This work is licensed under the Creative Commons Attribution 4.0 International License.
Abate, B. A., Slippers, B., Wingfield, M. J., Conlong, D. E., Burger, D. A., and Hurley, B. P. 2019. Virulence and survival of native entomopathogenic nematodes for the management of white grubs in South Africa. Journal of Biological Control 137:104043.AbateB. A.SlippersB.WingfieldM. J.ConlongD. E.BurgerD. A.HurleyB. P.2019Virulence and survival of native entomopathogenic nematodes for the management of white grubs in South AfricaJournal of Biological Control137104043Search in Google Scholar
Acar, I., and Sipes, B. 2022. Enhancing the biological control potential of Steinernema feltiae with protection from desiccation and UV radiation. Journal of Biological Control 169:104874.AcarI.SipesB.2022Enhancing the biological control potential of Steinernema feltiae with protection from desiccation and UV radiationJournal of Biological Control169104874Search in Google Scholar
Alonso, V., Nasrolahi, S., and Dillman, A. R. 2018. Host–specific activation of entomopathogenic nematode infective juveniles. Insects 9(2):59.AlonsoV.NasrolahiS.DillmanA. R.2018Host–specific activation of entomopathogenic nematode infective juvenilesInsects9259Search in Google Scholar
Andalo, V., Cavalcanti, R.S., Molina, J.P., and Moino, A., Jr 2010. Substrates for storing entomopathogenic nematodes (Rhabditida: Steinernematidae, Heterorhabditidae) Scientia Agricola 67:342–347.AndaloV.CavalcantiR.S.MolinaJ.P.MoinoA.Jr2010Substrates for storing entomopathogenic nematodes (Rhabditida: Steinernematidae, Heterorhabditidae)Scientia Agricola67342347Search in Google Scholar
Bhairavi, K. S., Bhattacharyya, B., Devi, G., Bhagawati, S., Das, P. P. G., Devi, E. B., and Manpoong, N. S. 2021. Evaluation of two native entomopathogenic nematodes against Odontotermes obesus (Rambur)(Isoptera: Termitidae) and Agrotis ipsilon (Hufnagel)(Lepidoptera: Noctuidae). Egyptian Journal of Biological Pest Control 31:1–8.BhairaviK. S.BhattacharyyaB.DeviG.BhagawatiS.DasP. P. G.DeviE. B.ManpoongN. S.2021Evaluation of two native entomopathogenic nematodes against Odontotermes obesus (Rambur)(Isoptera: Termitidae) and Agrotis ipsilon (Hufnagel)(Lepidoptera: Noctuidae)Egyptian Journal of Biological Pest Control3118Search in Google Scholar
Costa, M. C. G., Freire, A. G., Lourenço, D. V., Sousa, R. R. D., Feitosa, J. P. D. A., and Mota, J. C. A. 2021. Hydrogel composed of potassium acrylate, acrylamide, and mineral as soil conditioner under saline conditions. Scientia Agricola 79(4):e20200235.CostaM. C. G.FreireA. G.LourençoD. V.SousaR. R. D.FeitosaJ. P. D. A.MotaJ. C. A.2021Hydrogel composed of potassium acrylate, acrylamide, and mineral as soil conditioner under saline conditionsScientia Agricola794e20200235Search in Google Scholar
Dhiman, J., Prasher, S. O., El Sayed, E., Patel, R., Nzediegwu, C., and Mawof, A. 2020. Use of polyacrylamide superabsorbent polymers and plantain peel biochar to reduce heavy metal mobility and uptake by wastewater–irrigated potato plants. Transactions of the ASABE 63(1):11–28.DhimanJ.PrasherS. O.El SayedE.PatelR.NzediegwuC.MawofA.2020Use of polyacrylamide superabsorbent polymers and plantain peel biochar to reduce heavy metal mobility and uptake by wastewater–irrigated potato plantsTransactions of the ASABE6311128Search in Google Scholar
