A Review of Franklinothrips vespiformis (Thysanoptera: Aeolothripidae): Life History, Distribution, and Prospects as a Biological Control Agent
Abstract
:Simple Summary
Abstract
1. Introduction
2. Distribution
2.1. F. vespiformis
2.2. Other Franklinothrips Species
3. Morphological Characteristics
3.1. Eggs
3.2. Larva
3.3. Pupa
3.4. Adult Female
3.5. Adult Male
4. Life History
4.1. Developmental Parameters
4.2. Sex Ratio
4.3. Ovipositing Behavior
4.4. Cocoon Spinning
4.5. Ant-Mimicking Behavior
5. Franklinothrips: Perspectives for Biological Control of Pests
5.1. Natural Prey Range
Prey | Species | Stage of Prey * | Host Plant | Reference(s) |
---|---|---|---|---|
Leafhopper | Idona minuenda | na | Citrus, avocado | [29] |
Leafminer | Liriomyza trifolii | L | Chrysanthemums and celery | [36] |
Spider mites | Oligonychus yothersi | E, L, A | Solanaceous plants | [29] |
Tetranychus urticae | L, A | Laboratory | [36,41] | |
Tetranychus neocaledonicus | L, A | Lima beans | [30] | |
Thrips | Caliothrips insularis | - | Mint | [26] |
Caliothrips phaseoli | L, A | Lima bean | [30] | |
Dinurothrips hookeri | - | Ornamental flowers | [26] | |
Echinothrips americanus | L, A, P | Greenhouse crops | [40] | |
Frankliniella occidentalis | L, A, P | Apple, vegetables, and ornamental crops | [40,41,55] | |
Frankliniella intonsa | - | Vegetables and ornamental crops | [55,56] | |
Heliothrips haemorrhoidalis | - | Avocado | [40,57] | |
Leucothrips furcatus | L, A | Curcubits | [31] | |
Parthenothrips dracaenae | L, A, P | Ficus species, dracaena, [40] palm, and orchid | [40] | |
Scirtothrips dorsalis | L | Chilli and beans | [53] | |
Selenothrips rubrocinctus | - | Sudan grass | [26] | |
Thrips palmi | L, A | Laboratory | [36,40] | |
Thrips tabaci | - | Onion | [38,39,40,56] | |
Whitefly | Trialeurodes floridensis | E, L | Citrus, avocado | [29] |
Bemisia tabaci (MEAM 1) | - | Laboratory | [36,53] |
5.2. Franklinothrips: As Augmentative Biological Control Agents
5.3. Release of F. vespiformis in Greenhouse Crops
5.4. Commercial Availability
6. Other Predatory Thrips and Prey Associations
7. Future Research Perspectives
Author Contributions
Funding
Institutional Review Board Statement
Data Availability Statement
Conflicts of Interest
References
- ThripsWiki. Providing information on the World’s thrips (version Nov 2018). In Species 2000 & ITIS Catalogue of Life, 2019 Annual Checklist; Roskov, Y., Ower, G., Orrell, T., Nicolson, D., Bailly, N., Kirk, P.M., Bourgoin, T., DeWalt, R.E., Decock, W., Nieukerken, E., et al., Eds.; Naturalis: Leiden, The Netherlands, 2019; Available online: www.catalogueof-life.org/annual-checklist/2019 (accessed on 23 November 2021).
