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1. Malook, S.(#)., Qi, JF. (#), Hettenhausen, C. (#), Xu, Y., Zhang, C., Zhang, J., Lu, C., Li, J., Wang, L., Wu, J.* (2019) The oriental armyworm (Mythimna separata) feeding induces systemic defense responses within and between maize leaves. Philosophical Transactions of the Royal Society B 374: 20180307 (Co-first author)
2. Qi, JF., Malook, S., Shen, G., Gao, L., Zhang, C., Li, J., Zhang, J., Wang, L., Wu, J.* (2018) Current understanding of maize and rice defense against insect herbivores. Plant Diversity 40: 189-195. (Review)
3. Guo, JF., Qi, JF., He, KL., Wu, JQ., Bai, SX., Zhang, TQ., Zhao, JR., et al. (2018). The Asian corn borer Ostrinia furnacalis feeding increases the direct and indirect defense of mid-whorl stage commercial maize in the field. Plant Biotechnology Journal. DOI: 10.1111/pbi.12949
4. Qi, JF., Zhang, M., Lu, CK., Hettenhausen, C., Tan, Q., Cao, G.Y., et al. (2018). Ultraviolet-B enhances the resistance of multiple plant species to lepidopteran insect herbivory through the jasmonic acid pathway. Scientific Reports. 8.
5. Lu, CK., Qi, JF., Hettenhausen, C., Lei, Y., Zhang, J., Zhang, M., et al. (2018). Elevated CO2 differentially affects tobacco and rice defense against lepidopteran larvae via the jasmonic acid signaling pathway. Journal of Integrative Plant Biology.
6. Sun, G., Xu, Y., Liu, H., Sun, T., Zhang, J., Hettenhausen, C., Shen, G., Qi, JF Qin, Y., Li, J., Wang, L., Chang, W., Guo, Z., Baldwin, I.T., and Wu, J. (2018). Large-scale gene losses underlie the genome evolution of parasitic plant Cuscuta australis. Nat Commun 9: 2683.
7. Hettenhausen, C., Li, J., Zhuang, H., Sun, H., Xu, Y., Qi, JF, et al. (2017) Stem parasitic plant Cuscuta australis (dodder) transfers herbivory-induced signals among plants. Proc Natl Acad Sci U S A. 114: E6703-E6709.
8. Wang H.(#),Qi JF.(#), Xiao DR., Wang ZB., Tian K., (2017) A re-evaluation of dilution for eliminating PCR inhibition in soil DNA samples, Soil Biology and Biochemistry, 106: 109~118. (Co-first author)
9. Qi JF.(#), Sun GL. (#), Wang L. (#), Zhao CX.(#), Hettenhausen C., Schuman M.C., . . . Wu JQ. (2016) Oral secretions from Mythimna separata insects specifically induce defence responses in maize as revealed by high-dimensional biological data. Plant Cell & Environment 39:1749-1766. http://www.ncbi.nlm.nih.gov/pubmed/26991784
10. Qi JF.(#), Li JC. (#), Han X.(#)., Li R., Wu J., Yu H., . . . Lou YG. (2016) Jasmonic acid carboxyl methyltransferase regulates development and herbivory-induced defense response in rice. Journal of Integrative Plant Biology 58: 564-576.
11. Hettenhausen C.,Sun, GL.,He, YB.,Zhuang, HF.,Sun, T.,Qi, JF.,Wu, JQ. (2016) Genome-wide identification of calcium-dependent protein kinases in soybean and analyses of their transcriptional responses to insect herbivory and drought stress,Scientific Reports, 18973.
12. Zhang DL(#), Qi JF(#)., Yue J.P., Huang J.L., Sun T., Li S.P., . . . Sun G.L. (2014) Root parasitic plant Orobanche aegyptiaca and shoot parasitic plant Cuscuta australis obtained Brassicaceae-specific strictosidine synthase-like genes by horizontal gene transfer. Bmc Plant Biology 14: 19. (Co-first author) http://www.ncbi.nlm.nih.gov/pubmed/24411025
13. Qi JF, Zhou GX, Yang LJ, Erb M, Lu YH, Sun XL, Cheng JA, Lou YG (2011) The chloroplast-localized phospholipases d alpha 4 and alpha 5 regulate herbivore-induced direct and indirect defenses in rice. Plant Physiology 157: 1987-1999 http://www.ncbi.nlm.nih.gov/pubmed/21984727
14. Tong X.H(#), Qi JF, (#), Zhu XD, Zeng LJ, Wang BH, Li Q, Zhou GX, Mao BZ, Lou YG, He ZH (2012) The rice hydroperoxide lyase OsHPL3 functions in defense responses by modulating the oxylipin pathway. Plant Journal 71: 763-775 (Co-first author) http://www.ncbi.nlm.nih.gov/pubmed/22519706
15. Zhou GX, Qi JF,, Ren N, Cheng JA, Erb M, Mao BZ, Lou YG (2009) Silencing OsHI-LOX makes rice more susceptible to chewing herbivores, but enhances resistance to a phloem feeder. Plant Journal 60: 638-648 http://www.ncbi.nlm.nih.gov/pubmed/19656341
16. Zhang T, Luan JB, Qi JF,, Huang CJ, Li M, Zhou XP, Liu SS (2012) Begomovirus-whitefly mutualism is achieved through repression of plant defences by a virus pathogenicity factor. Molecular Ecology 21: 1294-1304 http://www.ncbi.nlm.nih.gov/pubmed/22269032
17. Xin ZJ, Yu ZN, Erb M, Turlings TCJ, Wang BH, Qi JF,, Liu SN, Lou YG (2012) The broad-leaf herbicide 2,4-dichlorophenoxyacetic acid turns rice into a living trap for a major insect pest and a parasitic wasp. New Phytologist 194: 498–510 "