SUSTAINING THE WORLD THROUGH SCIENCE AND TECHNOLOGY
Planthopper Bibliography Database
List
57 | 58 | 59 | 60 | 61 | 62 | 63 | 64 | 65 « Previous Next »
61 of 611
Authors Year Title Journal | |
---|---|
14905 | Faal, H. and M.F. Cooperband. 2024 Antennal sensitivity of Spotted Lanternflies, Lycorma delicatula: Differential electrophysiological responses of males and females to compounds derived from host plants and conspecifics. Insects 15(3): 162; 1-13. https://doi.org/10.3390/insects15030162. pdf |
632 | Cheng, C.L. and C.T. Yang. 1996 Antennal sensory plaque organs of Fulgoridae (Homoptera: Fulgoroidea). Chinese Journal of Entomology 16(3): 187-207. pdf |
4070 | Shih, H.T and C.T. Yang. 1997 Antennal sensory plaque organs of the Cixiidae (Homoptera: Fulgoroidea). Chinese Journal of Entomology 17(1): 33-40. pdf |
4068 | Shih, H.T and C.T. Yang. 1996 Antennal sensory plaque organs of the Delphacidae (Homoptera: Fulgoroidea). Chinese Journal of Entomology 16(3): 209-217. pdf |
11489 | Świerczewski, D. and A. Stroiński. 2015 Antennal ultrastructures in Flatidae (Hemiptera: Fulgoromorpha) - a preliminary report. Pp. 80. In: Programme and abstracts of talks. 7th European Hemiptera Congress and 9th International Workshop on Leafhoppers and Planthoppers of Economic Importance, July 19th‐24th 2015, Seggau Castle, Graz, Austria. 107 pp. pdf |
3428 | Niedringhaus, R. 1997 Anthropogenic influence on a strongly habitat-related insect group on a North Sea dune island. In: F. Garcia Novo,, R.M.M. Crawford, and M. Cruz Diaz Barradas, (eds.). The Ecology and Donservation of European Dunes. Universidad de Sevilla, Sevilla. Pp. 315-320. |
11877 | Baek, S.-H, O. Joung, H.-Y. Lee, J.-C. Shin, W.-S. Choi, T.H. Lee J.-S. Hwang, S.-H. Nam, H.-U. Son and S.-H. Lee. 2018 Anti-oxidative fraction of lycorma delicatula alleviates inflammatory indicators. Natural Product Communications 13: 431-434. |
7876 | Gao, C.X., X.H. Gu, and Y.W. Bei. 1990 Antibiosis and its resistance evaluation of Xiu-shui 620 to the brown planthopper, Nilaparvata lugens. Chinese Journal of Rice Science 4(4): 175–180. pdf |
13404 | Bhanu, K.V., V.J. Lakshmi, G. Katti, and A.V. Reddy. 2014 Antibiosis and tolerance mechanisms of resistance in rice varieties carrying brown planthopper resistance genes. Asian Journal of Biological and Life Sciences 3: 108-113. |
9792 | Shekar, B.M.C., B.U. Singh, K.D. Reddy, and D.D.R. Reddy. 1993 Antibiosis component of resistance in sorghum to corn plant hopper, Peregrinus maidis (Ashmead) (Homoptera: Delphacidae). Insect Science and its Application 14(5): 559-569. |
11618 | Singh, I., P.S. Sarao and N. Sharma. 2017 Antibiosis components and antioxidant defense of rice as mechanism of resistance to brown planthopper, Nilaparvata lugens (Stål). Cereal Research Communications 45(2): 284–295. doi: 210.1556/0806.1545.2017.1011. |
12552 | Zhang, Xu, Tong‐Pu Li, Chun‐Ying Zhou, Dian‐Shu Zhao, Yu‐Xi Zhu, Xiao‐Li Bing, Hai‐Jian Huang and Xiao‐Yue Hong. 2019 Antibiotic exposure perturbs the bacterial community in the small brown planthopper laodelphax striatellus. Insect Science (2020): (PrePrint, 13 pp.). http://dx.doi.org/10.1111/1744-7917.12675 |