- Parker, B.; Skinner, M.; Ewis, T. (Eds.) Thrips Biology and Management; NATO ASI Series. Life Science; Springer: Boston, MA, USA, 1995; Volume 276. [Google Scholar]
- Riley, D.G.; Joseph, S.V.; Srinivasan, R.; Diffie, S. Thrips vectors of tospoviruses. J. Integr. Pest Manag. 2011, 2, I1–I10. [Google Scholar] [CrossRef]
- Morse, J.G.; Hoddle, M.S. Invasion biology of thrips. Annu. Rev. Entomol. 2006, 51, 67–89. [Google Scholar] [CrossRef] [Green Version]
- Reynaud, P. Thrips (Thysanoptera). Chapter 13.1. BioRisk 2010, 4, 767. [Google Scholar] [CrossRef]
- zur Strassen, R. Binomial data of some predacious thrips. In Thrips Biology and Management; Parker, B., Skinner, M., Ewis, T., Eds.; Springer: Boston, MA, USA, 1995; pp. 325–328. [Google Scholar]
- Saengyot, S. Predatory thrips species composition, their prey and host plant association in Northern Thailand. Agric. Nat. Resour. 2016, 50, 380–387. [Google Scholar] [CrossRef]
- Parrella, M.; Rowe, D.; Horsburgh, R. Biology of Leptothrips mali, a common predator in Virginia apple orchards. Ann. Entomol. Soc. Am. 1982, 75, 130–135. [Google Scholar] [CrossRef]
- Haviland, D.R.; Rill, S.M.; Gordon, C.A. Field biology of Scolothrips sexmaculatus (Thysanoptera: Thripidae) as a predator of Tetranychus pacificus (Acari: Tetranychidae) in California almonds. J. Econ. Entomol. 2021, 114, 1111–1116. [Google Scholar] [CrossRef]
- Mound, L.A.; Reynaud, P. Franklinothrips; a pantropical Thysanoptera genus of ant-mimicking obligate predators (Aeolothripidae). Zootaxa 2005, 864, 1–16. [Google Scholar] [CrossRef] [Green Version]
- Mirab-Balou, M.; Shi, M.; Chen, X.-X. A new species of Franklinothrips Back (Thysanoptera: Aeolothripidae) from Yunnan, China. Zootaxa 2011, 2926, 61–64. [Google Scholar] [CrossRef]
- Reyne, A. A Cocoonspinning Thrips. Tijdschr. Voor Entomol. 1920, 63, 40–45. [Google Scholar]
- Pereyra, V.; Cavalleri, A. The genus Heterothrips (Thysanoptera) in Brazil, with an identification key and seven new species. Zootaxa 2012, 3237, 1–23. [Google Scholar] [CrossRef]
- Goldarazena, A.; Gattesco, F.; Atencio, R.; Korytowski, C. An updated checklist of the Thysanoptera of Panama with comments on host associations. Check List 2012, 8, 1232–1247. [Google Scholar] [CrossRef] [Green Version]
- Larentzaki, E.; Powell, G.; Copland, M.J. Effect of cold storage on survival, reproduction and development of adults and eggs of Franklinothrips vespiformis (Crawford). Biol. Control 2007, 43, 265–270. [Google Scholar] [CrossRef]
- Larentzaki, E.; Powell, G.; Copland, M.J. Effect of temperature on development, overwintering and establishment potential of Franklinothrips vespiformis in the UK. Entomol. Exp. Appl. 2007, 124, 143–151. [Google Scholar] [CrossRef]
- Hoddle, M.S.; Oevering, P.; Phillips, P.A.; Faber, B.A. Evaluation of augmentative releases of Franklinothrips orizabensis for control of Scirtothrips perseae in California avocado orchards. Biol. Control 2004, 30, 456–465. [Google Scholar] [CrossRef]
- Mahaffey, L.A.; Cranshaw, W.S. Thrips species associated with onion in Colorado. Southwest. Entomol. 2010, 35, 45–50. [Google Scholar] [CrossRef]
- Stannard, L.J., Jr. Peanut-winged thrips (Thysanoptera: Thripidae). Ann. Entomol. Soc. Am. 1952, 45, 327–330. [Google Scholar] [CrossRef]
- Stannard, L.J. Phylogenetic studies of Franklinothrips (Thysanoptera: Aeolothripidae). J. Wash. Acad. Sci. 1952, 42, 14–23. [Google Scholar]
- Hoddle, M.S.; Mound, L.A.; Paris, D.L. Thrips of California; CBIT Publishing: Brisbane, QLD, Australia, 2012; Available online: https://keys.lucidcentral.org/keys/v3/thrips_of_california/Thrips_of_California.html (accessed on 23 November 2021).
