Plant Protect. Sci., 2021, 57(1):47-58 | DOI: 10.17221/34/2020-PPS
Thrips and natural enemies through text data mining and visualizationOriginal Paper
- Department of Agronomy, Biotechnical Faculty, University of Ljubljana, Ljubljana, Slovenia
Thrips can cause considerable economic damage. In order to reduce the use of agrochemicals research has also focused on different natural enemies. We used bibliometric mapping and visualization to understand the structure of this field. Articles from Web of Science as well as software Vosviewer were used. Analysis of co-occurrence of terms shows the principal research areas: transmission of viruses, chemical or biological control and new species. A third of articles refer to biological control. Visualizations reveal three major groups of beneficials: entomopathogens, parasitoids, and predators. Recently, attention has shifted mainly to predatory mites as biocontrol agents. Our analysis aims to make such information visually more explanatory with better overview of research directions.
Keywords: pests; Thysanoptera; biocontrol agents; beneficial organisms; mapping; bibliometrics
Published: December 3, 2020 Show citation
References
- Ansari M.A., Brownbridge M., Shah F.A, Butt T.M. (2008): Efficacy of entomopathogenic fungi against soil-dwelling life stages of western flower thrips, Frankliniella occidentalis, in plant-growing media. Entomologia Experimentalis et Applicata, 127: 80-87.
Go to original source...
- Bielza P. (2008): Insecticide resistance management strategies against the western flower thrips, Frankliniella occidentalis. Pest Management Science, 64, : 1131-1138.
Go to original source...
Go to PubMed...
- Bohinc T., Kreiter S., Tixier M.S., Vierbergen G., Trdan S. (2018): Predatory mites (Acari: Phytoseiidae) first recorded on cultivated plants in Slovenia in the period 2012-2017. Acta Agriculturae Slovenica, 111: 493-499.
Go to original source...
- Börner K., Chen C., Boyack K. (2003): Visualizing knowledge domains. Annual Review of Information Science & Technology, 37: 179-255.
Go to original source...
- Bouagga S., Urbaneja A., Rambla J.L., Flors V., Granell A., Jaquesc J.A., Pérez-Hedo M. (2018a): Zoophytophagous mirids provide pest controlby inducing direct defences, antixenosis andattraction to parasitoids in sweet pepper plants. Pest Management Science, 74: 1286-1296.
Go to original source...
Go to PubMed...
- Bouagga S., Urbaneja A., Pérez-Hedo M. (2018b): Combined use of predatory mirids with Amblyseius swirskii (Acari: Phytoseiidae) to enhance pest management in sweet pepper. Journal of Economic Entomology, 111: 1112-1120.
Go to original source...
Go to PubMed...
- Broughton S., Herron G.A. (2009): Potential new insecticides for the control of western flower thrips (Thysanoptera: Thripidae) on sweet pepper, tomato, and lettuce. Journal of Economic Entomology, 102: 646-651.
Go to original source...
Go to PubMed...
- Callon M., Courtial J.P., Turner W.A., Bauin S. (1983): From translations to problematic networks: An introduction to co-word analysis. Social Science Information, 22: 191-235.
Go to original source...
- Callon M., Courtial J.P., Laville F. (1991): Co-word analysis as a tool for describing the network of interactions between basic and technological research: The case of polymer chemistry. Scientometrics, 22: 155-205.
Go to original source...
- Calver M.C., O'Brien P.A., Lilith M. (2012): Australasian Plant Pathology: an analysis of authorship and citations in the 21st century. Australasian Plant Pathology, 41: 179-187.
Go to original source...
- Choh Y., Sabelis M.W., Janssen A. (2015): Distribution and oviposition site selection by predatory mites in the presence of intraguild predators. Experimental and Applied Acarology, 67: 477-491.
Go to original source...
Go to PubMed...
- Christiansen I., Szin S., Schausberger P. (2016): Benefit-cost trade-offs of early learning in foraging predatory mites Amblyseius swirskii. Scientific Reports, 6: 23571. doi: 10.1038/srep23571
Go to original source...
Go to PubMed...
- Christiansen I., Schausberger P. (2017): Interference in early dual-task learning by predatory mites. Animal Behaviour, 133: 21-28.
Go to original source...
Go to PubMed...
- Cobo M.J., López-Herrera A.G., Herrera-Viedma E., Herrera F. (2011): Science mapping software tools: Review, analysis, and cooperative study among tools. Journal of the American Society for Information Science and Technology, 62: 1382-1402.
Go to original source...
- Coll M., Ridgway R.I. (1995): Functional and numerical responses of Orius insidiosus (Heteroptera, Anthocoridae) to its prey in different vegetable crops. Annals of the Entomological Society of America, 88: 732-738.
Go to original source...
