SUSTAINING THE WORLD THROUGH SCIENCE AND TECHNOLOGY
Planthopper Bibliography Database
List
362 | 363 | 364 | 365 | 366 | 367 | 368 | 369 | 370 « Previous Next »
366 of 604
Authors Year Title Journal | |
---|---|
5595 | Breuer, M. and G. Michl. 2010 Geographical distribution of "bois noir" and Hyalesthes ohsoletus in Baden (SW Germany). Deutschen Gesellschaft für allgemeine und angewandte Entomologie 24(1): 34-35. |
14466 | Mehle, N., S. Kavcic, S. Mermal, S. Vidmar, M. Riedle-Bauer, G. Brader, A. Kladnik, and M. Dermastia. 2022 Geographical and temporal diversity of ‘Candidatus Phytoplasma solani' in wine-growing regions in Slovenia and Austria. Frontiers in Plant Science 13: 889675; 1-12. https://doi.org/10.3389/fpls.2022.889675. [Hyalesthes obsoletus] |
3450 | Noda, H. 1990 Geographic variation of nymphal diapause in the small brown planthopper, Laodelphax striatellus. Shokubutsu Boeki 44(10): 437-441. |
3451 | Noda, H. 1992 Geographic variation of nymphal diapause in the small brown planthopper in Japan. JARQ (Japan Agricultural Research Quarterly) 26(2): 124-129. pdf |
11050 | Hou, Y.Y., L.Z. Xu, Y. Wu, P. Wang, J.J. Shi, and B.P. Zhai. 2016 Geographic variation of diapause and sensitive stages of photoperiodic response in Laodelphax striatellus Fallen (Hemiptera: Delphacidae). Journal of Insect Science 16: 13; 1-7. DOI: 10.1093/jisesa/iev1161. pdf |
8965 | Cushman, J.H., S.G. Compton, C. Zachariades, A.B. Ware, R.J.C. Nefdt and V.K. Rashbrook. 1998 Geographic and taxonomic distribution of a positive interaction: ant-tended homopterans indirectly benefit figs across southern Africa. Oecologia 116(3): 373-380. |
3295 | Moya-Raygoza, G., K.J. Larsen, and A. Rauk. 2005 Geographic and seasonal variation in size and color of adult corn leafhoppers (Hemiptera: Cicadellidae) from Mexico. Environmental Entomology 34(6): 1388-1394. |
12061 | Horgan, F.G., T.S. Srinivasan. J.S. Bentur, R. Kumar, K.V. Bhanu, P.S. Sarao, H.V. Chien, M.L.P. Almazan, C.C. Bernal, A.F. Ramal, J.B. Ferrater and S.H. Huang. 2017 Geographic and research center origins of rice resistance to Asian planthoppers and leafhoppers: implications for rice breeding and gene deployment. Agronomy-Basel 7(4): 62; 1-21. https://doi.org/10.3390/agronomy7040062. (ePub Article #62, 21 pp.) pdf |
6119 | Logvinenko, V.N. 1971 Genus Tachycixius W. Wgn. (Homoptera, Cixiidae) and description of two new species from the USSR. Vestnik Zoologii 1971(3): 58-62. pdf |
6645 | Hori, Y. 1970 Genus Sarima Melichar of Japan, with the description of a new Ryukyu species (Hemiptera: Issidae). Transactions of the Shikoku Entomological Society 10(3/4): 79-83. |
5369 | Shakila, M. 1998 Genus Pyrilla (Fulgoroidea: Homoptera) from Pakistan and a study into phenetic affinities of its species. Pakistan Entomologist 30(3): 155-264. |
6673 | Shakila, M. and S. Akbar. 1998 Genus Pyrilla (Fulgoroidea: Homoptera) from Pakistan and a study into phenetic affinities of its species. Pakistan Journal of Zoology 30(3): 255-264. |
9789 | Shakila, M. 1991 Genus Putala from Pakistan. Pakistan Entomologist 13: 41-45. |
13536 | YADAV, Shailesh, Nitika SANDHU, Shalabh DIXIT, Vikas Kumar SINGH, Margaret CATOLOS, Ratna Rani MAZUMDER, Mohammad Akhlasur RAHMAN, and Arvind KUMAR. 2021 Genomics-assisted breeding for successful development of multiple?stress?tolerant, climate?smart rice for southern and southeastern Asia. The Plant Genome (2021): (PrePrint, 19 pp.). https://doi.org/10.1002/tpg2.20074. [Nilaparvata lugens] pdf |