- Crawford, D. Some Thysanoptera of Mexico and the south. I. Pomona Coll. J. Entomol. 1909, 1, 109–119. [Google Scholar]
- Cambero-Campos, J.; Johansen-Naime, R.; García-Martínez, O.; Cerna-Chávez, E.; Robles-Bermúdez, A.; Retana-Salazar, A. Species of thrips (Thysanoptera) in avocado orchards in Nayarit, Mexico. Fla. Entomol. 2011, 94, 982–986. [Google Scholar] [CrossRef]
- CABI. Invasive Species Datasheet, Franklinothrips vespiformis (Vespiform Thrips). 2021. Available online: https://www.cabi.org/isc/datasheet/24485 (accessed on 23 November 2021).
- Greathead, D.J.; Greathead, A.H. Biological control of insect pests by insect parasitoids and predators: The BIOCAT database. Biocontrol 1992, 13, 61N–68N. [Google Scholar]
- Callan, E.M. Natural enemies of the cacao thrips. Bull. Entomol. Res. 1943, 34, 313–321. [Google Scholar] [CrossRef]
- Williams, C. Plant diseases and pests: Notes on some Trinidad thrips of economic importance. Trinidad Tobago Bull. 1918, 3, 143–146. [Google Scholar]
- Watson, J.; Hubbell, T. On a collection of Thysanoptera from Honduras. Fla. Entomol. 1924, 7, 60–62. [Google Scholar] [CrossRef]
- Moulton, D. The Thysanoptera of South America. Revta Entomol. 1932, 2, 464–465. [Google Scholar]
- de França, S.M.; de Melo Júnior, L.C.; Neto, A.V.G.; Silva, P.R.R.; Lima, É.F.B.; Melo, J.W.S. Natural enemies associated with Phaseolus lunatus L. (Fabaceae) in Northeast Brazil. Fla. Entomol. 2018, 101, 688–691. [Google Scholar] [CrossRef]
- Lima, E.F.B.; Souza-Filho, M.F. Leucothrips furcatus (Thysanoptera Thripidae): A new pest of Sechium edule (Cucurbitaceae) in Brazil. Bull. Insectol. 2018, 71, 189–191. [Google Scholar]
- Wang, C.-L. Two new records and two new species of thrips (Thysanoptera, Terebrantia) of Taiwan. Chin. J. Entomol. 1993, 13, 251–257. [Google Scholar]
- Tyagi, K.; Kumar, V. Thrips (Insecta: Thysanoptera) of India-an updated checklist. Halteres 2016, 7, 64–98. [Google Scholar]
- Mahendran, P.; Radhakrishnan, B. Franklinothrips vespiformis Crawford (Thysanoptera: Aeolothripidae), a potential predator of the tea thrips, Scirtothrips bispinosus Bagnall in south Indian tea plantations. Entomon 2019, 44, 49–55. [Google Scholar] [CrossRef]
- Sartiami, D.; Mound, L.A. Identification of the terebrantian thrips (Insecta, Thysanoptera) associated with cultivated plants in Java, Indonesia. ZooKeys 2013, 306, 1–21. [Google Scholar]
- Arakaki, N.; Okajima, S. Notes on the biology and morphology of a predatory thrips, Franklinothrips vespiformis (Crawford) (Thysanoptera: Aeolothripidae): First record from Japan. Entomol. Sci. 1998, 1, 359–363. [Google Scholar]
- Pijnakker, J.; Overgaag, D.; Guilbaud, M.; Vangansbeke, D.; Duarte, M.; Wäckers, F. Biological control of the Japanese flower thrips Thrips setosus Moulton (Thysanoptera: Thripidae) in greenhouse ornamentals. IOBC-WPRS Bull. 2019, 147, 107–112. [Google Scholar]
- Pizzol, J.; Nammour, D.; Hervouet, P.; Poncet, C.; Desneux, N.; Maignet, P. Population dynamics of thrips and development of an integrated pest management program using the predator Franklinothrips vespiformis. In Proceedings of the XXVIII International Horticultural Congress on Science and Horticulture for People (IHC2010), Lisbon, Portugal, 22–27 August 2010; pp. 219–226. [Google Scholar]
- Pizzol, J.; Nammour, D.; Ziegler, J.-P.; Voisin, S.; Maignet, P.; Olivier, N.; Paris, B. Efficiency of Neoseiulus cucumeris and Franklinothrips vespiformis for controlling thrips in rose greenhouses. In Proceedings of the International Symposium on High Technology for Greenhouse System Management: Greensys 2007, Naples, Italy, 4–6 October 2007; Volume 801, pp. 1493–1498. [Google Scholar]