Dito, D. F., Shapiro–Ilan, D. I., Dunlap, C. A., Behle, R. W., and Lewis, E. E. 2016. Enhanced biological control potential of the entomopathogenic nematode, Steinernema carpocapsae, applied with a protective gel formulation. Biocontrol Science and Technology 26(6):835–848.DitoD. F.Shapiro–IlanD. I.DunlapC. A.BehleR. W.LewisE. E.2016Enhanced biological control potential of the entomopathogenic nematode, Steinernema carpocapsae, applied with a protective gel formulationBiocontrol Science and Technology266835848Search in Google Scholar
Fisher, B. A. 1970. Decision emergence: Phases in group decision–making. Communications Monographs, 37(1) 53–66.FisherB. A.1970Decision emergence: Phases in group decision–makingCommunications Monographs3715366Search in Google Scholar
Glazer, I., and Goldberg, A. 2008. Field efficacy of entomopathogenic nematodes against the beetle Maladera matrida (Coleoptera:Scarabaeidae). Bioco ntrol Science and Technology 3(3):367–376.GlazerI.GoldbergA.2008Field efficacy of entomopathogenic nematodes against the beetle Maladera matrida (Coleoptera:Scarabaeidae)Bioco ntrol Science and Technology33367376Search in Google Scholar
Grewal, P. S., 2000. Anhydrobiotic potential and long-term storage of entomopathogenic nematodes (Rhabditida: Steinernematidae). International Journal for Parasitology, 30(9), pp.995–1000.GrewalP. S.2000Anhydrobiotic potential and long-term storage of entomopathogenic nematodes (Rhabditida: Steinernematidae)International Journal for Parasitology3099951000Search in Google Scholar
Hatting, J., Stock, S. P., and Hazir, S. 2009. Diversity and distribution of entomopathogenic nematodes (Steinernematidae, Heterorhabditidae) in South Africa. Journal of Invertebrate Pathology 102:120–128.HattingJ.StockS. P.HazirS.2009Diversity and distribution of entomopathogenic nematodes (Steinernematidae, Heterorhabditidae) in South AfricaJournal of Invertebrate Pathology102120128Search in Google Scholar
Hazir, S., Kaya, H., Touray, M., Cimen, H., and Shapiro–Ilan, D. S. 2022. Basic laboratory and field manual for conducting research with the entomopathogenic nematodes, Steinernema and Heterorhabditis, and their bacterial symbionts. Turkish Journal of Zoology 46(4):305–350.HazirS.KayaH.TourayM.CimenH.Shapiro–IlanD. S.2022Basic laboratory and field manual for conducting research with the entomopathogenic nematodes, Steinernema and Heterorhabditis, and their bacterial symbiontsTurkish Journal of Zoology464305350Search in Google Scholar
Jeger, M. J., and Viljanen–Rollinson, S. L. H. 2001. The use of the area under the disease–progress curve (AUDPC) to assess quantitative disease resistance in crop cultivars. Theoretical and Applied Genetics 102:32–40.JegerM. J.Viljanen–RollinsonS. L. H.2001The use of the area under the disease–progress curve (AUDPC) to assess quantitative disease resistance in crop cultivarsTheoretical and Applied Genetics1023240Search in Google Scholar
Leite, L. G., Shapiro–Ilan, D. I., and Hazir, S. 2018. Survival of Steinernema feltiae in different formulation substrates: Improved longevity in a mixture of gel and vermiculite. Biological Control 126:192–197.LeiteL. G.Shapiro–IlanD. I.HazirS.2018Survival of Steinernema feltiae in different formulation substrates: Improved longevity in a mixture of gel and vermiculiteBiological Control126192197Search in Google Scholar
McMullen, J. G., and Stock, S. P. 2014. In vivo and in vitro rearing of entomopathogenic nematodes (Steinernematidae and Heterorhabditidae). Journal of Visualized Experiments e52096.McMullenJ. G.StockS. P.2014In vivo and in vitro rearing of entomopathogenic nematodes (Steinernematidae and Heterorhabditidae)Journal of Visualized Experimentse52096Search in Google Scholar
