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Planthopper Bibliography Database


List
Authors Year Title Journal
2488 Kessler, A., R. Halitschke, and I.T. Baldwin. 2004 Silencing the jasmonate cascade: induced plant defenses and insect populations. Science 305: 665-668.
14059 Wijayanti, R., S. Sholahuddin, and S.H. Poromarto. 2021. Silica content on local rice varieties against brown planthopper Nilaparvata lugens Stall. (Hemiptera: Delphacidae). IEEE-SEM 9(4): 51-57.
15114 ZHAO, Chunjie, Mengna TAO, Lanqing XU, Ningke FAN, Yinghua SHU, Zhenggao XIAO, and Zhenyu WANG. 2023 Silica-based nanodelivery systems loaded with matrine for the brown planthopper green control and rice growth promotion. ACS Sustainable Chemistry & Engineering 11(49): 17299-17309. https://doi.org/10.1021/acssuschemeng.3c04570.
15435 PATI, Prajna, Swarnali BHATTACHARYA, Priyadarshini SANGHAMITRA, Raghu SHIVAPPA, S.P. MONALISA, Nitiprasad JAMBHULKAR, Tapamay DHAR, and Mayabini JENA. 2024 Silicon (Ca, K & Mg) induced resistance in two contrasting rice genotypes against phloem feeding pest, Brown Planthopper, Nilaparvata lugens (Stal.) through modulation of defense responses. Silicon 17: 347-360. https://doi.org/10.1007/s12633-024-03203-5.
11627 YANG, Lang, Yongqiang HAN, Pei LI, Fei LI, Shahbaz ALI, and Maolin HOU. 2017 Silicon amendment is involved in the induction of plant defense responses to a phloem feeder. Scientific Reports 7(1): 4232; 1-9. https://doi.org/10.1038/s41598-017-04571-2.
12176 YANG, Lang, Pei LI, Fei LI, Shahbaz ALI, Xiaoqin SUN, and Maolin HOU. 2018 Silicon amendment to rice plants contributes to reduced feeding in a phloem-sucking insect through modulation of callose deposition. Ecology and Evolution 8(1): 631–637. https://doi.org/10.1002/ece3.3653. pdf
11656 YANG, Lang, Yongqiang HAN, Pei LI, Lizhang WEN, and Maolin HOU. 2017 Silicon amendment to rice plants impairs sucking behaviors and population growth in the phloem feeder Nilaparvata lugens (Hemiptera: Delphacidae). Scientific Reports 7: 110; 1-7pp. https://doi.org/10.1038/s41598-017-01060-4.
13679 JIA, Luyao, Yongqiang HAN, and Maolin HOU. 2021 Silicon amendment to rice plants reduces the transmission of southern rice black?streaked dwarf virus by Sogatella furcifera. Pest Management Science 77(7): 3233-3240. https://doi.org/10.1002/ps.6365.
12305 Alhousari, F. and M. Greger. 2018 Silicon and mechanisms of plant resistance to insect pests. Plants (Basel, Switzerland) 7(2): 33; 1-11. http://dx.doi.org/10.3390/plants7020033. (ePub Article #33, 11 pp.) pdf
12977 BING, Xiao‐Li, Dian‐Shu Zhao, Chang‐Wu Peng, Hai‐Jian Huang, and Xiao‐Yue Hong. 2020 Similarities and spatial variations of bacterial and fungal communities in field rice planthopper (Hemiptera: Delphacidae) populations. Insect Science (PrePUB) https://doi.org/10.1111/1744-7917.12782 pdf
15261 Sus, N.P. 2024 Similarity of Metcalfa pruinosa (Say, 1830) host ranges in the urban ecosystems of Kyiv and Odesa and the honey bee forageability of shared hosts. Beekeeping of Ukraine 13: 85-22. https://doi.org/10.32782/beekeepingjournal.2024.13.12. [survey] [host plants]
8234 Marquez, L.V., E.M. Valdez, and A.B. Estoy. 2003 Simple rearing technique for Anagrus sp., an egg parasitoid of rice hoppers. Philippine Entomologist 17(2): 190.