- Loomans, A.; Vierbergen, G. Franklinothrips: Perspectives for greenhouse pest control. IOBC WPRS Bull. 1999, 22, 157–160. [Google Scholar]
- Zegula, T.; Sengonca, C.; Blaeser, P. Entwicklung, reproduktion und Prädationsleistung von zwei Raubthrips-arten Aeolothrips intermedius Bagnall und Franklinothrips vespiformis Crawford (Thysanoptera: Aeolothripidae) mit ernährung zweier natürlicher beutearten. Gesunde Pflanz. 2003, 55, 169–174. [Google Scholar] [CrossRef]
- Cox, P.; Matthews, L.; Jacobson, R.; Cannon, R.; MacLeod, A.; Walters, K. Potential for the use of biological agents for the control of Thrips palmi (Thysanoptera: Thripidae) outbreaks. Biocontrol Sci. Technol. 2006, 16, 871–891. [Google Scholar] [CrossRef]
- Hoddle, M.S. Predation behaviors of Franklinothrips orizabensis (Thysanoptera: Aeolothripidae) towards Scirtothrips perseae and Heliothrips haemorrhoidalis (Thysanoptera: Thripidae). Biol. Control 2003, 27, 323–328. [Google Scholar] [CrossRef]
- Tyagi, K.; Mound, L.; Kumar, V. Sexual dimorphism among Thysanoptera Terebrantia, with a new species from Malaysia and remarkable species from India in Aeolothripidae and Thripidae. Insect Syst. Evol. 2008, 39, 155–170. [Google Scholar] [CrossRef]
- Kumar, B. Thrips. In Polyphagous Pests of Crops; Omkar, Ed.; Springer: Singapore, 2021; pp. 373–407. [Google Scholar]
- Arakaki, N.; Miyoshi, T.; Noda, H. Wolbachia-mediated parthenogenesis in the predatory thrips Franklinothrips vespiformis (Thysanoptera: Insecta). Proc. R. Soc. London Ser. B Biol. Sci. 2001, 268, 1011–1016. [Google Scholar] [CrossRef] [Green Version]
- Kumm, S.; Moritz, G. First detection of Wolbachia in arrhenotokous populations of thrips species (Thysanoptera: Thripidae and Phlaeothripidae) and its role in reproduction. Environ. Entomol. 2008, 37, 1422–1428. [Google Scholar] [CrossRef] [PubMed]
- Nguyen, D.T.; Spooner-Hart, R.N.; Riegler, M. Loss of Wolbachia but not Cardinium in the invasive range of the Australian thrips species, Pezothrips kellyanus. Biol. Invasions 2016, 18, 197–214. [Google Scholar] [CrossRef]
- O’Neill, K. Identification of the Newly Introduced Phlaeothripid Haplothrips? Clarisetis Priesner (Thysanoptera). Ann. Ent Soc. Am. 1960, 53, 507–510. [Google Scholar] [CrossRef]
- Pal, S.; Wahengbam, J.; Raut, A.; Banu, A.N. Eco-biology and management of onion thrips (Thysanoptera: Thripidae). J. Entomol. Res. 2019, 43, 371–382. [Google Scholar] [CrossRef]
- Putman, W.L. Notes on the predaceous thrips Haplothrips subtilissimus hal. and Aeolothrips melaleucus Hal. Can. Entomol. 1942, 74, 37–43. [Google Scholar] [CrossRef]
- Johansen, R.M. Algunos aspectos sobre la conducta mimetic de Franklinothrips vespiformis (Crawford (Insecta: Thysanoptera)). An. Instit. Biol. Univ. Nac. Mex. 1977, 47, 45–52. [Google Scholar]
- Johansen, R.M. Nuevos estudios acerca del mimetismo en el genero Franklinothrips Back (Insect: Thysanoptera) en Mexico. An. Inst. Biol. Univ. Nac. Mex. 1983, 53, 133–156. [Google Scholar]
- Mao, R.; Xiao, Y.; Arthurs, S. Vespiform Thrips Franklinothrips vespiformis Crawford (Insecta: Thysanoptera: Aeolothripidae); University of Florida: Gainesville, FL, USA, 2018; IFAS Extension EENY621; 4p, Available online: https://edis.ifas.ufl.edu/pdf/IN/IN108300.pdf (accessed on 23 November 2021).
