SUSTAINING THE WORLD THROUGH SCIENCE AND TECHNOLOGY
Planthopper Bibliography Database
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374 of 604
Authors Year Title Journal | |
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7600 | Huang, F.K., S.M. Wei, S.Y. Luo, S.S. Huang, and Q. Li. 2003 Studies on the virulence characteristics of different rice brown planthopper biotypes. Genomics and Applied Biology 22(2): 84-88. |
7604 | Huang, F.K., S.M. Wei, G.W. Liang, S.S. Huang, S.Y. Luo, and Q. Li. 2004 Studies on core collection of rice germplasms which resistant to different rice brown planthopper biotypes and rice gall midge China type. Genomics and Applied Biology 23(2): 89-93. |
7608 | Huang, F.K., S.M. Wei, S.S. Huang, S.Y. Luo, and Q. Li. 2004 Studies on the virulence characteristics of the rice brown planthopper collected from Simao and Kaiyuan,Yunnan Province. Genomics and Applied Biology 23(4): 278-281. |
14128 | JIAN, Yi, Qian ZHOU, XiFeng WANG, and YouZhi LI. 2016 Establishment of quantitative detection system for southern rice black-streaked dwarf virus in white-backed plant hopper (WBPH). Genomics and Applied Biology 35(2): 366-372. [Chinese with English summary] |
8793 | Bao, Y.Y., Y. Wang, W.J. Wu, D. Zhao, J. Xue, B.Q. Zhang, Z.C. Shen, and C.X. Zhang. 2012 De novo intestine-specific transcriptome of the brown planthopper Nilaparvata lugens revealed potential functions in digestion, detoxification and immune response. Genomics 99(4): 256-264. |
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. |
12570 | Huang, Yi-Xin, Feng-Juan Ren, C. R. Bartlett, Yong-Sheng Wei and Dao-Zheng Qin. 2020 Contribution to the mitogenome diversity in Delphacinae: Phylogenetic and ecological implications. Genomics 112(2): 1363-1370 https://doi.org/10.1016/j.ygeno.2019.08.005. (ePub ahead of print 2019) |
13039 | LIN, Jia, Jingyi HE, Anwen LIANG, and Fanghai WANG. 2020 Transcriptome profiling and dimorphic expression of sex-related genes in fifth-instar nymphs of Sogatella furcifera, an important rice pest. Genomics 112(2): 1105-1111. https://doi.org/10.1016/j.ygeno.2019.06.024 |
13196 | CHENG, Yibei, Yimin LI, Wenru LI, Yuanyuan SONG, Rensen ZENG, and Kai LU. 2020 Effect of hepatocyte nuclear factor 4 on the fecundity of Nilaparvata lugens: Insights from RNA interference combined with transcriptomic analysis. Genomics 11(6): 4585-4594. https://doi.org/10.1016/j.ygeno.2020.08.002. Genomics 11(6): 4585-4594. https://doi.org/10.1016/j.ygeno.2020.08.002. |
14435 | WANG, Xingya, Bin LU, Lingyun SHAO, Zhiqiang LI, Abid ALI, Fengquan YU, Zhanyu FU, and Fuyu SUN. 2022 Genome-wide SNPs reveal the fine-scale population structure of Laodelphax striatellus in China using double-digest restriction site-associated DNA sequencing. Genomics 114(3): 110329; 1-12. https://doi.org/10.1016/j.ygeno.2022.110329. |
15054 | CUI, Ting, Qing BAI, Weiqiang YU, Dongyang GUO, Yawen BAN, Kun CHEN, Ali RAZA, Guohui ZHOU, and Qingfa WU. 2023 Chromosome-level genome assembly and population genomic analysis provide novel insights into the immunity and evolution of Sogatella furcifera. Genomics 115(6): 110729; 1-12. https://doi.org/10.1016/j.ygeno.2023.110729. |
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. |
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 |
