SUSTAINING THE WORLD THROUGH SCIENCE AND TECHNOLOGY
Planthopper Bibliography Database
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433 of 609
Authors Year Title Journal | |
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7706 | Ma, L.Y., X.M. Li, Z.J. Ji, Y.X. Zeng, and C.D. Yang. 2010 Breeding and utilization of Zhongzu 14, a rice variety with resistance to bacterial blight,blast disease,white-backed planthopper and brown planthopper. Molecular Plant Breeding 8(6): 1208-1213. |
8611 | Li, R.B., L.S. Li, S.M. Wei, Y.P. Wei, Y.Z. Chen, D.L. Bai, L. Yang, F.K. Huang, W.L. Lu, X.J. Zhang, X.Y. Li, X.Q. Yang, and Y.W. Wei. 2006 The evaluation and utilization of new genes for brown planthopper resistance in common wild rice (Oryza rufipogon Griff.). Molecular Plant Breeding 4(3): 365-371. pdf |
6831 | Li, R.B. L. Li, S.M. Wei, Y.P. Wei, Y.Z. Chen, D.L. Bai L. Yang, F.K. Huang, W.L. Lu, X.J. Zhang, X.Y. Li, X.Q. Yang Y.W. Wei. 2006 Preliminary mapping the genes conferring resistant to brown planthopper (Nilaparvata lugens) in rice. Molecular Plant Breeding (published online as Molecular Entomology 2010) 4(3): 365-371. pdf |
13342 | HAN, Kelei, Haijian HUANG, Hongying ZHENG, Mengfei JI, Quan YUAN, Weijun CUI, Hehong ZHANG, Jiejun PENG, Yuwen LU, Shaofei RAO, Guanwei WU, Lin LIN, Xuemei SONG, Zongtao SUN, Junmin LI, Chuanxi ZHANG, Yonggen LOU, Jianping CHEN, and Fei YAN. 2020 Rice stripe virus coat protein induces the accumulation of jasmonic acid, activating plant defence against the virus while also attracting its vector to feed. Molecular Plant Pathology (2020): (PrePrint, 7 pp.) https://doi.org/10.1111/mpp.12995. |
13981 | TIAN, Shuping, Nan WU, Lu ZHANG, and Xifeng WANG. 2021 RNA N6-methyladenosine modification suppresses replication of rice black streaked dwarf virus and is associated with virus persistence in its insect vector. Molecular Plant Pathology 22(9): 1070-1081. https://doi.org/10.1111/mpp.13097. https://doi.org/10.1111/mpp.13097. [Laodelphax striatellus] |
14011 | ZHANG, Lu, Wenwen LIU, Xiaowan ZHANG, Li LI, and Xifeng WANG. 2021 Southern rice black-streaked dwarf virus hijacks SNARE complex of its insect vector for its effective transmission to rice. Molecular Plant Pathology 22(10): 1256-1270. https://doi.org/10.1111/mpp.13109. [Sogatella furcifera] |
14388 | FANG, Xiao-Dong, Ji-Hui QIAO, Ying ZANG, Qiang GAO, Wen-Ya XU, Dong-Min GAO, Yi-Zhou YANG, Liang XIE, Ying WANG, and Xian-Bing WANG. 2022 Developing reverse genetics systems of northern cereal mosaic virus to reveal superinfection exclusion of two cytorhabdoviruses in barley plants. Molecular Plant Pathology (2022): (PrePrint, 8 pp.). https://doi.org/10.1111/mpp.13188. [Laodelphax striatellus] |
5347 | Wang, Y.Y., X.L. Wang, H.Y. Yuan, R.Z. Chen, L.L. Zhu, R.F. He RF, and G.C. He. 2008 Responses of two contrasting genotypes of rice to brown planthopper. Molecular Plant-Microbe Interactions 21: 122-132. |
10798 | CHEN, Qian and Taiyun WEI. 2020 Cell biology during infection of plant viruses in insect vectors and plant hosts. Molecular Plant-Microbe Interactions 33(1): 18-25. https://doi.org/10.1094/MPMI-07-19-0184-CR |
12288 | Rao, Weiwei, Xiaohong Zheng, Bingfang Liu, Qin Guo, Jianping Guo, Yan Wu, Xinxin Shangguan, Huiying Wang, Di Wu, Zhizheng Wang, Liang Hu, Chunxue Xu, Weihua Jiang, Jin Huang, Shaojie Shi and Guangcun He. 2019 Secretome analysis and in planta expression of salivary proteins identify candidate effectors from the brown planthopper Nilaparvata lugens. Molecular Plant-Microbe Interactions 32(2): 227–239. https://doi.org/10.1094/MPMI-05-18-0122-R |
13183 | German, T.L., M.D. Lorenzen, N. Grubbs, and A.E. Whitfield. 2020 New technologies for studying Negative-Strand RNA viruses in plant and arthropod hosts. Molecular Plant-Microbe Interactions 33(3): 382-393. https://doi.org/10.1094/MPMI-10-19-0281-FI. [Laodelphax striatellus] |