- Kort, I.B.; Moraza, M.L.; Attia, S.; Mansour, R.; Kheder, S.B. Beneficial arthropods as potential biocontrol candidates of thrips (Thysanoptera: Thripidae) occurring in Tunisian citrus orchards. Biologia 2020, 75, 2261–2270. [Google Scholar] [CrossRef]
- Imura, T. Potential for biological control of thrips on greenhouse cucumbers by Franklinothrips vespiformis (Crawford). Proc. Kansai Plant Prot. Soc. 2003, 45, 47–49. [Google Scholar]
- McMurtry, J.A. The role of exotic natural enemies in the biological control of insect and mite pests of avocado in California. In Proceedings of the Second World Avocado Congress, Orange, CA, USA, 21–26 April 1991; California Avocado Society: Ventura, CA, USA, 1992; pp. 247–252. [Google Scholar]
- Entocare. Predatory Thrips Franklinothrips vespiformis. 2021. Available online: https://entocare.nl/biological-control-thrips/franklinothrips-vespiformis/?lang=en (accessed on 23 November 2021).
- Koppert. Franklinothrips vespiformis, Thrips Prédateur Franklinothrips vespiformi. 2021. Available online: https://www.koppert.fr/franklinothrips-vespiformis/ (accessed on 23 November 2021).
- Childers, C.C.; Nakahara, S. Thysanoptera (thrips) within citrus orchards in Florida: Species distribution, relative and seasonal abundance within trees, and species on vines and ground cover plants. J. Insect Sci. 2006, 6, 1–19. [Google Scholar] [CrossRef]
- Hua, L.Z. List of Chinese Insects: Homoptera: Adelgoidea and Aphidoidea; Zhongshan University Press: Guangzhou, China, 2000; Volume 1, pp. 110–131. [Google Scholar]
- Mirab-balou, M.; Chen, X.X. Aleurodothrips fasciapennis Franklin: A newly recorded genus and species for Iran (Thysanoptera: Phlaeothripidae). Munis Entomol. Zool. 2012, 7, 334–338. [Google Scholar]
- Devasahayam, S.; Koya, K.M.A. Natural enemies of major insect pests of black pepper (Piper nigrum L.) in India. J. Spices Arom. Crop. 1994, 3, 50–55. [Google Scholar]
- de Borbon, C.M.; Agostini, J.P. Gynaikothrips uzeli (Zimmermann) and Androthrips ramachandrai Karny (Thysanoptera: Phlaeothripidae), first record for Argentina. Rev. Faculdad Cienc. Agrar. Univ. Nac. Cuyo. 2011, 43, 253–260. [Google Scholar]
- Vega, F.E.; Infante, F.; Castillo, A.; Jaramillo, J. The coffee berry borer, Hypothenemus hampei (Ferrari) (Coleoptera: Curculionidae): A short review, with recent findings and future research directions. Terr. Arthropod Rev. 2009, 2, 129–147. [Google Scholar]
- Ghasemzadeh, S.; Leman, A.; Messelink, G.J. Biological control of Echinothrips americanus by phytoseiid predatory mites and the effect of pollen as supplemental food. Exp. Appl. Acarol. 2017, 73, 209–221. [Google Scholar] [CrossRef] [Green Version]
- Nomikou, M.; Janssen, A.; Schraag, R.; Sabelis, M.W. Phytoseiid predators as potential biological control agents for Bemisia tabaci. Exp. Appl. Acarol. 2001, 25, 271–291. [Google Scholar] [CrossRef] [PubMed]