Nouh, G. M. 2021. Efficacy of the entomopathogenic nematode isolates against Spodoptera littoralis (Boisduval) and Agrotis ipsilon (Hufnagel) (Lepidoptera: Noctuidae). Egyptian Journal of Biological Pest Control 31:1–5.NouhG. M.2021Efficacy of the entomopathogenic nematode isolates against Spodoptera littoralis (Boisduval) and Agrotis ipsilon (Hufnagel) (Lepidoptera: Noctuidae)Egyptian Journal of Biological Pest Control3115Search in Google Scholar
Ramakrishnan, J., Salame, L., Nasser, A., Glazer, I., and Ment, D. 2022. Survival and efficacy of entomopathogenic nematodes on exposed surfaces. Scientific Reports Journal 12(1):4629.RamakrishnanJ.SalameL.NasserA.GlazerI.MentD.2022Survival and efficacy of entomopathogenic nematodes on exposed surfacesScientific Reports Journal1214629Search in Google Scholar
Ramakuwela, T., Hatting, H., Laing., M.D., Hazir, S., and Thiebaut, N. 2016. In vitro solid-state production of Steinernema innovationi with cost analysis. Biocontrol Science and Technology 26:792–808.RamakuwelaT.HattingH.Laing.M.D.HazirS.ThiebautN.2016In vitro solid-state production of Steinernema innovationi with cost analysisBiocontrol Science and Technology26792808Search in Google Scholar
Ramakuwela, T., Hatting, J., Laing, M. D., Thiebaut, N., and Hazir, S. 2018. Biological characterization of the entomopathogenic nematode, Steinernema innovationi: a South African isolate. Journal of Nematology 50(4):1–10.RamakuwelaT.HattingJ.LaingM. D.ThiebautN.HazirS.2018Biological characterization of the entomopathogenic nematode, Steinernema innovationi: a South African isolateJournal of Nematology504110Search in Google Scholar
Shapiro–Ilan, D. I., Cottrell, T. E., Mizell, R. F., Horton, D. L, Behle, R. W., and Dunlap, C. A. 2010. Efficacy of Steinernema carpocapsae for control of the lesser peachtree borer, Synanthedon pictipes: Improved aboveground suppression with a novel gel application. Biological Control 54:23–28.Shapiro–IlanD. I.CottrellT. E.MizellR. F.HortonD. L.BehleR. W.DunlapC. A.2010Efficacy of Steinernema carpocapsae for control of the lesser peachtree borer, Synanthedon pictipes: Improved aboveground suppression with a novel gel applicationBiological Control542328Search in Google Scholar
Shapiro–Ilan, D. I., Cottrell, T. E., Mizell III, R. F., and Horton, D. L. 2016. Efficacy of Steinernema carpocapsae plus fire gel applied as a single spray for control of the lesser peachtree borer, Synanthedon pictipes. Biological Control 94:33–36.Shapiro–IlanD. I.CottrellT. E.MizellR. F.IIIHortonD. L.2016Efficacy of Steinernema carpocapsae plus fire gel applied as a single spray for control of the lesser peachtree borer, Synanthedon pictipesBiological Control943336Search in Google Scholar
Shapiro–Ilan, D. I., and Lewis, E. E. 2024. Entomopathogenic nematodes as biological control agents. CABI Publishing. Wallingford, UK. 554 pp. https://doi.org/10.1079/9781800620322.0000.Shapiro–IlanD. I.LewisE. E.2024Entomopathogenic nematodes as biological control agentsCABI PublishingWallingford, UK554 pphttps://doi.org/10.1079/9781800620322.0000.Search in Google Scholar
