代表性研究论文
Shen, Y.*, Zhang, J., Liu, Y., Liu, S., Liu, Z., Duan, Z., Wang, Z., Zhu, B., Guo, Y., Tian, Z.† 2018. DNA methylation footprints during soybean domestication and improvement. Genome Biol 19:128
Shen, Y.*, Liu, J., Geng, H., Zhang, J., Liu, Y., Zhang, H., Xing, S., Du, J.†, Ma, S.†, and Tian, Z.† (2018). De novo assembly of a Chinese soybean genome. Sci China Life Sci 61 : 871-884
Shen, Y.*, Zhou, Z.*, Wang, Z., Li, W., Fang, C., Wu, M., Ma, Y., Liu, T., Kong, L.A., Peng, D.L., Tian, Z.† 2014. Global dissection of alternative splicing in paleopolyploid soybean. Plant Cell 26: 996-10058
Zhang, F.*, Shen, Y.*, Sun, S., Guo, J., Li, C., Wu, C., Li, Q., Nian, H., Huang, X. †, Tian, Z.†, and Han, T.† 2014. Genome-wide gene expression analysis in a dwarf soybean mutant. Plant Genet Resour-C 12(S1):S70-S73
Fang C.*, Ma Y.*, Wu S.*, Liu Z., Wang Z., Yang R., Hu G., Zhou Z., Yu H., Zhang M., Pan Y., Zhou G., Ren H., Du W., Yan H., Wang Y., Han D., Shen Y., Liu S., Liu T., Zhang J., Qin H., Yuan J., Yuan X., Kong F., Liu B., Li J., Zhang Z.†, Wang G.†, Zhu B.†, and Tian Z.†. 2017. Genome-wide association studies dissect the genetic networks underlying agronomical traits in soybean. Genome Biol 18:161
Liu, T.*, Fang, C., Ma, Y., Shen, Y., Li, C.,Li, Q., Wang, M., Liu, S., Zhang, J., Zhou, Z., Yang, R., Wang, Z., Tian, Z.† 2016.Global investigation of the coevolution of MIRNA genes and microRNA targets during soybean domestication. Plant J 85: 396-409
Wang, Z.*, Zhou, Z.*, Liu, Y.*, Liu, T., Li, Q., Ji, Y., Li, C., Fang, C., Wang, M., Wu, M., Shen, Y., Tang, T.†, Ma, J.†, and Tian, Z.† 2015. Functional evolution of phosphatidylethanolamine-binding proteins in soybean and Arabidopsis. Plant Cell 27: 323-336
Zhou, Z.*, Jiang, Y.*, Wang Z.*, Gou Z.*, Lyu J.*, Li W.*, Yu Y., Shu L., Zhao Y., Ma Y., Fang C., Shen Y., Liu T., Li C., Li Q., Wu M., Wang M., Wu Y., Dong Y., Wan W., Wang X., Ding Z., Gao Y., Xiang H., Zhu B., Lee SH., Wang W..†, and Tian Z.† 2015. Resequencing 302 wild and cultivated accessions identifies genes related to domestication and improvement in soybean. Nature Biotechnol 33: 408–414
Fang, C.*, Li, C.*, Li, W., Wang, Z., Zhou, Z., Shen, Y., Wu, M., Wu, Y., Li, G., Kong, L.A., Liu, C., Jackson, S.A. †, and Tian, Z.† 2014. Concerted evolution of D1 and D2 to regulate chlorophyll degradation in soybean. Plant J 77: 700–712
Zhou, Z.*, Wang, Z.*, Li, W.*, Fang, C., Shen, Y., Li, C., Wu, Y., and Tian, Z† 2013. Comprehensive analyses of microRNA genes evolution in paleopolyploid soybean genome. Plant J 76: 332-344
Fang, C.*, Li, W.*, Li, G., Wang, Z., Zhou, Z., Ma, Y., Shen, Y., Li, C., Wu, Y., Zhu, B., Yang, W., and Tian, Z.† 2013. Cloning of Ln gene through combined approach of map-based cloning and association study in soybean. J Genet Genomics 40: 93-96