SUSTAINING THE WORLD THROUGH SCIENCE AND TECHNOLOGY
Planthopper Bibliography Database
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Authors Year Title Journal | |
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14185 | BAEK, Sunghoon and Joon-Ho LEE. 2021 Spatio-temporal distribution of Ricania shantungensis (Hemiptera: Ricaniidae) in chestnut fields: Implications for site-specific management. Journal of Asia-Pacific Entomology 24(1): 409-414. https://doi.org/10.1016/j.aspen.2021.01.006. |
14862 | BAEK, Sunghoon, Geonu LEE, and Chang-Gyu PARK. 2024 Damage analysis of Pochazia shantungensis (Hemiptera: Ricaniidae) in persimmons. Plos one 19(4): e0301471; 1-12. https://doi.org/10.1371/journal.pone.0301471. pdf |
14502 | BAEK, Sunghoon, Hwa-Young SEO, and Chang-Gyu PARK. 2022 Determination of an optimum sampling unit of Ricania shantungensis (Hemiptera: Ricaniidae) eggs in persimmons. Plos one 17(3): e0265083. https://doi.org/10.1371/journal.pone.0265083. pdf |
12972 | BAEK, Sunghoon, Joon-Ho LEE, Dug-Kee PARK, Yujeong PARK, Min-Jung KIM, Kyusoon KIM, Hwa-Young SEO, and Yong-Seok CHOI. 2020 Within-tree distribution of Ricania shantungensis (Hemiptera: Ricaniidae) eggs on chestnuts. Journal of Asia-Pacific Entomology 23(2): 536-539. https://doi.org/10.1016/j.aspen.2020.03.0 |
14202 | BAEK, Sunghoon, Min-Jung KIM, and Joon-Ho LEE. 2019 Current and future distribution of Ricania shantungensis (Hemiptera: Ricaniidae) in Korea: Application of spatial analysis to select relevant environmental variables for MaxEnt and CLIMEX modeling. Forests 10(6): 490; 1-14. https://doi.org/10.3390/f10060490. |
12673 | BAEK, Sunghoon, Sang-Hyun KOH, and Joon-Ho LEE. 2019 Occurrence model of first instars of Ricania shantungensis (Hemiptera: Ricaniidae). Journal of Asia-Pacific Entomology 22(4): 1040-1045. https://doi.org/10.1016/j.aspen.2019.08.010 |
11399 | Baez, M. 1993 Origins and affinities of the fauna of Madiera. Boletim do Museu Municipal do Funchal Suppement 2: 9-40. pdf |
211 | Baez, M., E. Heiss, A. Garcia and A. Cabrera. 2005 Hemiptera: Heteroptera. In: M.A. Hernandez, N.Z. Perez, M.C.M. Gomez and J.L.M. Esquivel. Lista Preliminar de Especies Silvestres de Cabos Verde. Interreg, Acores, Madeirs, Canarias. P. 74 pdf |
14365 | BAGARIANG, Willing, Wayan MURDITA, and Ahmad IMRONI. 2021 Resistance evaluation of some rice varieties by feeding activity of brown planthopper population in Java. SEAS (Sustainable Environment Agricultural Science) 5(2): 79-87. http://dx.doi.org/10.22225/seas.5.2.3913.79-87. pdf |
11904 | Bagheri, A., Y. Fathipour, M. A. Seyahooei and M. Zeinalabedini. 2018 Ecological Niche Modeling of Ommatissus Lybicus (Hemiptera: Tropiduchidae) De Bergevin. Annals of the Entomological Society of America 111(3): 114–121 https://doi.org/10.1093/aesa/say006 pdf |
11594 | Bagheri, A., Y. Fathipour, M. Askari-Seyahooei and M. Zeinalabedini. 2017 Reproductive isolation among allopatric populations of Ommatissus lybicus (Hemiptera: Tropiduchidae). Annals of the Entomological Society of America 110(3): 337–343. doi: 310.1093/aesa/sax1031. |
11959 | Bagheri, A., Y. Fathipour, M. Askari-Seyahooei and M. Zeinalabedini. 2018 Ommatissus lybicus (Hemiptera: Tropiduchidae), an economically important pest of date palm (Arecaceae) with highly divergent populations. Canadian Entomologist 150(3): 378–392. https://doi.org/10.4039/tce.2018.12 |
11158 | Bagheri, A., Y. Fathipour, ZM. Askari-Seyahooei and M. Zeinolabedini. 2016 How different populations and host plant cultivars affect two-sex life table parameters of the date palm hopper, Ommatissus lybicus (Hemiptera: Tropiduchidae). Journal of Agricultural Science and Technology 18(6): 1605–1619. pdf |
