[1] |
Baur, M.E., Boethel, D.J. Biol. Contr., 26 (2003),pp. 325-332
|
[2] |
Bevan, M.W., Uauy, C., Wulff, B.B.H. et al. Genomic innovation for crop improvement Nature, 543 (2017),pp. 346-354
|
[3] |
Carriere, Y., Crickmore, N., Tabashnik, B.E. Optimizing pyramided transgenic Bt crops for sustainable pest management Nat. Biotech., 33 (2015),pp. 161-168
|
[4] |
Chen, X., Lu, X., Shu, N. et al. Sci. Rep., 7 (2017),p. 44304
|
[5] |
Cheng, H.Q., Han, L.B., Yang, C.L. et al. J. Exp. Bot., 67 (2016),pp. 1935-1950
|
[6] |
Effenberger, I., Harport, M., Pfannstiel, J. et al. Appl. Microbiol. Biotechnol., 101 (2016),pp. 2021-2032
|
[7] |
Fabrick, J.A., Tabashnik, B.E. Similar genetic basis of resistance to Bt toxin Cry1Ac in boll-selected and diet-selected strains of pink bollworm PLoS One, 7 (2012),p. e35658
|
[8] |
Fang, L., Wang, Q., Hu, Y. et al. Genomic analyses in cotton identify signatures of selection and loci associated with fiber quality and yield traits Nat. Genet., 49 (2017),pp. 1089-1098
|
[9] |
Flint, H.M., Henneberry, T.J., Wilson, F.D. et al. S. Entomol., 20 (1995),pp. 281-292
|
[10] |
Gennadios, H.A., Gonzalez, V., Costanzo, D.L. et al. Biochemistry, 48 (2009),pp. 6175-6183
|
[11] |
Gowda, A., Rydel, T.J., Wollcott, A.M. et al. A transgenic approach for controlling Lygus in cotton Nat. Commun., 7 (2016),p. 12213
|
[12] |
Gunapati, S., Naresh, R., Ranjan, S. et al. Sci. Rep., 6 (2016),p. 24978
|
[13] |
Hagerty, A.M., Kilpatrick, A.L., Turnipseed, S.G. et al. Predaceous arthropods and lepidopteran pests on conventional, Bollgard, and Bollgard II cotton under untreated and disrupted conditions Environ. Entomol., 34 (2005),pp. 105-114
|
[14] |
Hardee, D.D., Bryan, W.W. J. Econ. Entomol., 90 (1997),pp. 663-668
|
[15] |
He, Q., Jones, D.C., Li, W. et al. Sci. Rep., 6 (2016),p. 22980
|
[16] |
He, X., Zhu, L., Xu, L. et al. GhATAF1, a NAC transcription factor, confers abiotic and biotic stress responses by regulating phytohormonal signaling networks Plant Cell Rep., 35 (2016),pp. 2167-2179
|
[17] |
Hu, H., He, X., Tu, L. et al. GhJAZ2 negatively regulates cotton fiber initiation by interacting with the R2R3-MYB transcription factor GhMYB25-like Plant J., 88 (2016),pp. 921-935
|
[18] |
Huang, J., Chen, F., Wu, S. et al. Sci. China Life Sci., 59 (2016),pp. 194-205
|
[19] |
Jiao, Y., Zhang, Y., Zhu, Y. Sci. China Life Sci., 59 (2016),pp. 825-831
|
[20] |
Jin, X., Li, Q., Xiao, G. et al. J. Integr. Plant Biol., 55 (2013),pp. 576-585
|
[21] |
Jin, X., Wang, L., He, L. et al. Two dimensional electrophoresis gel based analysis provide global insights of cotton ovule and fiber proteomes Sci. China Life Sci., 59 (2016),pp. 154-163
|
[22] |
Krempl, C., Sporer, T., Reichelt, M. et al. Insect Biochem. Mol. Biol., 71 (2016),pp. 49-57
|
[23] |
Li, C., Unver, T., Zhang, B. Sci. Rep., 7 (2017),p. 43902
|
[24] |
Li, F., Fan, G., Lu, C. et al. Nat. Biotech., 33 (2015),pp. 524-530
|
[25] |
Li, F., Fan, G., Wang, K. et al. Nat. Genet., 46 (2014),pp. 567-572
|
[26] |
Li, Q., Xiao, G., Zhu, Y.X. Mol. Plant, 7 (2014),pp. 829-840
|
[27] |
Liu, J., Pang, C., Wei, H. et al. BMC Plant Biol., 14 (2014),p. 390
|
[28] |
Liu, X., Zhao, B., Zheng, H. et al. Sci. Rep., 5 (2015),p. 14139
|
[29] |
Ma, D., Hu, Y., Yang, C. et al. Genetic basis for glandular trichome formation in cotton Nat. Commun., 7 (2016),p. 10456
|
[30] |
McCarthy, D.J., Smyth, G.K. Testing significance relative to a fold-change threshold is a treat Bioinformatics, 25 (2009),pp. 765-771
|
[31] |
Meng, Y., Liu, F., Pang, C. et al. Label-free quantitative proteomics analysis of cotton leaf response to nitric oxide J. Proteome Res., 10 (2011),pp. 5416-5432
|
[32] |
Ni, M., Ma, W., Wang, X. et al. Next-generation transgenic cotton: pyramiding RNAi and Bt counters insect resistance Plant Biotechnol. J., 15 (2017),pp. 1204-1213
|
[33] |
Paterson, A.H., Wendel, J.F., Gundlach, H. et al. Nature, 492 (2012),pp. 423-427
|
[34] |
