College of Agriculture & Natural Resources | University of Delaware
SUSTAINING THE WORLD THROUGH SCIENCE AND TECHNOLOGY

Planthopper Bibliography Database


List
Authors Year Title Journal
10998 Zanardi, O.Z., L. do Prado Ribeiro, T.F. Ansante, M.S. Santos, G.P. Bordini, P.T. Yamamoto, and J.D. Vendramim. 2015 Bioactivity of a matrine-based biopesticide against four pest species of agricultural importance. Crop Protection 67: 160-167.
6996 Xu, H.X., Y.P. Yu, Z.X. Lu, J.M. Chen, X.S. Zheng, and Q. Wang. 2003 Bioactivities of the crude extracts of Ginkgo biloba against Nilaparvata lugens. Chinese Journal of Biological Control 19(2): 63-65.
14349 Mardiningsih, T.L. and Rohimatun. 2021 Bioactivities of Lamiaceae, Myristicaceae, and Myrtaceae plant oils against Nilaparvata lugens Stal. (Hemiptera: Delphacidae). The 4th International Conference on Biosciences. IOP Conference Series: Earth and Environmental Science 948: 012060; 1-9. https://doi.org/10.1088/1755-1315/948/1/012060.
7033 Su, Y.P., C.J. Yang. H.X. Hu, W.L. Cai, and Y.J. Lin. 2009 Bioactivities of ethanol extracts from thirteen plants against Nilaparvata lugens (Stal). Chinese Agricultural Science Bulletin 25(1): 198-202.
7012 Xu, D.J., Y. Chang, X.Y. Wan, H. Zhang, and S.D. Zhu. 2005 Bioactivities of 0.3% Azadirachtin EC against Nilaparvata lugens Stal. Modern Agrochemicals 4(4): 25-29,33.
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
13654 Sulagitti, A., M. Raghuraman, and M.S.S. Reddy. 2017 Bio-efficacy of some novel insecticides against Nilaparvata lugens (Stål) (Hemiptera: Delphacidae) on paddy. Journal of Entomology and Zoology Studies 5(3): 532-536. pdf
13780 Singh, R., N. Kumari Neelam, V. Paul, and S. Kumar. 2018 Bio-efficacy of novel insecticides and Pymetrozine 50% WG against insect pests of paddy. International Journal of Plant Protection 11(18): 23-29. http://doi.org/10.15740/HAS/IJPP/11.1/23-29.
13676 Roy, D. and G. Chakraborty. 2021 Bio-efficacy of novel chemicals and tribal pesticide-based integrated modules against brown planthopper in rice. International Journal of Tropical Insect Science (2021): 1-11. https://doi.org/10.1007/s42690-021-00534-3.
13918 GAJENDRA, Chandrakar, Navneet RANA, Yaspal Singh NIRALA and Pankaj BHARGAV. 2017 Bio-efficacy of newer insecticide against green leaf hopper and brown plant hopper of rice and their effects on natural enemies. Trends in Biosciences 10(28): 6011-6016. pdf
7856 Elanchezhian, J., A. Regupathy, and S.V. Krishnamoorthy. 2008 Bio-efficacy of Lambda cyhalothrin against Nliapayvata lugens (Stal.) and safty to green mirid bug. Annals of Plant Protection Sciences 16(2): 325-328.
13665 Dhurwey, R.K., and S. Deole. 2021 Bio-efficacy of different insecticides against brown planthopper, Nilaparvata lugens (Stal.) (Hemiptera: Delphacidae) on rice in Raipur, Chhattisgarh. Journal of Entomology and Zoology Studies 9(2): 1168-1172.
14125 Shafia, Z. and R. N. Singh. 2016 Bio-efficacy of combination of insecticides against brown plant hooper, Nilaparvata lugens (Stål) and rice gundhi bug, Leptocorisa varicornis (Fabr) in rice. International Journal of Agricultural and Statistical Sciences 12(Suppl. 1): 29-33.
14379 KIM, Eun-Gyeong, Sopheap YUN, Jae-Ryoung PARK, Yoon-Hee JANG, Muhammad FAROOQ, Byoung-Ju YUN, and Kyung-Min KIM. 2022 Bio-efficacy of Chrysoeriol7, a natural chemical and repellent, against brown planthopper in rice. International Journal of Molecular Sciences 23(3): 1540; 1-13. https://doi.org/10.3390/ijms23031540.
