SUSTAINING THE WORLD THROUGH SCIENCE AND TECHNOLOGY
Planthopper Bibliography Database
List
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56 of 606
Authors Year Title Journal | |
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5807 | Cheng, J.A. and Z.R. Zhu. 2006 Analysis of causes for outbreak of brown planthopper in 2005 in Yangtze Delta. Plant Protection [Zhiwu Baohu](China) 32(1): 1-4. |
2636 | Kudryásheva, I.V. 1975 Analysis of changes in insect weight indices in connection with the instar structure of the population using Cicadetta montana (Scop.). (Homoptera: Cicadidae) as an example. Zhurnal Obshchei Biologii 36: 373-381. [Russian] |
7427 | Chen, J.C., G.Y. Xie, Z.X. Lin, and W.J. Peng. 2003 Analysis of characteristics of the outbreak of rice planthopper in late rice in southeast Guangxi in 2002 and its causes. Plant Protection Technology and Extension 23(9): 11-13. |
8111 | Kim, J.D., H.J. Kim, and S.P. Rho. 1984 Analysis of damage on rice by brown planthopper (Nilaparvata lugens Stal), 1. effects of infested stage of rice and appearance days of hopper-burn on yield loss. Korean Journal of Plant Protection 23(3): 153-157. |
11965 | Liang, An-Wen, Ting-Ting Liu, Zi-Qiang Liang and Fang-Hai Wang. 2018 Analysis of differential proteins in two different wing-types of female Nilaparvata lugens. Entomological Research 48(3): 131–136. https://doi.org/10.1111/1748-5967.12252. |
11219 | Liang, Z.Q., S.Y. Song, S.K. Liang, and F.H. Wang. 2016 Analysis of differential proteins in two wing-type females of Sogatella furcifera (Hemiptera: Delphacidae). Journal of Insect Science 16: 35. DOI: 10.1093/jisesa/iew1024. pdf |
665 | Cho, S.K., K.W. Jung, J.U. Jeung, K.H. Kang, K.S. Shim, M.K. You, K.S. Yoo, S.H. Ok, and J.S. Shin. 2005 Analysis of differentially expressed transcripts from planthopper-infested wild rice (Oryza minuta). Plant Cell Reports 24(1): 59-67. pdf |
11622 | Wang, B., W.F. Li and H.M. Yan. 2017 Analysis of digestion of rice planthopper by Pardosa pseudoannulata based on CO-I gene. Saudi Journal of Biological Sciences 24(3): 711–717. doi: 710.1016/j.sjbs.2017.1001.1046. |
12094 | Gronenborn, B., J. W. Randles, D. Knierim, Q. Barrière, H. J. Vetten, N. Warthmann, D. Cornu, T. Sileye, S. Winter and T. Timchenko. 2018 Analysis of DNAs associated with coconut foliar decay disease implicates a unique single-stranded DNA virus representing a new taxon. Scientific Reports 8(1): 5698. https://doi.org/10.1038/s41598-018-23739-y pdf |
7028 | Yao, D.H., X.F. Chen, S.T. Yao, and Q.H. Chen. 2007 Analysis of effects of typhoon Kanu (2005) on the sudden increase of Nilaparvata lugens. Chinese Journal of Agrometeorology 28(3): 347-349,353. |
6477 | Whitfield, A.E., D. Rotenberg, V. Aritua, and S.A. Hogenhout. 2011 Analysis of expressed sequence tags from Maize mosaic rhabdovirus-infected gut tissues of Peregrinus maidis reveals the presence of key components of insect innate immunity. Insect Molecular Biology 20(2): 225-242. |
13897 | LI, XiangYong, AiDong CHEN, WeiKui TIAN, XiaoYun SHI, YanQiong YIN, and XueQing ZHAO. 2017 Analysis of factors affecting population growth of the white-backed planthopper (Sogatella furcifera) in early rice crop areas of Yunnan Province. Chinese Journal of Applied Entomology 54(2): 273-278. |