11604 | JING, Shengli, Yan ZHAO, Bo DU, Rongzhi CHEN, Lili ZHU, and Guangcun HE. 2017 Genomics of interaction between the brown planthopper and rice. Current Opinion in Insect Science 19: 82–87. doi: 10.1016/j.cois.2017.1003.1005. |
14958 | Sarangi, S. 2024 Genomic study of insecticide resistance in rice brown planthopper, Nilaparvata lugens (Stål) (Delphacidae: Hemiptera) in rice. Vigyan Varta 5(4): 242-244. pdf |
8792 | Bass, C., M.B. Hebsgaard, and J. Hughes. 2012 Genomic resources for the brown planthopper, Nilaparvata lugens: transcriptome pyrosequencing and microarray design. Insect Science 19(1): 1-12. |
10314 | Bao, Y.Y., X. Qin, B.Yu, L.B. Chen, Z.C. Wang, and C.X. Zhang. 2014 Genomic insights into the serine protease gene family and expression profile analysis in the planthopper, Nilaparvata lugens . BMC Genomics 15: DOI: 10.1186/1471-2164-15-507. pdf |
10259 | Zhou, W.W., Q.M. Liang, Y. Xu, G.M. Gurr, Y.Y. Bao, X.P. Zhou, C.X. Zhang, J. Cheng, and Z.R. Zhu. 2013 Genomic insights into the glutathione S-transferase gene family of two rice planthoppers, Nilaparvata lugens (Stål) and Sogatella furcifera (Horvath) (Hemiptera: Delphacidae). PLoS ONE 8(2): e56604. pdf |
14965 | Meher, C., G. Guru-Pirasanna-Pandi, S.B. Babu, C. Parameswaran, T. Samal, R.P. Sah, C. Anilkumar, B.-G. Gadratagi, P.C. Rath, and S. Sabarinathan. 2024 Genomic dissection of brown planthopper, Nilaparvata lugens (Hemiptera: Delphacidae) resistance in Indica rice genotypes. Annals of Applied Biology (2024): (PrePrint, 18 pp.). https://doi.org/10.1111/aab.12899. |
14662 | Gossett, J.M., M.L. Porter, Y.M. Vasquez, G.M. Bennett, and R.A. Chong. 2023 Genomic comparisons reveal selection pressure and functional variation between nutritional endosymbionts of cave-adapted and epigean Hawaiian planthoppers. Genome Biology and Evolution 15(3): evad031; 1-15. https://doi.org/10.1093/gbe/evad031. [Oliarus filicicola, Oliarus polyphemus] |
13209 | KIM, Min Jee, Keon Hee LEE, Jeong Sun PARK, Jun Seong JEONG, Na Ra JEONG, Wonhoon LEE, and Iksoo KIM. 2020. 2020 Genomic comparison and phylogenetic inference in Fulgoroidea with the complete mitochondrial genomes of the flatid planthoppers, Metcalfa pruinosa and Salurnis marginella (Hemiptera: Flatidae). In: 2020 Spring International Conference of KSAE, Samcheok, Korea. [Korea Society of Applied Entomology] Pp. 75. |
10811 | Lao, S.H., X.H. Huang, H.J. Huang, C.W. Liu, C.X. Zhang, and Y.Y. Bao. 2015 Genomic and transcriptomic insights into the cytochrome P450 monooxygenase gene repertoire in the rice pest brown planthopper, Nilaparvata lugens. Genomics 106(5): 301-309. |
12680 | BING, Xiao-Li, Dian-Shu ZHAO, Jing-Tao SUN, Kai-Jun ZHANG, and Xiao-Yue HONG. 2020 Genomic analysis of Wolbachia from Laodelphax striatellus (Delphacidae, Hemiptera) reveals insights into its “Jekyll and Hyde” mode of infection pattern. Genome Biology and Evolution 2020: evaa006; 1-32. (ePub article#evaa006) https://doi.org/10.1093/gbe/evaa006 |
10730 | Fan, H.W., H. Noda, H.Q. Xie, Y. Suetsugu, Q.H. Zhu, and C.X. Zhang. 2015 Genomic analysis of an ascomycete fungus from the rice planthopper reveals how it adapts to an endosymbiotic lifestyle. Genome Biology and Evolution 7(9): 2623-2634. DOI: 10.1093/gbe/evv169. |