- De Nardo E.A.B., Hopper K.R. (2004): Using the literature to evaluate parasitoid host ranges: a case study of Macrocentrus grandii (Hymenoptera: Braconidae) introduced into North America to control Ostrinia nubilalis (Lepidoptera: Crambidae). Biological Control, 31: 280-295.
Go to original source...
- Ebssa L., Borgemeister C., Berndt O., Poehling H.M. (2001): Efficacy of entomopathogenic nematodes against soildwelling life stages of western flower thrips, Frankliniella occidentalis (Thysanoptera: Thripidae). Journal of Invertebrate Pathology, 78: 119-127.
Go to original source...
Go to PubMed...
- Elimem M., Harbi A., Limem-Sellemi E., Ben Othmen S., Chermiti B. (2018): Orius laevigatus (Insecta; Heteroptera) local strain, a promising agent in biological control of Frankliniella occidentalis (Insecta; Thysanoptra) in protected pepper crops in Tunisia. Euro-Mediterranean Journal fo Environmental Integration, 3: 5. doi: 10.1007/s41207-017-0040-y
Go to original source...
- Farazmand A., Fathipour Y., Kamali K. (2014): Cannibalism in Scolothrips longicornis (Thysanoptera: Thripidae), Neoseiulus californicus and Typhlodromus bagdasarjani (Acari: Phytoseiidae). Systematic and Applied Acarology, 19: 471-480.
Go to original source...
- Funderburk J., Stavisky J., Olson S. (2000): Predation of Frankliniella occidentalis (Thysanoptera: Thripidae) in field peppers by Orius insidiosus (Hemiptera: Anthocoridae). Environmental Entomology, 29: 376-382.
Go to original source...
- Ghasemloo Z., Pakyari H., Arbab A. (2016): Cannibalism and intraguild predation in the phytoseiid mites Phytoseiulus persimilis and Typhlodromus bagdasarjani (Acari: Phytoseiidae). International Journal of Acarology, 42: 149-152.
Go to original source...
- Groves R.L., Walgenbach J.F., Moyer J.W., Kennedy G.G. (2003): Seasonal dispersal patterns of Frankliniella fusca (Thysanoptera: Thripidae) and tomato spotted wilt virus occurrence in central and eastern North Carolina. Journal of Economic Entomology, 96: 1-11.
Go to original source...
Go to PubMed...
- Herrick N.J., Cloyd R.A. (2017): Direct and indirect effects of pesticides on the insidious flower bug (Hemiptera: Anthocoridae) under laboratory conditions. Journal of Economic Entomology, 110: 931-940.
Go to original source...
Go to PubMed...
- Hernández-Rosas F., García-Pacheco L.A., García-Pacheco K.A., Figueroa-Sandoval B., Salinas Ruiz J., SangermanJarquín D., Díaz-Sánchez E.L. (2019): Analysis of research on Metarhizium anisopliae in the last 40 years. Revista Mexicana de Ciencias Agrícolas, 22: 155-166.
Go to original source...
- Hoddle M.S., Robinson L., Drescher K., Jones J. (2000): Developmental and reproductive biology of a predatory Franklinothrips n. sp (Thysanoptera: Aeolothripidae). Biological Control, 18: 27-38.
Go to original source...
- Hu C., Cao L.Z. (2018): Bibliometric and visual analysis of planthopper research between 1980 and 2017. Current Science, 114: 2445-2452.
Go to original source...
- Hussein M.A., El-Mahdi F.S. (2019) Efficiency of three formulated entomopathogenic nematodes against onion thrips, Thrips tabaci under aquaculture system. Journal of Biopesticides, 12: 134-138
Go to original source...
- Janssens F., Leta J., Glänzel W., De Moor B. (2006): Towards mapping library and information science. Information Processing & Management, 42: 1614-1642.
Go to original source...
- Jensen S.E. (2000): Insecticides resistance in the western flowerthrips, Frankliniella occidentalis. Integrated Pest Management Reviews, 5: 131-146.
Go to original source...
- Kashkouli M., Khajehali J., Poorjavad N. (2014): Impact of entomopathogenic nematodes on Thrips tabaci Lindeman (Thysanoptera: Thripidae) life stages in the laboratory and under semi-field conditions. Journal of Biopesticides, 7: 77-84.
Go to original source...
- Khaliq A., Afzal M., Raza A.M., Kamran M., Khan A.A., Aqeel M.A., Ullah M.I., Khan B.S., Kanwal H. (2018): Suitability of Thrips tabaci L. (Thysonaptera: Thripidae) as prey for the phytoseiid mite, Neoseiulus barkeri Hughes (Acari: Phytoseiidae). African Entomology, 26: 131-135.
Go to original source...