11934 | Shao, E., Li Lin, Sijun Liu, Jiao Zhang, Xuelin Chen, Li Sha, Zhipeng Huang, Biwang Huang and Xiong Guan. 2018 Analysis of Homologs of Cry-toxin Receptor-Related Proteins in the Midgut of a Non-Bt Target, Nilaparvata lugens (Stål) (Hemiptera: Delphacidae). Journal of Insect Science 18(1): 10; 1-10. doi: 10.1093/jisesa/iex102. (ePub article#10, 10pp.) pdf |
7495 | Yao, Q., F.X. Lai, Q. Fu, and Z.T. Zhang. 2004 Analysis of male acoustic signal characteristics of rice brown planthopper and its biological significance. Scientia Agricultura Sinica 37(7): 993-999. |
7724 | Bai, X.D., G.G. Li, G.T. Tang, Z.L. Liang, L.X. Zou, and F. Jia. 2010 Analysis of meteorological conditions for migration of rice planthopper in Guilin region. Jiangsu Agricultural Sciences 2010(3): 141-144. |
5641 | Liu, Y.D. and M.L. Hou. 2010 Analysis of microsatellite information in EST resource of Nilaparvata lugens (Homoptera: Delphacidae). Acta Entomologica Sinica 53(3): 239-247. pdf |
14579 | Avanesyan, A., C. McPherson, and W.O. Lamp. 2022 Analysis of plant trait data of host plants of Lycorma delicatula in the US suggests evidence for ecological fitting. Forests 13(12): 2017; 1-16. https://doi.org/10.3390/f13122017. |
7053 | Cai, Z.P. 2010 Analysis of published papers on Nilaparvata lugens in Chinese core periodicals. Journal of Library and Information Sciences in Agriculture 22(2): 114-117. |
7445 | Duan, C.X., Z.J. Cheng, C.L. Lei, H.Q. Zhai, and J.M. Wan. 2009 Analysis of QTL s for resistance to small brown planthopper (Laodelphax striatellus Fallén) in rice (Oryza sativa L.) using an F2 population from a cross between Mudgo and Wuyujing3. Acta Agronomica Sinica 35(3): 388–394. pdf |
14131 | DENG, Zhao, ShaoJie SHI, HuiYing WANG, XinXin SHANG-GUAN, BingFang LIU, ShengLi JING, RongZhi CHEN, LiLi ZHU, and GuangCun HE. 2016 Analysis of QTLs for brown planthopper resistance in indica rice WD 15515. Acta Agronomica Sinica 42(3): 353-360. [Chinese with English summary] |
5266 | Kim, S.M. and J.K. Sohn. 2009 Analysis of QTLs related to resistance to brown planthopper in rice. Korean Journal of Breeding Science 41: 236-243. |
7137 | Zhu, J.Z., T.P. Xu, and H.D. Zhang. 2004 Analysis of regularity of number change of some insect such as Nilaparvata lugens, Sogatella furcifera druing the period of rice growth and development. Journal of Zhejiang Agricultural Sciences 30(3): 150-151. pdf |
5619 | Kim, S.M., Y. Qin, and J.K. Sohn. 2010 Analysis of relationship between resistance of brown planthopper and traits related to the lodging in rice. Korean Journal of Crop Science 55(2): 105-110. pdf |
7425 | Chen, R.Z., Q.M. Weng, Z. Huang, L.L. Zhu, and G.C. He. 2002 Analysis of resistance-related proteins in rice against brown planthopper by two-dimensional electrophoresis. Acta Botanica Sinica 44(4): 427–432. pdf |
8522 | Tsuji, T., N. Saka, T. Touyama, and H. Iwata. 1998 Analysis of rice brown planthopper resistance gene by DNA marker, 1: Screening of the RAPD marker by using resistant lines derived from Japonica rice parental line, "Kanto PL5". Research Bulletin of the Aichi-ken Agricultural Research Center 30: 11-17. pdf |