Pemphigus trehernei Foster. Transactions of the Royal Entomological Society of London, 127:193–207. Search in Google Scholar

Freimoser, F. M., Hu, G., St Leger, R. J., 2005: Variation in gene expression patterns as the insect pathogen Metarhizium anisopliae adapts to different host cuticles or nutrient deprivation in vitro. Microbiology, 151:361–371. Search in Google Scholar

Glare, T. R., Reimer, Y. S. O., Cummings, N., Rivas-Franco, F., Nelson T. L., Zimmermann, G., 2021: Diversity of the insect pathogenic fungi in the genus Metarhizium in New Zealand. New Zealand Journal of Botany, 59:440–456. Search in Google Scholar

Haynes, D. L., Gage, S. H., 1981. The cereal leaf beetle in North America. The Annual Review of Entomology, 26:259–287. Search in Google Scholar

Hlina, B. L., Birceanu, O., Robinson, C. S., Dhiyebi, H., Wilkie, M. P., 2021: The relationship between thermal physiology and lampricide sensitivity in larval sea lamprey (Petromyzon marinus). Journal of Great Lakes Research, 47:S272–S284. Search in Google Scholar

Hu, G., St. Leger, R. J., 2002: Field studies using a recombinant mycoinsecticide (Metarhizium anisopliae) reveal that it is rhizosphere competent. Applied and Environmental Microbiology Journal, 68:6383–6387. Search in Google Scholar

Huang, B., Humber, R. A, Li, S., Li, Z., Hodge, K. T., 2005: Further notes on the molecular taxonomy of Metarhizium. Mycotaxon, 94:181–187. Search in Google Scholar

Kaplan, E. L., Meier P., 1958: Nonparametric estimation from incomplete observations. Journal of the American Statistical Association, 53:457–481. Search in Google Scholar

Kepler, R. M., Humber, R. A., Bischoff, J. F., Rehner, S. A., 2014: Clarification of generic and species boundaries for Metarhizium and related fungi through multi-gene phylogenetics. Mycologia, 106:811–829. Search in Google Scholar

Korosi, G. A., Wilson, B. A., Powell, K. S., Ash, G. J., Reineke, A., Savocchia, S., 2019: Occurrence and diversity of entomopathogenic fungi (Beauveria spp. and Metarhizium spp.) in Australian vineyard soils. Journal of Invertebrate Pathology, 164:69–77. Search in Google Scholar

Kryukov, V., Yaroslavtseva, O., Tyurin, M., Akhanaev, Y., Elisaphenko, E., Wen, T. C. et al., 2017: Ecological preferences of Metarhizium spp. from Russia and neighboring territories and their activity against Colorado potato beetle larvae. Journal of Invertebrate Pathology, 149:1–7. Search in Google Scholar

Lacey, L. A., 2012: Manual of techniques in invertebrate pathology. 2nd ed. Amsterdam, Academic Press, 484 p. Search in Google Scholar

Lacey, L. A., Grzywacz, D., Shapiro-Ilan, D. I., Frutos, R., Brownbridge, M., Goettel, M. S., 2015: Insect pathogens as biological control agents: Back to the future. Journal of Invertebrate Pathology, 132:1–41. Search in Google Scholar

Lakatos, F., Molnár, M., 2009: Mass mortality of beech (Fagus sylvatica) in South-West Hungary. Acta Silvatica et Lignaria Hungarica, 5:75–82. Search in Google Scholar

Liao, X., O’Brien, T. R., Fang, W., St. Leger, R. J., 2014: The plant beneficial effects of Metarhizium species correlate with their association with roots. Applied Microbiology and Biotechnology, 98:7089–7096. Search in Google Scholar

Lieutier, F., Day, K. R., Battisti, A., Grégoire, J. C., Evans, H. F., 2004: Bark and wood boring insects in living trees in Europe: a synthesis. Dordrecht, Netherlands, Kluwer Academic Publishers, 570 p. Search in Google Scholar

Medo, J., Cagáň, Ľ., 2011. Factors affecting the occur-rence of entomopathogenic fungi in soils of Slovakia as revealed using two methods. Biological Control, 59:200–208. Search in Google Scholar

Mongkolsamrit, S., Khonsanit, A., Thanakitpipattana, D., Tasanathai, K., Noisripoom, W., Lamlertthon, S. et al., 2020: Revisiting Metarhizium and the description of new species from Thailand. Studies in Mycology, 95:171–251. Search in Google Scholar

Nedvěd, O., Chehlarov, E., Kalushkov, P., 2014: Life history of the invasive bug Oxycarenus lavaterae (Heteroptera: Oxycarenidae) in Bulgaria. Acta Zoologica Bulgarica, 66:203–208. Search in Google Scholar