9115 | Bagnoli, B. F Pinzauti, V Trivellone. 2005 Indagine preliminare sugli Auchenorrinchi potenziali vettori di Stolbur in un'area viticola del Lazio. Petria 15(1/2): 55-58. pdf |
6406 | Bagnoli, B. and A. Lucchi. 2000 Dannosità e misure di controllo integrato.[Damage and control of Metcalfa pruinosa in agricultural and urban environments] In: A. Lucchi, (ed.). La Metcalfa negli ecosistemi italiani. ARSIA. Regione Toscana, Italy. Pp. 65-88. |
6734 | Bagnoli, B. and E. Gargani. 2010 Bio-ethological observations on Reptalus quinquecostatus and its relationship with stolbur phytoplasma in Tuscany vineyards. In: A. Bertaccini, A. Laviña and E. Torres (eds.). Current status and perspectives of phytoplasma disease research and management. Abstracts of COST Action FA0807 Meeting 1-2 February 2010 in Sitges, Spain. P. 43. pdf |
7761 | Bahagiawati, A.H. and A.A.N.B. Kamandalu. 1991 Research of rice varieties resistant to brown planthopper (Nilaparvata lugens Stal.). Balai Penelitian Tanaman Pangan Bogo- Edisi Khusus 2: 32-36.[Indonesian] |
212 | Bahagiawati, A.H., E.A. Heinrichs, and F.G. Medrano. 1989 Effect of host plant on the level of virulence of Nilaparvata lugens (Homoptera: Delphacidae) on rice cultivars. Environmental Entomology 18: 489-493. |
12602 | Bahder, B. W., C. R. Bartlett, E. A. Barrantes Barrantes, M. A. Zumbado Echavarria, A. R. Humphries, E. E. Helmick, E. M. Goss, M. S. Ascunce. 2019 A new genus and species of cixiid planthopper (Hemiptera: Auchenorrhyncha: Fulgoroidea) from the Reserva Privada el Silencio de Los Angeles Cloud Forest in Costa Rica. Zootaxa 4701 (1): 65–81. https://doi.org/10.11646/zootaxa.4701.1.5 pdf |
12648 | Bahder, B. W., C. R. Bartlett, E. E. Helmick, E. A. Barrantes Barrantes, M. A. Zumbado Echavarria, E. M. Goss and Marina S. Ascunce. 2020 Revised status of Omolicna subgenus Agoo (Hemiptera: Auchenorrhyncha: Fulgoroidea: Derbidae) with a new species from Costa Rica and new country records. Zootaxa 4718(4): 521–535. http://dx.doi.org/10.11646/zootaxa.4718.4.6 |
12093 | Bahder, B. W., E. E. Helmick and N. A. Harrison. 2017 Detecting and differentiating phytoplasmas belonging to subgroups 16SrIV-A and 16SrIV-D associated with lethal declines of palms in Florida using qPCR and High-Resolution Melt Analysis (HRMA). Plant Disease 101(8): 1449–1454. https://doi.org/10.1094/PDIS-01-17-0023-RE pdf |
11993 | Bahder, B. W., E. E. Helmick, De-Fen Mou, N. A. Harrison and R. Davis. 2018 Digital PCR technology for detection of palm-infecting phytoplasmas belonging to group 16SrIV that occur in Florida. Plant Disease 102(5): 1008-1014. https://doi.org/10.1094/PDIS-06-17-0787-RE. pdf |
12095 | Bahder, B. W., E. E. Helmick, S. Chakrabarti, S. Osorio, N. Soto, T. Chouvenc and N. A. Harrison. 2018 Disease progression of a lethal decline caused by the 16SrIV-D phytoplasma in Florida palms. Plant Pathology 67: 1821-1828. https://doi.org/10.1111/ppa.12882 pdf |
12428 | Bahder, B. W., N. Soto, E. Helmick, K. Dey, L. Komondy, A. R. Humphries, De-fen Mou, R. Bailey, M. S. Ascunce and E. Goss. 2019 A survey of declining palms (Arecaceae) for the 16SrIV-D phytoplasma for evaluating distribution and host range in Florida. Plant Disease 103(10): 2512-2519. https://doi.org/10.1094/PDIS-03-19-0633-RE pdf |
12196 | Bahder, B. W., N. Soto, L. Komondy, De-Fen Mou, A. R. Humphries and E. Helmick. 2019 Detection and quantification of the 16SrIV-D phytoplasma in leaf tissue of common ornamental palm species in Florida using qPCR and dPCR. Plant Disease 103: 1918-1922. https://doi.org/10.1094/PDIS-01-19-0010-RE |