14428 Jaglan, M.S., O.P. Chaudhary, S. Singh, S.S. Yadav, A. Duhan, and J. Yadav. 2022 Bio-efficacy and post harvest residue estimation of natural enemy friendly dinotefuran 20 SG against brown planthopper (Nilaparvata lugens Stål) in rice (Oryza sativa L.). International Journal of Tropical Insect Science 42(3): 2547-2558. https://doi.org/10.1007/s42690-022-00781-y.
13847 Shankar, M., G. Shivaprasad, K. Sumalini, R.V.T. Balazzii Naaiik, and K. Cheeranjeevi. 2019 Bio-efficacy and phytotoxicity of novel insecticides agianst brown plant hopper (Stal.), Nilaparvata lugens (Hemiptera: Delhacidae) on rice. Journal of Entomology and Zoology Studies 7(5): 860-865. pdf
10408 Wan, G.J., S.L. Jiang, Z.C. Zhao, J.J. Xu, X.R. Tao, G.A. Sword, Y.B. Gao, W.D. Pan, and F.J. Chen. 2014 Bio-effects of near-zero magnetic fields on the growth, development and reproduction of small brown planthopper, Laodelphax striatellus and brown planthopper, Nilaparvata lugens. Journal of Insect Physiology 68: 7-15. DOI: 10.1016/j.jinsphys.2014.06.016.
9862 Vijaykumar, L. 2004 Bio-ecology, seasonal incidence and management of sorghum shoot bug, Peregrinus maidis (Ashmead) (Homoptera: Delphacidae). University of Agricultural Science, Dharwad. India. Master’s Thesis.
10696 de Oliveira, C.M. and M.R. Frizzas. 2015 Bio-ecology of Poekilloptera phalaenoides (Hemiptera: Flatidae) under the influence of climatic factors in the Brazilian Cerrado. Annals of the Entomological Society of America 108(3): 263-271. DOI: 10.1093/aesa/sav00.
13944 Balikai, R.A., D. N. Kambrekar, P. K. Natikar, and R. Anaji. 2017 Bio-ecology and management of shoot bug, Peregrinus maidis (Ashmead) on sorghum and maize-A review. Biochemical and Cellular Archives 17(1): 27-40. pdf
6408 Olmi, M. 2000 Bio-ecologia degli imenotteri driinidi e loro impiego in programmi di lotta biologica.[Biology and ecology of dryinid wasps and their use in biological control (Hymenoptera Dryinidae)] In: A. Lucchi, (ed.). La Metcalfa negli ecosistemi italiani. ARSIA. Regione Toscana, Italy. Pp. 93-117.
13263 Kurmi, A., R. Pachori, A.K. Bhowmick, A.K. Sharma, M. Thomas, and H.L. Sharma. 2019 Bio-diversityof photo-tactic hemipteran insects in the rice ecosystems Jabalpur district, Madhya Pradesh, India. Journal of Entomology and Zoology Studies 7(3): 1359-1362. pdf
13267 Geethanjali, L., M.S.V. Chalam, S.R. Koteswara Rao, and G. Mohannaidu 2019 Bio diversity of planthoppers in sorghum crop-ecosystems of southern and scarce rainfall zones of Andhra Pradesh. Andhra Pradesh Journal of Agricultural Science 5(3): 202-208. [Cemus, Nisia nervosa, Peregrinus maidis, Perkinsiella sinensis,, Pyrilla perpusilla, Sardia] Andhra Pradesh Journal of Agricultural Science 5(3): 202-208. [Cemus, Nisia nervosa, Peregrinus maidis, Perkinsiella sinensis,, Pyrilla perpusilla, Sardia] pdf
13825 CHEN, Guang-Lei, Yu-Feng PAN, Yun-Feng MA, Jun WANG, Ming HE, and Peng HE. 2018 Binding affinity characterization of an antennae-enriched chemosensory protein from the white-backed planthopper, Sogatella furcifera (Horvath), with host plant volatiles. Pesticide Biochemistry and Physiology 152: 1-7. https://doi.org/10.1016/j.pestbp.2018.09.006.
1463 Fabre, J.H. 2003 Bilder aus der Insektenwelt. Autorisierte Übersetzung aus: 'Souvenirs Entomologiques', I.-X. Serie, 'Moeurs des Insects' und 'La Vie des Insects'. Erste bis vierte Reihe. Reprint der Ausgabe von 1908 bis 1914. Franck-Kosmos, Stuttgart. -
527 | 528 | 529 | 530 | 531 | 532 | 533 | 534 | 535 531 of 606