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] |
14687 | DENG, Junchen, Gordon M. BENNETT, Diego C. FRANCO, Monika PRUS-FRANKOWSKA, Adam STROINSKI, Anna MICHALIK, and Piotr LUKASIK. 2023 Genome comparison reveals inversions and alternative evolutionary history of nutritional endosymbionts in planthoppers (Hemiptera: Fulgoromorpha). Genome Biology and Evolution 15(7): evad120. https://doi.org/10.1093/gbe/evad120. |
10612 | Xue, J., X. Zhou, C.X. Zhang, L.L. Yu, H.W. Fan, Z. Wang, H.J. Xu, Y. Xi, Z.R. Zhu, W.W. Zhou, P.L. Pan, B.L. Li, J.K. Colbourne, H. Noda, Y. Suetsugu, T. Kobayashi, Y. Zheng, S. Liu, R. Zhang, Y. Liu, Y.D. Luo, D.M. Fang, Y. Chen, et al. 2014 Genomes of the rice pest brown planthopper and its endosymbionts reveal complex complementary contributions for host adaptation. Genome Biology 15(521): 1-19. DOI: 10.1186/s13059-014-0521-0 pdf |
12353 | Jimenez, J., M. Carvajal-Yepes, A. M. Leiva, M. Cruz, L. E. Romero, C. A. Bolaños, I. Lozano and W. J. Cuellar. 2018 Complete Genome Sequence of Rice hoja blanca tenuivirus Isolated from a Susceptible Rice Cultivar in Colombia. Genome announcements 6(7) (ePub, article e01490-17): 2 pp. https://doi.org/10.1128/genomeA.01490-17 |
2347 | Ishii, T., D.S. Brar, D.S. Multani, and G.S. Khush. 1994 Molecular tagging of genes for brown planthopper resistance and earliness introgressed from Oryza australiensis into cultivated rice, O. sativa. Genome 37: 217–221. |
8826 | Latif, M.A., M.Y. Omar, S.G. Tan, S.S. Siraj, M.E. Ali, and M.Y. Rafii. 2012 Food assimilated by two sympatric populations of the brown planthopper Nilaparvata lugens (Delphacidae) feeding on different host plants contaminates insect DNA detected by RAPD-PCR analysis. Genetics and Molecular Research 11(1): 30-41. |
9823 | Sun, J. T., J.B. Li, X.M. Yang, and X.Y. Hong. 2012 Development and characterization of nine polymorphic microsatellites for the small brown planthopper Laodelphax striatellus (Hemiptera: Delphacidae). Genetics and Molecular Research 11(2): 1526-1531. pdf |
10148 | Qiu, Y.F., L. Cheng, F. Liu, and R.B. Li. 2013 Identification of a new locus conferring antixenosis to the brown planthopper in rice cultivar Swarnalata (Oryza sativa L.). Genetics and Molecular Research 12(3): 3201-3211. pdf |
10430 | Zhang, L., G. Li, G.C. He, L.L. Zhu, R. Qin, and S.L. Jing. 2014 Isolation, characterization, and cross-transferability of microsatellite markers from the whitebacked planthopper (Sogatella furcifera). Genetics and Molecular Research 13(3): 6248-6252. DOI: 10.4238/2014.August.15.7. pdf |
11000 | Zha, W.J., S.H. Li, L. Zhou, Z.J. Chen, K. Liu, G.C. Yang, G. Hu, G.C. He, and A.Q. You. 2015 Molecular cloning and expression profile of an ATP-binding cassette (ABC) transporter gene from the hemipteran insect Nilaparvata lugens. Genetics and Molecular Research 14(1): 2654-2664. |
3847 | Roff, D.A. 1994 The evolution of dimorphic traits: predicting the genetic correlation between environments. Genetics 136(1): 395-401. pdf |
11569 | ZHUO, Ji-Chong, Chen LEI, Ji-Kai SHI, Nan XU, Wen-Hua XUE, Meng-Qiu ZHANG, Ze-Wei REN, Hou-Hong ZHANG, and Chuan-Xi ZHANG. 2017 Tra-2 mediates cross-talk between sex determination and wing polyphenism in female Nilaparvata lugens. Genetics 207(3): 1067–1078. doi: 1010.1534/genetics.1117.300328. |