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Cai YP#, Chen L#, Zhang Y#, Yuan S#, Su Q, Sun S, Wu CX, Yao WW, Han TF, Hou WS*. Target base editing in soybean using a modified CRISPR/Cas9 system. Plant Biotechnology Journal; 2020, doi:10.1111/PBI.13386.
Wang LW#, Sun S#, Wu TT, Liu LP, Sun XG, Cai YP, Li JC, Jia HC, Yuan S, Chen L, Jiang BJ, Wu CX, Hou WS*, Han TF*. Natural variation and CRISPR/Cas9-mediated mutation in GmPRR37 affect photoperiodic flowering and contribute to regional adaptation of soybean. Plant Biotechnology Journal; 2020, doi:10.1111/pbi.13346.
Chen L#, Cai YP#, Qu MN#, Wang LW, Sun HB, Jiang BJ, Wu TT, Liu LP, Sun S, Wu CX, Yao WW, Yuan S, Han TF*, Hou WS*. Soybean adaption to high-latitude regions is associated with natural variations of GmFT2b, an ortholog of FLOWERING LOCUS T. Plant, Cell & Environment; 2020, 43(4): 934-944.
Cai YP#, Wang LW#, Chen L#, Wu TT, Liu LP, Sun S, Wu CX, Yao WW, Jiang BJ, Yuan Shan, Han TF*, Hou WS*. Mutagenesis of GmFT2a and GmFT5a mediated by CRISPR/Cas9 contributes for expanding the regional adaptability of soybean. Plant Biotechnology Journal; 2020, 18: 298-309.
Cai YP#, Chen L#, Sun S, Wu CX, Liu XJ, Yao WW, Jiang BJ, Han TF, Hou WS*. CRISPR/Cas9-mediated deletion of large genomic fragments in soybean. International Journal of Molecular Sciences; 2018, 19: 3835.
Chen L#, Cai YP#, Liu XJ, Yao WW, Guo C, Sun S, Wu CX, Jiang BJ, Han TF, Hou WS*. Improvement of soybean Agrobacterium-mediated transformation efficiency by adding glutamine and asparagine into the culture media. International Journal of Molecular Sciences; 2018,19: 3039.
Chen L#, Cai YP#, Liu XJ, Guo C, Yao WW, Sun S, Wu CX, Jiang BJ, Han TF, Hou WS*. GmGRP-like gene confers Al tolerance in Arabidopsis. Scientific Reports; 2018, 8: 13601.
Cai YP#, Chen L#, Liu XJ, Guo C, Sun S, Wu CX, Jiang BJ, Han TF, Hou WS*. CRISPR/Cas9-mediated targeted mutagenesis of GmFT2a delays flowering time in soya bean. Plant Biotechnology Journal; 2018, 16: 176-185.
Yu Y#, Hou WS#, Hacham Y#, Sun S, Wu CX, Matityahu I, Song SK, Amir R*, Han TF*. Constitutive expression of feedback-insensitive cystathionine γ-synthase increases methionine levels in soybean leaves and seeds. Journal of Integrative Agriculture; 2018, 17: 54-62.
Chen L#, Cai YP#, Liu XJ, Guo C, Sun S, Wu CX, Jiang BJ, Han TF, Hou WS*. Soybean hairy roots produced in vitro by Agrobacterium rhizogenes-mediated transformation. The Crop Journal; 2018, 6(2): 162-171.
Cai YP#, Chen L#, Liu XJ, Sun S, Wu CX, Jiang BJ, Han TF, Hou WS*. CRISPR/Cas9-mediated genome editing in soybean hairy roots. PLOS ONE, 2015, 10(8): e0136064.
Chen L, Jiang BJ, Wu CX, Sun S, Hou WS*, Han TF*. The characterization of GmTIP, a root-specific gene from soybean, and the expression analysis of its promoter. Plant Cell, Tissue and Organ Culture, 2015, 121: 259-274.
Chen L, Jiang BJ, Wu CX, Sun S, Hou WS*, Han TF*. GmPRP2 promoter drives root-specific expression in transgenic Arabidopsis and soybean hairy roots. BMC Plant Biology, 2014, 14:245.
Yu LL#, Tan XL#, Jiang BJ, Sun XG, Gu SL, Han TF, Hou WS*. A peroxisomal long-chain Acyl-CoA synthetase from Glycine max involved in lipid degradation. PLoS ONE, 2014, 9(7): e100144.
Song SK#, Hou WS#, Godo I#, Wu CX, Yu Y, Matityahu I, Hacam Y, Sun S, Han TF*, Amir R*. Soybean seeds expressing feedback-insensitive cystathionine γ-synthase exhibit higher content of methionine. Journal of Experimental Botany, 2013, 64(7): 1917-1926