Shapiro–Ilan, D. I., and Goolsby, J. A. 2021. Evaluation of Barricade® to enhance survival of entomopathogenic nematodes on cowhide. Journal of Invertebrate Pathology 184:107592. https://doi.org/10.1016/j.jip.2021.107592Shapiro–IlanD. I.GoolsbyJ. A.2021Evaluation of Barricade® to enhance survival of entomopathogenic nematodes on cowhideJournal of Invertebrate Pathology184107592https://doi.org/10.1016/j.jip.2021.107592Search in Google Scholar
Shapiro–Ilan, D. I., Hazir, S., and Glazer, I. 2022. Entomopathogenic nematodes as models for inundative biological control. Nematodes as Model Organisms 293–308. https://doi.org/10.1079/9781789248814.0012.Shapiro–IlanD. I.HazirS.GlazerI.2022Entomopathogenic nematodes as models for inundative biological controlNematodes as Model Organisms293308https://doi.org/10.1079/9781789248814.0012.Search in Google Scholar
Shapiro–Ilan, D. I., Stuart, R. J., and McCoy, C.W. 2006. A comparison of entomopathogenic nematode longevity in soil under laboratory conditions. Journal of Nematology 38(1):119.Shapiro–IlanD. I.StuartR. J.McCoyC.W.2006A comparison of entomopathogenic nematode longevity in soil under laboratory conditionsJournal of Nematology381119Search in Google Scholar
Sharmila, R., Priya, M. S., Subramanian, S., Poornima, K., and Pandiyan, M. 2018. Review on ecology of entomopathogenic nematodes. Journal of Entomology and Zoology Studies 6(4):1086–1093.SharmilaR.PriyaM. S.SubramanianS.PoornimaK.PandiyanM.2018Review on ecology of entomopathogenic nematodesJournal of Entomology and Zoology Studies6410861093Search in Google Scholar
Somvanshi, V. S., Koltai, H., and Glazer, I. 2008. Expression of different desiccation–tolerance related genes in various species of entomopathogenic nematodes. Molecular and Biochemical Parasitology 158(1):65–71.SomvanshiV. S.KoltaiH.GlazerI.2008Expression of different desiccation–tolerance related genes in various species of entomopathogenic nematodesMolecular and Biochemical Parasitology15816571Search in Google Scholar
Sunmola, K. 2015. Transgenerational effects of aflatoxin B1 on the nematode Caenorhabditis elegans. PhD thesis, University of Georgia.SunmolaK.2015Transgenerational effects of aflatoxin B1 on the nematode Caenorhabditis elegansPhD thesis, University of Georgia.Search in Google Scholar
Tarasco, E., Fanelli, E., Salvemini, C., El-Khoury, Y., Troccoli, A., Vovlas, A. and De Luca, F. 2023. Entomopathogenic nematodes and their symbiotic bacteria: from genes to field uses. Frontiers in Insect Science, 3, p.119525TarascoE.FanelliE.SalveminiC.El-KhouryY.TroccoliA.VovlasA.De LucaF.2023Entomopathogenic nematodes and their symbiotic bacteria: from genes to field usesFrontiers in Insect Science3119525Search in Google Scholar
Vashisth, S., Chandel, Y. S., and Sharma, P. K. 2013. Entomopathogenic nematodes–A review. Agricultural Reviews, 34(3):163–175.VashisthS.ChandelY. S.SharmaP. K.2013Entomopathogenic nematodes–A reviewAgricultural Reviews343163175Search in Google Scholar
Yooyangket, T., Muangpat, P., Polseela, R., Tandhavanant, S., Thanwisai, A., and Vitta, A. 2018. Identification of entomopathogenic nematodes and symbiotic bacteria from Nam Nao National Park in Thailand and larvicidal activity of symbiotic bacteria against Aedes aegypti and Aedes albopictus. PlOS One 13(4):0195681.YooyangketT.MuangpatP.PolseelaR.TandhavanantS.ThanwisaiA.VittaA.2018Identification of entomopathogenic nematodes and symbiotic bacteria from Nam Nao National Park in Thailand and larvicidal activity of symbiotic bacteria against Aedes aegypti and Aedes albopictusPlOS One1340195681Search in Google Scholar