- Hussain, M.; Debnath, B.; Qasim, M.; Bamisile, B.S.; Islam, W.; Hameed, M.S.; Wang, L.; Qiu, D. Role of saponins in plant defense against specialist herbivores. Molecules 2019, 24, 2067. [Google Scholar] [CrossRef] [Green Version]
- Sureshkumar, N.; Ananthakrishnan, T.N. Biotic interactions in relation to prey-predator relationship with special reference to some thrips species (Thysanoptera: Insecta). J. Entomol. Res. 1987, 11, 192–202. [Google Scholar]
Region | Country (Location) | Reference(s) |
---|---|---|
North America | USA (Colorado) | [18] |
USA (Arizona, California, Florida, Texas) | [10,19,20,21] | |
Mexico | [22,23,24,25] | |
Caribbean | Jamaica, Dominican Republic, Barbados | [24,25] |
Puerto Rico | [25] | |
Trinidad and Tobago | [26,27] | |
St. Vincent Island, West Indies | [24,25] | |
Central America | Costa Rica, El Salvador, Nicaragua | [14,22,24] |
Honduras | [28] | |
Panama | [14] | |
South America | Brazil | [29,30,31] |
Paraguay | [24] | |
Peru (Miraflores) | [14] | |
Surinam | [12,25] | |
Asia | China (Taiwan) | [32] |
China (Guangdong Yunnan, Guangxi) | [11] | |
India (Karnataka, Maharashtra, Kerala, Tamil Nadu) | [33,34] | |
Indonesia (Java) | [35] | |
Japan (Okinawa) | [36,37] | |
Thailand | [7,25] | |
Oceania | Australia (Queensland) | [10] |
New Caledonia | [10] | |
Hawaii | [24] | |
Europe | France | [38,39,40] |
Germany | [41] | |
Portugal | [24] | |
UK | [15,16,42] |
Development Parameter | Temperature (°C) | Reference(s) | ||
---|---|---|---|---|
21 °C | 25 °C | 27 °C | ||
Life Stage (Days (±SE)) | [15,16] | |||
Eggs | 16.06 ± 0.8 | 10.39 ± 0.1 | 9.7 ± 0.0 | |
Larva 1 | 4.04 ± 0.12 | 2.03 ± 0.0 | 1.9 ± 0.0 | |
Larva 2 | 3.9 ± 0.1 | 2.1 ± 0.0 | 1.1 ± 0.0 | |
Prepupal and Pupal | 12.5 ± 0.1 | 7.4 ± 0.1 | 5.3 ± 0.0 | |
Unmated Males | 24.3 ± 1.6 | 16.4 ± 1.3 | 9.0 ± 0.7 | |
Mated Males | 15.6 ± 1.9 | 12.8 ± 1.6 | 8.0 ± 0.6 | |
Reproductive parameter (±SE) | ||||
Unmated Females | ||||
Pre-oviposition period (days) | 1.6 ± 0.2 | 0.9 ± 0.2 | 2.4 ± 1.0 | |
Mean total progeny | 67.9 ± 21.4 | 71.2 ± 12.9 | 8.5 ± 3.8 | |
Mean daily progeny | 2.3 ± 0.2 | 4.1 ± 0.3 | 1.0 ± 0.1 | |
Mean lifetime oviposition rate | 154 ± 22.4 | 314 ± 44.1 | 105 ± 17.9 | |
Mean daily oviposition rate | 7.1 ± 0.4 | 18.1 ± 13.6 | 12.9 ± 1.3 | |
Mated Females | ||||
Pre-oviposition period (days) | 1.5 ± 0.2 | 0.9 ± 0.1 | 0.8 ± 0.2 | |
Mean total progeny | 35.2 ± 6.6 | 44.4 ± 11.8 | 8.4 ± 2.8 | |
Mean daily progeny | 1.8 ± 0.1 | 3.1 ± 0.2 | 0.9 ± 0.2 | |
Mean lifetime oviposition rate | 128 ± 25.5 | 220 ± 47.9 | 101 ± 14.7 | |
Mean daily oviposition rate | 6.5 ± 0.5 | 15.9 ± 1.1 | 12.8 ± 1.1 | |
Population growth parameters (±SE) | ||||
Net reproductive rate (R0) | 18.5 ± 0.18 | 33.3 ± 0.28 | 4.5 ± 0.07 | |
Generation time (Tc) | 49.1 ± 0.12 | 27.9 ± 0.05 | 24.2 ± 0.06 | |
Intrinsic rate of increase (rm) | 0.06 ± 0.0002 | 0.13 ± 0.0003 | 0.06 ± 0.0007 | |
Finite rate of increase (λ) | 1.06 ± 0.0002 | 1.14 ± 0.0004 | 1.07 ± 0.0007 | |
Survival time in days (Td) | 11.12 ± 0.03 | 5.16 ± 0.01 | 11.05 ± 0.12 |
Predatory Thrips | Prey | Host Plant | Country | Reference(s) |
