6
Journal of Chemistry
Conflicts of Interest
[8] R.-Z. Chen, L.-B. Li, M. G. Klein, Q.-Y. Li, P.-P. Li, and C.-
F. Sheng, “Captures of ostrinia furnacalis (lepidoptera: Cram-
bidae) with sex pheromone traps in NE China Corn and
Soybeans,” Environmental Entomology, vol. 45, no. 1, pp. 207–
215, 2016.
Te authors declare that they have no conficts of interest.
Authors’ Contributions
[9] R.-Z. Chen, M. G. Klein, C.-F. Sheng, Y. Li, D.-X. Shao, and Q.-
Y. Li, “Use of pheromone timed insecticide applications inte-
grated with mating disruption or mass trapping against ostrinia
furnacalis (Lepidoptera: Pyralidae) in sweet corn,” Environmen-
tal Entomology, vol. 42, no. 6, pp. 1390–1399, 2013.
[10] J. A. Klun, B. A. Bierl-Leonhardt, M. Schwarz et al., “Sex phe-
romone of the Asian corn borer moth,” Life Sciences, vol. 27, no.
17, pp. 1603–1606, 1980.
Zhengchang Lu and Wei Liu contributed equally to this work.
Acknowledgments
Financial support of this research provided by Science
and Technology Planning Project of Jilin Province
(20140204022NY, 20160414015GH, 20160414028GH, and
20180201012NY) and National Science & Technology Pillar
Program during the Tirteenth Five-Year Plan Period
(2016YFD0300704 and 2017YFD0201802) is greatly acknow-
ledged. Te authors thank Fan Zhang and Su Wang from
Beijing Academy of Agricultural and Forestry Sciences,
Beijing, for providing EAG setup and O. furnacalis pupae.
[11] K. S. Boo, “Variation in Sex Pheromone Composition of a Few
Selected Lepidopteran Species,” Journal of Asia-Pacifc Ento-
mology, vol. 1, no. 1, pp. 17–23, 1998.
[12] K. S. Boo and J. W. Park, “Sex Pheromone Composition of the
Asian Corn Borer Moth, Ostrinia furnacalis (Guenee) (Lepi-
doptera: Pyralidae) in South Korea,” Journal of Asia-Pacifc
Entomology, vol. 1, no. 1, pp. 77–84, 1998.
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[13] W. Liu, P. Yang, L. Jiang et al., “Progress on sex pheromones
synthesis of Asian corn borer: Ostrinia furnacalis (Guene´e),”
Agricultural Science Technology, vol. 14, pp. 1842–1846, 2013.
[14] S. K. Kang, J. M. Park, and K. L. Hwang, “Synthesis and bio-
logical test of the pheromone of the Asian corn borer moth
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[15] J. W. Chen, J. X. Huang, J. L. Jiang, Y. M. Wu, and Z. X. Jiang,
“Expanding synthesis and side efect of the sex pheromone of
Asian corn borer,” Journal of Hubei University: (Natural Science),
vol. 13, pp. 140–146, 1991.
[16] J. W. Chen, J. L. Jiang, and J. Lu, “Te improved synthesis of the
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Supplementary Materials
Copies of NMR spectra for compounds tridecane-1,13-diol
(3), 13-hydroxytridecyl acetate (4), 13-oxotridecyl acetate (5),
tetradec-13-en-1-yl acetate (6), and (Z/E)-12-tetradecene-1-ol
acetate (1a, 1b). Copies of MS spectra for compounds 1a and
1b, (Z/E)-12-tetradecene-1-ol acetate (1a, 1b). Analysis of the
ratio of (Z/E)-12-tetradecene-1-ol acetate (1a, 1b). Figure A:
GC-MS analysis of the gonad extract of Asian Corn Borer
[22]. Table 1: retention time of the gonad extract of Asian
Corn Borer [22]. Figure B: GC-MS analysis of the sex phe-
romone of Asian Corn Borer. Table 2: retention time of the sex
[17] H. B. Chen and Y. J. Du, “Convenient synthesis of the sex phe-
romone of Asian corn borer,” Chinese Journal of Pesticide Sci-
ence, vol. 12, pp. 90–92, 2010.
[18] J. M. Li, J. P. Yong, F. L. Huang, S. Z. Bai, T. M. Xiao, and H. Y.
Chen, “A convenient synthesis of the sex pheromone of Ostrinia
Orientalis,” Modern Agrochemicals, vol. 10, pp. 35–37, 2011.
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