SUSTAINING THE WORLD THROUGH SCIENCE AND TECHNOLOGY
Planthopper Bibliography Database
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368 of 606
Authors Year Title Journal | |
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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. |
13294 | CHANG, Zhao‐Xia, Olugbenga Emmanuel AJAYI, Dong‐Yang GUO, and Qing‐Fa WU. 2020 Genome‐wide characterization and developmental expression profiling of long non‐coding RNAs in Sogatella furcifera. Insect Science 27(5): 987-997. https://doi.org/10.1111/1744-7917.12707. |
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 |
13473 | YOKOI, Kakeru, Yuki NAKAMURA, Akiya JOURAKU, Gaku AKIDUKI, Miwa UCHIBORI?ASANO, Seigo KUWAZAKI, Yoshitaka SUETSUGU, Takaaki DAIMON, Kimiko YAMAMOTO, et al. 2020 Genome?wide assessment and development of molecular diagnostic methods for imidacloprid?resistance in the brown planthopper, Nilaparvata lugens (Hemiptera; Delphacidae). Pest Management Science (2020): (PrePrint, 10 pp.). https://doi.org/10.1002/ps.620. [&Hiroaki NODA, Sachiyo SANADA-MORIMURA, Masaya MATSUMURA, Le Quoc CUONG, Ho Van CHIEN, Gerardo F. ESTOY Jr., and Tetsuro SHINODA.] |
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. |
13715 | LIU, Yan, Lei CHEN, Xing-Zhi DUAN, Dian-Shu ZHAO, Jing-Tao SUN, and Xiao-Yue HONG. 2019 Genome-wide single nucleotide polymorphisms are robust in resolving fine-scale population genetic structure of the small brown planthopper, Laodelphax striatellus (Fallén) (Hemiptera: Delphacidae). Journal of Economic Entomology 112(5): 2362-2368. https://doi.org/10.1093/jee/toz145. |
10215 | Xu, H.J., T. Chen, X.F. Ma, J. Xue, P.L. Pan, X.C. Zhang, J.A. Cheng, and C.X. Zhang. 2013 Genome-wide screening for components of small interfering RNA (siRNA) and micro-RNA (miRNA) pathways in the brown planthopper, Nilaparvata lugens (Hemiptera: Delphacidae). Insect Molecular Biology 22(6): 635-647. |
12137 | Chen, Jie, Teng Chao Li, Rui Pang, Xiang Zhao Yue, Jian Hu and Wen Qing Zhang 2018 Genome-wide screening and functional analysis reveal that the specific microRNA nlu-miR-173 regulates molting by targeting Ftz-F1 in Nilaparvata lugens. Frontiers in Physiology 9: 1854; 1-12. https://doi.org/10.3389/fphys.2018.01854. (ePub Article #1854, 12 pp.) pdf |
10356 | Jing, S.L., L. Zhang, Y.H. Ma, B.F. Liu, Y. Zhao, H.J. Yu, X. Zhou, R. Qin, L.L. Zhu, and G.C. He. 2014 Genome-wide mapping of virulence in brown planthopper identifies loci that break down host plant resistance. PLoS ONE 9(6): e98911. doi:10.1371/journal.pone.0098911 pdf |
10977 | Xiao, H.M., Z.T. Yuan, D.H. Guo, B.F. Hou, C.L. Yin, W.Q. Zhang, and F. Li. 2015 Genome-wide identification of long noncoding RNA genes and their potential association with fecundity and virulence in rice brown planthopper, Nilaparvata lugens. BMC Genomics 16: 749. DOI: 10.1186/s12864-015-1953-y. |
13994 | YUE, Lei, Ziying GUAN, Mingzhao ZHONG, Luyao ZHAO, Rui PANG, and Kai LIU. 2021 Genome-wide identification and characterization of amino acid polyamine organocation transporter family genes reveal their role in fecundity regulation in the brown planthopper species (Nilaparvata lugens). Frontiers in Physiology 12: 1070; 1-14. https://doi.org/10.3389/fphys.2021.708639. pdf |
13686 | XIE, Jiaqin, Yifan PENG, and Yuxian XIA. 2021 Genome-wide identification and analysis of Nilaparvata lugens microRNAs during challenge with the entomopathogenic fungus Metarhizium anisopliae. Journal of Fungi 7(4): 295; 1-14. https://doi.org/10.3390/jof7040295. |
14542 | PENG, Lei, and Yan ZHAO. 2022 Genome-wide identfication and expression profiling of the Wnt gene family in three rice planthoppers: Sogatella furcifera, Laodelphax striatellus, and Nilaparvata lugens. Journal of Insect Science 22(5): 2; 1-9. https://doi.org/10.1093/jisesa/ieac049. |