---|---|---|---|---|
Aleurodothrips fasciapennis | Thrips spp., Coccus sp., Aleurodicus dispersus | Bidens pilosa (Asteraceae), Derris indica (Fabaceae), Spondias pinnata (Anacardiaceae), Manihot esculenta (Euphorbiaceae) | Thailand | [7] |
Whiteflies, psyllid, scale | Citrus (Rutaceae) | Florida, USA, China | [60,61] | |
Planococcus citri | Grape (Vitaceae) | Iran | [62] | |
Androthripsflavipes | Gynaikothrips ficorum | Ficus retusa (Moraceae) | Thailand | [7] |
Liothrips karnyi | Piper nigrum (Piperaceae) | Kerala, India | [63] | |
A. ramachandrai | Montandoniola confusa | Pterocarpus indicus (Leguminosae) | Thailand | [7] |
Gynaikothrips uzeli | Ficus retusa (Moraceae) | China | [62] | |
G. uzeli | Ficus benjamina (Moraceae) | Argentina | [64] | |
F. vespiformis | Citrus spp., Avocado | Central and South America | [29] | |
F. orizabensis | Avocado, Persea americana (Lauraceae) | California, USA | [43] | |
Karnyothripsflavipes | Coccus viridis | Coffea arabica (Rubiaceae) | Thailand | [7] |
Hypothenemus hampei | Coffea arabica (Rubiaceae) | Kenya | [65] | |
Thrips spp. | Citrus (Rutaceae) | Florida, USA | [61] | |
Thrips spp. | Allium sativum (Alliaceae), Bidens pilosa (Asteraceae), Gomphrena celosiodes (Amaranthaceae) | Thailand | [7] | |
Leptothrips spp. | Thrips spp. | Bidens pilosa, Tridax procumbens, Chromolaena odoratum (Asteraceae) | Thailand | [7] |
Thrips spp. | Citrus (Rutaceae) | Florida, USA | [61] | |
Podothrips spp. | Aceria litchi, Thrips spp., Aphis sp., Eutetranychus sp. | Sandoricum koetjape (Meliaceae), Litchi chinensis (Sapindaceae) Argyreia capitiformis (Convolvulaceae), Bambusa sp. (Poaceae) | Thailand | [7] |
Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations. |
© 2022 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Hussain, M.; Wang, Z.; Arthurs, S.P.; Gao, J.; Ye, F.; Chen, L.; Mao, R. A Review of Franklinothrips vespiformis (Thysanoptera: Aeolothripidae): Life History, Distribution, and Prospects as a Biological Control Agent. Insects 2022, 13, 108. https://doi.org/10.3390/insects13020108
Hussain M, Wang Z, Arthurs SP, Gao J, Ye F, Chen L, Mao R. A Review of Franklinothrips vespiformis (Thysanoptera: Aeolothripidae): Life History, Distribution, and Prospects as a Biological Control Agent. Insects. 2022; 13(2):108. https://doi.org/10.3390/insects13020108
Chicago/Turabian StyleHussain, Mubasher, Zhaohong Wang, Steven P. Arthurs, Jing Gao, Fengxian Ye, Lingling Chen, and Runqian Mao. 2022. "A Review of Franklinothrips vespiformis (Thysanoptera: Aeolothripidae): Life History, Distribution, and Prospects as a Biological Control Agent" Insects 13, no. 2: 108. https://doi.org/10.3390/insects13020108
APA StyleHussain, M., Wang, Z., Arthurs, S. P., Gao, J., Ye, F., Chen, L., & Mao, R. (2022). A Review of Franklinothrips vespiformis (Thysanoptera: Aeolothripidae): Life History, Distribution, and Prospects as a Biological Control Agent. Insects, 13(2), 108. https://doi.org/10.3390/insects13020108