12156 | Barrera, N.F., L.M. Melgarejo, M. Cruz-Gallego, L.J. Cortes, F. Guzman and J.C. Calvo. 2018 Conformationally restricted peptides from rice proteins elicit antibodies that recognize the corresponding native protein in ELISA assays. Molecules 23(9): 2262; 1-19. https://doi.org/10.3390/molecules23092262. (ePub Article #2262, 19 pp.) pdf |
12606 | TIAN, Yafeng, Ya GAO, Yanming CHEN, Genyan LIU, and Xiulian JU. 2019 Identification of the fipronil resistance associated mutations in Nilaparvata lugens GABA receptors by molecular modeling. Molecules 24: 4116; 1-12. https://doi.org/10.3390/molecules24224116. (ePub Article#4116, 12 pp.) pdf |
13000 | GAO, Xiubing, Can GUO, Ming LI, Rongyu LI, Xiaomao WU, Anlong HU, Xianfeng HU, Feixu MO, and Shuai WU. 2020 Physicochemical properties and bioactivity of a new guar gum-based film incorporated with citral to brown planthopper, Nilaparvata lugens (Stål)(Hemiptera: Delphacidae). Molecules 25(6): 2044; 1-15. https://doi.org/10.3390/molecules25092044 (ePub article#2044, 15 pp.) |
540 | Cha, Y.S., H. Ji, D.W. Yun, B.O. Ahn, M.C. Lee, S.C. Suh, C.S. Lee, E.K. Ahn, Y.H. Jeon, I.D. Jin, J.K. Sohn, H.J. Koh, and M.Y. Eun. 2008 Fine mapping of the rice Bph1 gene, which confers resistance to the brown planthopper (Nilaparvata lugens Stål), and development of STS markers for marker-assisted selection. Molecules and Cells 26(2): 146-151. pdf |
2522 | Kim, S.M. and J.K. Sohn. 2005 Identification of a rice gene (Bph 1) conferring resistance to brown planthopper (Nilaparvata lugens Stål) using STS markers. Molecules and Cells 20(1): 30-34. pdf |
5023 | Choi, M.S., Y.H. Kim, H.M. Park, B.Y. Seo, J.K. Jung, S.T. Kim, M.C. Kim, D.B. Shin, H.T. Yun, I.S. Choi, C.K. Kim, and J.Y. Lee. 2009 Expression of BrD1, a plant defensin from Brassica rapa, confers resistance against brown planthopper (Nilaparvata lugens) in transgenic rices. Molecules and Cells 28: 131-137. |
8403 | You, M.K., S.I. Oh, S.H. Ok, S.K. Cho, H.Y. Shin, J.U. Jeung, and J.S. Shin. 2007 Identification of putative MAPK Kinases in Oryza minuta and O. sativa responsive to biotic stresses. Molecules and Cells 23(1): 108-114 pdf |
7945 | Szwedo, J. 2001 Pluskwiaki równoskrzydłe (Homoptera). 16.1. Piewiki (Fulgoromorpha et Cicadomorpha) Bieszczadów. [Planthoppers and leafhoppers (Fulgoromorpha et Cicadomorpha) from the Bieszczady Mountains.] Monografie Bieszczadzkie 2000 7: 205-215. |
4410 | Tsaur, S.C., C.T. Yang and M.R. Wilson. 1986 Meenoplidae of Taiwan (Homoptera: Fulgoroidea). Monograph of Taiwan Museum, Taiwan Museum Special Publication Series 6: 81-118. pdf |
478 | Burckhardt, D., R. Mühlethaler, and D. Wyniger. 2003 Blattflöhe, Zikaden und Wanzen (Hemiptera). Monographien der Entomologischen Gesellschaft Basel 1: 96-105, 208. |
12660 | Brysz, A. M. and J. Szwedo. 2019 Jeweled Achilidae – a new look at their systematics and relation to other Fulgoroidea (Hemiptera). Monographs of the Upper Silesian Museum 10: 93–130. pdf |
12881 | Taszakowski, A., R. Dobosz, and J. Szwedo. 2019 The Hemiptera collection of Department of Natural History, Upper Silesian Museum in Bytom. Monographs of the Upper Silesian Museum 10: 131-146 pdf |
14801 | Walczak, M., M. Gibas, J. Trela, M. Chru?ciel, K. Sojka, L. Junkiert, A. Romaniak, J. Brozek, and W. Wojciechowski. 2023 Planthoppers and leafhoppers (Hemiptera: Fulgoromorpha et Cicadomorpha) of post mining waste heaps in Bytom, Chorzów, Ruda Slaska and Swietochlowice cities (Upper Silesia, Southern Poland). Silesian Museum Monographs of the Upper Silesian Museum 24: 1-78. |
12325 | Musik, K., M. Walczak, M. Kalandyk-Kolodziejczyk and W. Wojciechowski. 2018 Planthopper and leafhopper communities (Hemiptera: Fulgoromorpha et Cicadomorpha) of selected plant associations of Garb Tarnogórski. Monographs of the Upper Silesian Museum No. 7. 244 pp. pdf |