6430 Kaneda, C. 1975 Simple testing methods of brown planthopper resistance in rice, and their application to breeding. Nogyo oyobi Engei 50: 130-132.[Japanese]
2158 Holt, J., A.G. Cook. T.J. Perfect, and G.A. Norton. 1987 Simulation analysis of brown planthopper (Nilaparvata lugens) population dynamics on rice in the Philippines. Journal of Applied Ecology 24(1): 87-102.
6045 Zhu, Z.R., J.A. Cheng, C.W. Huang, B.C. Feng, and X. Chen. 1994 Simulation analysis of white-backed planthopper population dynamics on first season rice in Zhejiang, China. Acta Ecologica Sinica 14(2): 188-196. pdf
7128 Bao, Y.X., J.J. Li, Q.L. Miao, S.H. Shen, and J.Q. Wang. 2008 Simulation of atmospheric dynamical background for a great migration event of the brown planthopper (Nilaparvata lugens Stal): a case study. Chinese Journal of Agrometeorology 29(3): 347-352.
5718 Zhong, P.S., G.W. Liang, and L. Zeng. 2010 Simulation of control effectiveness of several secondary metabolites against populations of the brown planthopper, Nilaparvata lugens (Homoptera: Delphacidae). Acta Entomologica Sinica 53(7): 767-772. pdf
7809 Sujithra, M., S. Chander, and K. Selvaraj. 2011 Simulation of rice brown planthopper [Nilaparvata lugens (Stal)] damage for determining economic injury levels. Journal of Scientific and Industrial Research 70: 338-345. pdf
10179 Sujithra, M. and S. Chander. 2013 Simulation of rice brown planthopper, Nilaparvata lugens (Stal.) population and crop-pest interactions to assess climate change impact. Climatic Change 121(2): 331-347
5771 Zhu, M., Y.H. Song, K.B. Uhm, R.W. Turner, J.H. Lee, and G.K. Roderick. 2000 Simulation of the long-range migration of brown planthopper, Nilaparvata lugens (Stål), by using boundary layer atmospheric model and the geographic information system. Journal of Asia-Pacific Entomology 3(1): 25-32. pdf
7792 Cheng, J.A., Z.R. Zhu, L.G. Zhang, and Q.G. Fan. 1991 Simulation study on effects of immigration population on population dynamics of brown planthopper. Chinese Journal of Rice Science 5(4): 163-168. pdf
5851 Cheng, J.A., L.G. Zhang, Q.G. Fan, and Z.R. Zhu. 1992 Simulation study on impacts of temperature on population dynamics of brown planthopper. Chinese Journal of Rice Science 6(1): 21-26. pdf
4801 Witsack, W. 1991 Simultane Embryonaldormanzen bei Euscelis incisus (Kbm.) (Homoptera Auchenorrhyncha) als populationsökologische Mehrfachabsicherung für das Überleben im Winter. Zoologische Jahrbuecher Systematik 118: 287-307.
7883 Gosh, A. 1983 Simultaneous infection of grassy stunt virus and rice ragged stunt virus by Nilaparvata lugens. Indian Phytopathology 36(4): 694-699.
15335 Sturmer, G.R., C.W. Guterres, H. Pozebon, C.C.L. de Andrade, T. Mituti, Y. Cardoza, and I. Ferri. 2024 Simultaneous infection of Leptodelphax maculigera (Hemiptera: Delphacidae) by maize rayado fino virus (MRFV) and maize bushy stunt phytoplasma (MPSP) detected in Rio Grande do Sul, Brazil. Journal of Plant Diseases and Protection 131(6): 2247-2253. https://doi.org/10.1007/s41348-024-00988-w.
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