Nishi, O., Hasegawa, K., Iiyama, K., Yasunaga-Aoki, C., Shimizu, S., 2011: Phylogenetic analysis of Metarhizium spp. isolated from soil in Japan. Applied Entomology and Zoology, 46:301–309. Search in Google Scholar

Nishi, O., Iiyama, K., Yasunaga-Aoki, C., Shimizu, S., 2013: Comparison of the germination rates of Metarhizium spp. conidia from Japan at high and low temperatures. Letters in Applied Microbiology, 57:554–560. Search in Google Scholar

Nishi, O., Sato, H., 2017: Species diversity of the entomopathogenic fungi Metarhizium anisopliae and M. flavoviride species complexes isolated from insects in Japan. Mycoscience, 58:472–479. Search in Google Scholar

Oliveira, D. G. P., Pauli, G., Mascarin, G. M., Delalibera, I., 2015: A protocol for determination of conidial viability of the fungal entomopathogens Beauveria bassiana and Metarhizium anisopliae from commercial products. Journal of Microbiological Methods, 119:44–52. Search in Google Scholar

Roberts, D. W., St. Leger, R. J., 2004: Metarhizium spp., cosmopolitan insect-pathogenic fungi: mycological aspects. Advances in Applied Microbiology, 54:1–70. Search in Google Scholar

Robertson, J. L., Jones, M. M., Olguin E., Alberts B., 2017: Bioassays with arthropods. 3rd ed. Boca Raton, FL, USA, CRC Press, Taylor & Francis Group, 194 p. Search in Google Scholar

Rocha, L. F. N., Luz, C., 2011: Activity of Metarhizium spp. and Isaria spp. from the Central Brazilian Cerrado against Triatoma infestans nymphs. Transactions of The Royal Society of Tropical Medicine and Hygiene, 105:417–419. Search in Google Scholar

Steinhaus, E. A., 1975: Disease in a Minor Chord. Columbus, Ohio, Ohio State University Press, 488 p. Search in Google Scholar

St. Leger, R. J., 2008: Studies on adaptations of Metarhizium anisopliae to life in the soil. Journal of Invertebrate Pathology, 98:271–276. Search in Google Scholar

St. Leger, R. J., 2024: The evolution of complex Metarhizium-insect-plant interactions. Fungal Biology. In press. Available at https://doi.org/10.1016/j.funbio.2024.01.001. Search in Google Scholar

Takov, D., Barta, M., Toshova, T., Doychev, D., Pilarska, D., 2022: On the pathogenicity of Metarhizium pemphigi against Ips typographus L. Comptes rendus de l’Académie bulgare des Sciences, 75:554–560. Search in Google Scholar

Toshova, T., Velchev, D., Barta, M., Takov, D., Todorov, I., Pilarska, D. et al., 2022: Insecticide activity of Greek oregano essential oil and entomopathogenic fungus Metarhizium pemphigi against Diabrotica virgifera virgifera LeConte. Cereal Research Communications, 50:1045–1054. Search in Google Scholar

Tyurin, M. V., Kryurov, V. Yu., Yaroslavtseva, O. N., Elisafenko, E. A., Dubovskiy, I. M., Glupov, V. V., 2016: Comparative analysis of immune responses in Colorado potato beetle larvae during development of mycoses caused by Metarhizium robertsii, M. brunneum, and M. pemphigi. Journal of Evolutionary Biochemistry and Physiology, 52:252–260. Search in Google Scholar

Vega, F. E., Goettel, M. S., Blackwell, M., Chandler, D., Jackson, M. A., Keller, S. et al., 2009: Fungal entomopathogens: new insights on their ecology. Fungal Ecology, 2:149–159. Search in Google Scholar

Wickham, H., 2016: ggplot2: Elegant Graphics for Data Analysis. New York, Springer-Verlag, 260 p. Search in Google Scholar

Wyrebek, M., Huber, C., Sasan, R. K., Bidochka, M. J., 2011: Three sympatrically occurring species of Metarhizium show plant rhizosphere specificity. Microbiology, 157:2904–2911. Search in Google Scholar

Zimmermann, G., 2007: Review on safety of the entomopathogenic fungus Metarhizium anisopliae. Biocontrol Science and Technology, 17:879–920. Search in Google Scholar

FAO, WHO, 2021: Managing pesticides in agriculture and public health – A compendium of FAO and WHO guidelines and other resources. 2nd ed. Rome, FAO and WHO, 70 p. Search in Google Scholar

Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Life Sciences, Plant Science, Ecology, Life Sciences, other