- Kiman Z.B., Yeargan K.V. (1985): Development and reproduction of the predator Orius insidiosus (Hemiptera: Anthocoridae) reared on diets of selected plant material and arthropod prey. Annals of the Entomological Society of America, 78: 464-467.
Go to original source...
- Kolle S., Shankarappa T.H., Manjunatha R.T.B., Muniyappa A. (2015): Scholarly communication in the International Journal of Pest Management: a bibliometric analysis from 2005 to 2014. Journal of Agricultural & Food Information, 16: 301-314.
Go to original source...
- Lang A. (2003): Intraguild interference and biocontrol effects of generalist predators in a winter wheat field. Oecologia, 134: 144-153.
Go to original source...
Go to PubMed...
- Lei G., Liu F., Liu P., Zhou Y., Jiao T., Dang Y.H. (2019): A bibliometric analysis of forensic entomology trends and perspectives worldwide over the last two decades (1998-2017). Forensic Science International, 295: 72-82.
Go to original source...
Go to PubMed...
- Liu X., Reitz S.R., Lei Z., Wang H. (2019): Thermoregulatory response of Frankliniella occidentalis (Pergande) (Thysanoptera: Thripidae) to infection by Beauveria bassiana, and its effect on survivorship and reproductive success. Science Report, 9: 13625. doi: 10.1038/s41598-019-49950-z
Go to original source...
Go to PubMed...
- Loomans A.J.M. (2003): Parasitoids as Biological Control Agents of Thrips Pests. [Ph.D. Thesis]. Wageningen, Wageningen Universiteit: 208.
- Mautino G.C., Bosco L., Tavella L. (2014): Impact of control strategies on Thrips tabaci and its predator Aeolothrips intermedius on onion crops. Phytoparasitica, 42: 41-52.
Go to original source...
- Mehle N., Trdan S. (2012): Traditional and modern methods for the identification of thrips (Thysanoptera) species. Journal of Pest Science, 85: 179-190.
Go to original source...
- Moritz G. (1994): Pictorial key to the economically important species of Thysanoptera in central Europe. EPPO Bulletin, 24: 181-208.
Go to original source...
- Morse J.G., Hoddle M.S. (2006): Invasion biology of thrips. Annual Review of Entomology, 51: 67-89.
Go to original source...
Go to PubMed...
- Mound L.A., Morris D.C. (2007): The insect order Thysanoptera: classification versus systematics. Zootaxa, 1668: 395-411.
Go to original source...
- Mound L.A. (2004): Australian Thysanoptera-biological diversity and a diversity of studies. Australian Journal of Entomology, 43: 248-257.
Go to original source...
- Mound L.A., Teulon D.A.J. (1995): Thysanoptera as phytophagous opportunists. In: Thrips Biology and Management. Parker B.L. (ed.): NATO ASI Series, 276. New York, Springer: 3-19.
Go to original source...
- Mound L.A., Kibby G. (1998): Thysanoptera - An Identification Guide. 2nd ed. Wallingford, CAB International
Go to original source...
- Murai T., Loomans A.J.M. (2001): Evaluation of an improved method for mass-rearing of thrips and a thrips parasitoid. Entomologia Experimentalis et Applicata, 101: 281-289.
Go to original source...
- Negloh K., Hanna R., Schausberger P. (2008): Comparative demography and diet breadth of Brazilian and African populations of the predatory mite Neoseiulus baraki, a candidate for biological control of coconut mite. Biological Control, 46: 523-531.
Go to original source...
- Oveja M.F., Riudavets J., Arnó J., Gabarra R. (2016): Does a supplemental food improve the effectiveness of predatory bugs on cucumber? BioControl, 61: 47-56.
Go to original source...
- Otieno J.A., Pallmann P., Poehling H. (2017): Additive and synergistic interactions amongst Orius laevigatus (Heteroptera: Anthocoridae), entomopathogens and azadirachtin for controlling western flower thrips (Thysanoptera: Thripidae). BioControl, 62: 85-95.
Go to original source...
- Pakyari H., Enkegaard A. (2012): Effect of different temperatures on consumption of two spotted mite, Tetranychus urticae, eggs by the predatory thrips, Scolothrips longicornis. Journal of Insect Science, 12: 98. doi: 10.1673/031.012.9801
Go to original source...
Go to PubMed...
- Piazzol J., Nammour D., Hervouet P., Bout A., Desneux N., Mailleret L. (2010): Comparison of two methods of monitoring thrips populations in a greenhouse rose crop. Journal of Pest Science, 83: 191-196.
Go to original source...
- Pozzebon A., Boaria A., Duso C. (2015): Single and combined releases of biological control agents against canopy-and soil-dwelling stages of Frankliniella occidentalis in cyclamen. BioControl, 60: 341-350.
Go to original source...
- Pritchard A. (1969): Statistical bibliography or bibliometrics? Journal of Documentation, 25: 348-349
Go to original source...
