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1. Huang XX#, Wang Y#, Lin JS, Chen L, Li YJ, Liu Q, Wang GF, Xu F, Liu LJ, Hou BK*. A novel pathogen-responsive glycosyltransferase UGT73C7 mediates the redirection of phenylpropanoid metabolism and promotes SNC1-dependent Arabidopsis immunity. Plant Journal, 2021, 107: 149–165
2. Chen L, Huang XX, Zhao SM, Xiao DW, Xiao LT, Tong JH, Wang WS, L YJ, Ding ZJ, Hou BK. IPyA glucosylation mediates light and temperature signaling to regulate auxin-dependent hypocotyl elongation in Arabidopsis. PNAS, 2020,117:6910-6917(该成果获得美国华盛顿大学Lucia C. Strader教授的专题介绍和评述,见PNAS,117:7558–7560)
3. Chen L, Wang WS, Wang T, Meng XF, Chen TT, Huang XX, Li YJ, Hou BK*. Methyl salicylate glucosylation regulates plant defense signalling and systemic acquired resistance. Plant Physiology. 2019, 180:2167-2181(该成果获得比利时根特大学Amna Mhamdi教授的专题介绍和评述,见Plant Physiology,180:1784-1785)
4. Huang XX, Zhu GQ, Liu Q, Chen L, Li YJ, Hou BK*. Modulation of plant salicylic acid-associated immune responses via glycosylation of dihydroxybenzoic acids. Plant Physiology. 2018, 176 : 3103-3119
5. Li P#, Li YJ#, Zhang FJ, Zhang GZ, Jiang XY, Yu HM, Hou BK*. The Arabidopsis UDP-glycosyltransferases UGT79B2 and 79B3, contribute to cold, salt and drought stress tolerance via modulating anthocyanin accumulation. The Plant J, 2017, 89:85-103
6. Lin JS, Huang XX, Li Q, Cao YP, Bao Y, Meng XF, Li YJ, Fu CX, Hou BK* UDP-glycosyltransferase 72B1 catalyzes the glucose conjugation of monolignols and is essential for the normal cell wall lignification in Arabidopsis thaliana. The Plant J, 2016, 88: 26-42
7. Wang B, Jin SH, Hu HQ, Sun YG, Wang YW, Han P, Hou BK*. UGT87A2, an Arabidopsis glycosyltransferase, regulates flowering time via FLOWERING LOCUS C. New Phytologist, 2012, 194: 666-675.
8. Wang YW, Wang WC, Jin SH, Wang J, Wang B, Hou BK*. Over-expression of a Putative Poplar Glycosyltransferase Gene, PtGT1, in Tobacco Increases Lignin Content and Causes Early Flowering. Journal of Experimental Botany. 2012, 63:2799-2808
9. Wang T, Ma YQ, Huang XX, Mu TJ, Li YJ, Li XK, Liu X, Hou BK*(2021)Overexpression of OsUGT3 enhances drought and salt tolerance through modulating ABA synthesis and scavenging ROS in rice. Environmental and Experimental Botany, 192: article 104653.
10. Wang J, Ma XM, Kojima M, Sakakibara H, Hou BK*. N-Glucosyltransferase UGT76C2 is Involved in Cytokinin Homeostasis and Cytokinin Response in Arabidopsis thaliana. Plant and Cell Physiology. 2011, 52(12): 2200-2213
11. Zhang GZ, Jin SH, Jiang XY, Dong RR, Li P, Li YJ, Hou BK*. Ectopic expression of UGT75D1, a glycosyltransferase preferring indole-3-butyric acid, modulates cotyledon development and stress tolerance in seed germination of Arabidopsis thaliana. Plant Molecular Biology, 2016, 90:77-93
12. Li YJ, Li P, Wang T, Zhang FJ, Huang XX, Hou BK*. The maize secondary metabolism glycosyltransferase UFGT2 modifies flavonols and contributes to the plant acclimation to abiotic stresses. Annals of Botany, 2018, 122: 1203-1217
13. Liu Q, Dong GR, Ma YQ, Zhao SM, Liu X, Li XK, Li YJ, Hou BK* (2021) Rice glycosyltransferase gene UGT85E1 is involved in drought stress tolerance through enhancing abscisic acid response. Frontiers Plant Sci. 12: article 790195
14. Li YJ#, Wang B#, Dong RR, Hou BK*. AtUGT76C2, an Arabidopsis cytokinin glycosyltransferase is involved in drought stress adaptation. Plant Science, 2015,236:157-167
15. Li YJ, Li P, Wang Y, Dong RR, Yu HM, Hou BK*. Genome-wide identification and phylogenetic analysis of Family-1 UDP glycosyltransferases in maize (Zea mays). Planta, 2014,239:1265-1279
16. Jin SH#, Ma XM#, Han P, Wang B, Sun YG, Zhang GZ, Li YJ, Hou BK*. UGT74D1 is a novel auxin glycosyltransferase from Arabidopsis thaliana. PLoS ONE, 2013, 8(4): e61705.