13439 | TANG, Tao, Yunhua ZHANG, Tingwei CAI, Xiaoqian DENG, Chaoya LIU, Jingmin LI, Shun HE, Jianhong LI, and Hu WAN. 2021 Antibiotics increased host insecticide susceptibility via collapsed bacterial symbionts reducing detoxification metabolism in the brown planthopper, Nilaparvata lugens. Journal of Pest Science 94: 757-767 [ePub ahead of print 2020]. https://doi.org/10.1007/s10340-020-01294-8. |
11289 | Burrows, M., J.A. Borycz, S.R. Shaw, C.M. Elvin, and I.A. Meinertzhagen. 2011 Antibody labelling of resilin in energy stores for jumping in plant sucking insects. PLoS ONE 6(12): e28456. doi:10.1371/journal.pone.0028456 pdf |
8726 | Liang, J., P.Y. Hao, S.Z. Dong, Y.L. Bian, and X.P. Yu. 2011 Antifeedant and insecticidal effects of mandelic acid on the brown planthopper Nilaparvata lugens Stål. Zeitschrift fur Naturforschung. Section C, Biosciences 66(9/10): 499-506. |
9559 | Jin, L., P.Y. Hao, S.Z. Dong, Y.L. Bian, and X.P. Yu. 2011 Antifeedant and insecticidal effects of mandelic acid on the brown planthopper Nilaparvata lugens Stal. Zeitschrift fur Naturforschung Section C - A Journal of Biosciences 66(9-10): 499-506. |
3687 | Powell, K.S. A.M.R. Gatehouse, V.A. Hilder, and J.A. Gatehouse. 1995 Antifeedant effects of plant lectins and an enzyme on the adult stage of the rice brown planthopper, Nilaparvata lugens. Entomologia Experimentalis et Applicata 75(1): 51-59. |
9256 | Kim, M., H.S. Koh, T. Ichikawa. H. Fukami, and S. Ishii. 1975 Antifeedant of barnyard grass against the brown planthopper Nilaparvata lugens (Stål) (Homoptera: Delphacidae). Applied Entomology and Zoology 10: 116-122. |
8043 | Kim, C.S., H.S. Koh, H. Fukami, and R. Irie. 1994 Antifeedants of finger millet, Eleusine coracana Gaertn, against brown planthopper, Nilaparvata lugens (Stål). Bioscience, Biotechnology, and Biochemistry 58(2): 380-383. pdf |
2514 | Kim, C.S., H.S. Koh, and H. Fukami. 1994 Antifeedants of rice planthoppers in some millets. Applied Entomology and Zoology 29(1): 71-79. pdf |
5909 | Nagata, T. and T. Hayakawa. 1998 Antifeeding activity of aconitic acids and oxalic acid on the brown planthopper, Nilaparvata lugens (Stål), and green leafhopper, Nephotettix incticeps (Uhler). Japanese Journal of Applied Entomology and Zoology 42(3): 115-121. pdf |
8030 | Hirata, M. and K. Sogawa. 1976 Antifeeding activity of chlordimeform for plant-sucking insects. Applied Entomology and Zoology 11(2):94-99. pdf |
8345 | Pradeep, A.R. 2000 Antigonadotropic effects of precocene 2: allaticidal action in females of Nilaparvata lugens (Stal). Philippine Entomologist 14(2): 175-183. pdf |
8342 | Powell, K.S., A.M.R. Gatehouse, V.A. Hilder, and J.A. Gatehouse. 1993 Antimetabolic effects of plant lectins and plant and fungal enzymes on the nymphal stages of two important rice pests, Nilaparvata lugens and Nephotettix cinciteps. Entomologia Experimentalis et Applicata 66(2): 119-126. |
13425 | JANG, Yoon-Hee, Jae-Ryoung PARK, and Kyung-Min KIM. 2020 Antimicrobial activity of Chrysoeriol 7 and Chochlioquinone 9, white-backed planthopper-resistant compounds, against rice pathogenic strains. Biology 9(11): 382; 1-15. https://doi.org/10.3390/biology9110382. pdf |