12510 | Xiao, Shizhuo, Baoxiang Wang, Yuqiang Liu, Tianhui Miao, Hongliang Zhang, Peizheng Wen, Jun He, Jie Huang, Daoming Liu, Zeyu Qiu, Linglong Liu, Shijia Liu, Ling Jiang, Xianian Cheng, Chunming Wang, Dayong Xu and Jianmin Wan. 2019 Genome-wide association study and linkage analysis on resistance to rice black-streaked dwarf virus disease. Molecular Breeding 39(5): 73; 1-10. https://doi.org/10.1007/s11032-019-0980-9. (ePub article#73, 10 pp.) |
10053 | Hu, D.B., B.Q. Luo, J. Li, Y. Han, T.R. Jiang, J. Liu, G. Wu, H.X. Hua, Y.F. Xiong, and J.S. Li. 2013 Genome-wide analysis of Nilaparvata lugens nymphal responses to high-density and low-quality rice hosts. Insect Science 20(6): 703-716. |
14280 | LIU, Kai, Qin SU, Kui KANG, Meng CHEN, Wei-Xia WANG, Wen-Qing ZHANG, and Rui PANG. 2021 Genome-wide analysis of alternative gene splicing associated with virulence in the brown planthopper Nilaparvata lugens (Hemiptera: Delphacidae). Journal of Economic Entomology 114(6): 2512-2523. https://doi.org/10.1093/jee/toab186. |
13732 | Bhowmick, R., S. Choudhudy, A. Subbanna, S. Roy, and L. Sharma. 2018 Genome wide identification of genic and non-genic Microsatellites in Nilaparvata lugens Stål. International Journal of Chemical Studies 7(1): 194-196. pdf |
11202 | He, K., K.J. Lin, G.R. Wang, and F. Li. 2016 Genome sizes of nine insect species determined by flow cytometry and k-mer analysis. Frontiers in Physiology 7: 569. doi: 10.3389/fphys.2016.00569 pdf |
11958 | Zhu, Junjie, Feng Jiang, Xianhui Wang, Pengcheng Yang, Yanyuan Bao, Wan Zhao, Wei Wang, Hong Lu, Qianshuo Wang, Na Cui, Jing Li, Xiaofang Chen, Lan Luo, Jinting Yu, Le Kang and Feng Cui. 2017 Genome sequence of the small brown planthopper, Laodelphax striatellus. Gigascience 6(12) article gix109 (ePub), 12 pp. https://doi.org/10.1093/gigascience/gix109 pdf |
11556 | WANG, Lin, Nan TANG, Xinlei GAO, Zhaoxia CHANG, Liqin ZHANG, Guohui ZHOU, Dongyang GUO, Zhen ZENG, Wenjie LI, Ibukun A. AKINYEMI, Huanming YANG, and Qingfa WU. 2017 Genome sequence of a rice pest, the white-backed planthopper (Sogatella furcifera). Gigascience 6(10): giw004; 1-9. 12240https://doi.org/10.1093/gigascience/giw004. (ePub Article#giw004, 9 pp.) |
13251 | Kasson, M.T., L.R. Kasson, K.L. Wickert, D.D. Davis, and J.E. Stajich. 2019 Genome sequence of a lethal vascular wilt fungus, Verticillium nonalfalfae, a biological control used against the invasive Ailanthus altissima. Microbiology Resource Announcements 8(4): e01619-18; 1-3. https://doi.org/10.1128/MRA.01619-18. [Lycorma delicatula] |
14606 | GOVINDHARAJ, Guru-Pirasanna-Pandi, Soumya Bharti BABU, Jaipal Singh CHOUDHARY, Muhammad ASAD, Parameswaran CHIDAMBARANATHAN, Basana-Gowda GADRATAGI, Prakash Chandra RATH, Naiyar NAAZ, Mariusz JAREMKO, Kamal Ahmad QURESHI, and Uttam KUMAR. 2022 Genome organization and comparative evolutionary mitochondriomics of Brown Planthopper, Nilaparvata lugens Biotype 4 using next generation sequencing (NGS). Life Life 12(9): 1289; 1-17. https://doi.org/10.3390/life12091289. |
14007 | YANG, Yi, Xinhai YE, Cong DANG, Yunshen CAO, Rui HONG, Yu H. SUN, Shan XIAO, Yang MEI, Le XU, Qi FANG, Huamei XIAO, Fei LI, and Gongyin YE. 2021 Genome of the pincer wasp Gonatopus flavifemur reveals unique venom evolution and a dual adaptation to parasitism and predation. BMC Biology 19: 145; 1-24. https://doi.org/10.1186/s12915-021-01081-6. [Nilaparvata lugens] |
14577 | DENG, Junchen, Gordon M. BENNETT, Diego C. FRANCO, Monika PRUS-FRANKOWSKA, Adam STROINSKI, Anna MICHALIK, and Piotr LUKASIK. 2022 Genome comparison reveals inversions and alternative evolutionary history of nutritional endosymbionts in planthoppers (Hemiptera: Fulgoromorpha). BioRxiv (2022): Preprint; 1-31. https://doi.org/10.1101/2022.12.07.519479. pdf |
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. |