- Rotenberg D., Jacobson A.L., Schneweis D., Whitfield. A (2015): Thrips transmission of tospoviruses. Current Opinion in Virology, 15: 80-89.
Go to original source...
Go to PubMed...
- Rothman H., Lester G (1985): The use of bibliometric indicators in the study of insecticide research. Scientometrics, 8: 247-262.
Go to original source...
- Salamanca J., Souza B., Rodriguez-Saona C. (2018): Cascading effects of combining synthetic herbivore-induced plant volatiles with companion plants to manipulate natural enemies in an agro-ecosystem. Pest Management Science, 74: 2133-2145.
Go to original source...
Go to PubMed...
- San-Blas E. (2013): Progress on entomopathogenic nematology research: A bibliometric study of the last three decades: 1980-2010. Biological Control, 66: 102-124.
Go to original source...
- Sinha B. (2012): Global biopesticide research trends: A bibliometric assessment. Indian Journal of Agricultural Science, 82: 95-101
Go to original source...
- Song Z.W., Nguyen D.T., Li D.S., De Clercq P. (2019): Continuous rearing of the predatory mite Neoseiulus californicus on an artificial diet. BioControl, 64, 2: 125-137.
Go to original source...
- Stopar K., Mackiewicz-Talarczyk M., Bartol T. (2021): Cotton fiber in Web of Science and Scopus: mapping and visualization of research topics and publishing patterns. Journal of Natural Fibers, Online first: 1-12.
Go to original source...
- Trdan S., Valiè N., ®e¾lina I., Bergant K., ®nidarèiè D. (2005): Light blue sticky boards for mass trapping of onion thrips, Thrips tabaci Lindeman (Thysanoptera: Thripidae), in onion crops: fact or fantasy? Zeitschrift fur Pflanzenkrankheiten und Pflanzenschutz, 112: 173-180.
- Vaello T., Sarde S.J., Marcos-García M.Á., de Boer J.G., Pineda A. (2018): Modulation of plant-mediated interactions between herbivores of different feeding guilds: Effects of parasitism and belowground interactions. Science Report, 8: 14424. doi:10.1038/s41598-018-32131-9
Go to original source...
Go to PubMed...
- van Eck N.J., Waltman L. (2010): Software survey: VOSviewer, a computer program for bibliometric mapping. Scientometrics, 84: 523-538.
Go to original source...
Go to PubMed...
- van Eck N.J., Waltman L. (2011): Text mining and visualization using VOSviewer. ISSI Newsletter, 7: 50-54
- van Eck N.J., Waltman L., Noyons E.C.M., Buter R.K. (2010): Automatic term identification for bibliometric mapping. Scientometrics, 82: 581-596.
Go to original source...
Go to PubMed...
- van Lenteren J.C. (2012): The state of commercial augmentative biological control: plenty of natural enemies, but a frustrating lack of uptake. BioControl, 57: 1-20.
Go to original source...
- van Rijn P.C.J., Tanigoshi L.K. (1999): Pollen as food for the predatory mites Iphiseius degenerans and Neoseiulus cucumeris (Acari: Phytoseiidae): dietary range and life history. Experimental and Applied Acarology, 23: 785-802.
Go to original source...
- van Rijn P.C.J., van Houten Y.M., Sabelis M.W. (2002): How plants benefit from providing food to predators even when it is also edible to herbivores. Ecology, 83: 2664-2679.
Go to original source...
- Waltman L., van Eck N.J., Noyons E.C.M. (2010): A unified approach to mapping and clustering of bibliometric networks. Journal of Informetrics, 4: 629-635.
Go to original source...
- Wu S., He Z., Wang E., Xu X., Lei Z. (2017): Application of Beauveria bassiana and Neoseiulus barkeri for improved control of Frankliniella occidentalis in greenhouse cucumber. Crop Protection, 96: 83-87.
Go to original source...
- Wu S., Tang L., Fang F., Li D., Yuan X., Zei L., Gao Y. (2018): Screening, efficacy and mechanisms of microbial control agents against sucking pest insects as thrips. Advances in Insect Physiology, 55: 199-217.
Go to original source...
- Xu X., Borgemeister C., Poehling H.M. (2006): Interactions in the biological control of western flower thrips Frankliniella occidentalis (Pergande) and two-spotted spider mite Tetranychus urticae Koch by the predatory bug Orius insidiosus Say on beans. Biological Control, 36: 57-64.
Go to original source...
- Zhao J., Guo X., Tan X., Desneux D., Zappala L., Zhang F., Wang S. (2017): Using Calendula officinalis as a floral resource to enhance aphid and thrips suppression by the flower bug Orius sauteri (Hemiptera: Anthocoridae). Pest Management Science, 73: 515-520.
Go to original source...
Go to PubMed...
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