Ponsard, S., Gutierrez, A.P., Mills, N.J. Effect of Bt-toxin (Cry1Ac) in transgenic cotton on the adult longevity of four heteropteran predators Environ. Entomol., 31 (2002),pp. 1197-1205
|
[35] |
Pu, L., Li, Q., Fan, X. et al. The R2R3 MYB transcription factor GhMYB109 is required for cotton fiber development Genetics, 180 (2008),pp. 811-820
|
[36] |
Qin, Y., Hu, C.Y., Pang, Y. et al. Plant Cell, 19 (2007),pp. 3692-3704
|
[37] |
Qin, Y., Wei, H., Sun, H. et al. J. Proteome Res., 16 (2017),pp. 2811-2824
|
[38] |
Ribeiro, T.P., Arraes, F.B., Lourenço-Tessutti, I.T. et al. Transgenic cotton expressing Cry10Aa toxin confers high resistance to the cotton boll weevil Plant Biotechnol. J., 15 (2017),pp. 997-1009
|
[39] |
Romeis, J., Meissle, M., Bigler, F. Nat. Biotech., 24 (2006),pp. 63-71
|
[40] |
Salih, H., Gong, W., He, S. et al. BMC Genet., 17 (2016),p. 129
|
[41] |
Shang, H., Li, W., Zou, C. et al. J. Integr. Plant Biol., 55 (2013),pp. 663-676
|
[42] |
Shang, H., Wang, Z., Zou, C. et al. Sci. China Life Sci., 59 (2016),pp. 142-153
|
[43] |
Shukla, A.K., Upadhyay, S.K., Mishra, M. et al. Expression of an insecticidal fern protein in cotton protects against whitefly Nat. Biotech., 34 (2016),pp. 1046-1051
|
[44] |
Suo, J., Liang, X., Pu, L. et al. Biochim. Biophys. Acta, 1630 (2003),pp. 25-34
|
[45] |
Tabashnik, B.E., Patin, A.L., Dennehy, T.J. et al. Proc. Natl. Acad. Sci. U. S. A., 97 (2000),pp. 12980-12984
|
[46] |
Tabashnik, B.E., Unnithan, G.C., Masson, L. et al. Proc. Natl. Acad. Sci. U. S. A., 16 (2009),pp. 11889-11984
|
[47] |
Tang, K., Dong, C.J., Liu, J.Y. Sci. China Life Sci., 59 (2016),pp. 130-141
|
[48] |
Tang, K., Liu, J.Y. Molecular characterization of GhPLDα1 and its relationship with secondary cell wall thickening in cotton fibers Acta Biochim. Biophys. Sin., 49 (2017),pp. 33-43
|
[49] |
Tian, X., Ruan, J., Huang, J. et al. Gossypol: phytoalexin of cotton Sci. China Life Sci., 59 (2016),pp. 122-129
|
[50] |
Wang, K., Huang, G., Zhu, Y. Transposable elements play an important role during cotton genome evolution and fiber cell development Sci. China Life Sci., 59 (2016),pp. 112-121
|
[51] |
Wang, K., Wang, Z., Li, F. et al. Nat. Genet., 44 (2012),pp. 1098-1103
|
[52] |
Wang, M., Tu, L., Lin, M. et al. Nat. Genet., 49 (2017),pp. 579-587
|
[53] |
Wang, P., Zhang, J., Sun, L. et al. Plant Biotechnol. J. (2017)
|
[54] |
Wang, Q., Zhu, Y., Sun, L. et al. Transgenic Bt cotton driven by the green tissue-specific promoter shows strong toxicity to lepidopteran pests and lower Bt toxin accumulation in seeds Sci. China Life Sci., 59 (2016),pp. 172-182
|
[55] |
Wang, W., Yuan, Y., Yang, C. et al. G3, 6 (2016),pp. 3951-3961
|
[56] |
Wilson, D.F., Flint, H.M., Deaton, R.W. et al. J. Econ. Entomol., 85 (1992),pp. 1516-1521
|
[57] |
Xiao, G.H., Wang, K., Huang, G. et al. J. Integr. Plant Biol., 58 (2016),pp. 577-589
|
[58] |
Yue, Z., Liu, X., Zhou, Z. et al. Development of a novel-type transgenic cotton plant for control of cotton bollworm Plant Biotechnol. J., 14 (2016),pp. 1747-1755
|
[59] |
Zhang, B., Du, S.J., Hu, J. et al. Comparative proteomic analyses of Asian cotton ovules with attached fibers in the early stages of fiber elongation process Proteome Sci., 14 (2016),p. 13
|
[60] |
Zhang, H., Ni, Z., Chen, Q. et al. Proteomic responses of drought-tolerant and drough-sensitive cotton varieties to drought stress Mol. Genet. Genomics, 291 (2016),pp. 1293-1303
|
[61] |
Zhang, T., Hu, Y., Jiang, W. et al. Nat. Biotech., 33 (2015),pp. 531-537
|
[62] |
Zhang, T., Zhao, Y.L., Zhao, J.H. et al. Cotton plants export microRNAs to inhibit virulence gene expression in a fungal pathogen Nat. Plants, 2 (2016),p. 16153
|
[63] |
Zhao, Y.L., Zhou, T.T., Guo, H.S. PLoS Pathog., 12 (2016),p. e1005793
|
[64] |
Zhu, Y.X. The post-genomics era of cotton Sci. China. Life. Sci., 59 (2016),pp. 109-111
|
[65] |
Zou, C., Lu, C., Shang, H. et al. J. Integr. Plant Biol., 55 (2013),pp. 643-653
|