17. Sun YG, Wang B, Jin SH, Qu XX, Li YJ, Hou BK*. Ectopic Expression of Arabidopsis Glycosyltransferase UGT85A5 Enhances Salt Stress Tolerance in Tobacco. PLoS ONE, 2013, 8(3): e59924.
18. Jin SH, Ma XM, Kojima M, Sakakibara H, Wang YW, Hou BK*. Overexpression of glucosyltransferase UGT85A1 influences trans-zeatin homeostasis and trans-zeatin responses likely through O-glucosylation. Planta, 2013, 237:991-999
19. Li P, Li YJ, Wang B, Yu HM, Li Q, Hou BK*. The Arabidopsis UGT87A2, a stress-inducible family 1 glycosyltransferase, is involved in the plant adaptation to abiotic stresses. Physiologia Plantarum, 2017, 159: 416-432.
20. Wang J, Ma XM, Kojima M, Sakakibara H, Hou BK*. Glucosyltransferase UGT76C1 finely modulates cytokinin responses via cytokinin N-glucosylation in Arabidopsis thaliana. Plant Physiology and Biochemistry. 2013, 65: 9-16
21. Huang XX,Zhao SM,Zhang YY, Li YJ, Shen HN, Li X, Hou BK* (2021) A novel UDP-glycosyltransferase 91C1 confers specific herbicide resistance through detoxification reaction in Arabidopsis. Plant Physiol Biochem, 159: 226-233
22. Zhang GZ, Jin SH, Li P, Jiang XY, Li YJ, Hou BK*. Ectopic expression of UGT84A2 delayed flowering by indole-3-butyric acid mediated transcriptional repression of ARF6 and ARF8 genes in Arabidopsis. Plant Cell Reports, 2017, 36:1995-2006.
23. Li Q, Yu HM, Meng XF, Lin JS, Li YJ, Hou BK*. Ectopic expression of glycosyltransferase UGT76E11 increases flavonoid accumulation and enhances abiotic stress tolerance in Arabidopsis. Plant Biology, 2018, 20:10-19
24. Chen L, Wang WS, Liu Q, Dong RR, Li YJ, Chen TT, Hou BK. Overexpression of the UGT76E12 gene modulates seed germination, growth, and response to NaCl, mannitol, and abscisic acid. Biologia Plantarum, 2019, 63: 328-334
25. Liu Q, Zhang YY, Chen L, Chen TT, Li YJ, Hou BK* OsSGT1 is a glucosyltransferase gene involved in the glucose conjugation of phenolics in rice. Plant Molecular Biology Reporter, 2019, 37:41–49
26. Li P, Lei K, Li YJ, He X, Wang S, Liu R, Ji LS*, Hou BK*. Identification and characterization of the first cytokinin glycosyltransferase from rice. Rice, 2019, 12:19
27. Liu Q#, Chen TT#, Xiao DW, Zhao SM, Lin JS, Wang T, Li YJ, Hou BK OsIAGT1 is a glucosyltransferase gene involved in the glucose conjugation of auxins in rice. Rice, 2019, 12:92 https://doi.org/10.1186/s12284-019-0357-z
28. Chen L, Huang XX, Li YJ, Hou BK*. Glycosyltransferase UGT76F1 is involved in the temperature-mediated petiole elongation and the BR-mediated hypocotyl growth in Arabidopsis. Plant Signaling and Behavior. 2020, 15: 8, e1777377