# first author; * corresponding author
wei z#, and li j*. (2020) regulation of brassinosteroid homeostasis in higher plants. frontiers in plant science 11, 583622.
cui y#, hu c, zhu y, cheng k, li x, wei z, xue l, lin f, shi h, yi j, hou s, he k, li j, gou x*. (2018). cik receptor kinases determine cell fate specification during early anther development in arabidopsis. plant cell 30: 2383-2401.
wei z#, and li j*. (2018). receptor-like protein kinases: key regulators controlling root hair development in arabidopsis thaliana. journal of integrative plant biology 60(9), 841-850.
hu c#, zhu y, cui y, cheng k, liang w, wei z, zhu m, yin h, zeng l, xiao y, lv m, yi j, hou s, he k, li j, gou x*. (2018). a group of receptor kinases are essential for clavata signaling to maintain stem cell homeostasis. nature plants 4: 205-211.
wei z#, yuan t, tarkowská d, kim j, nam hg, novák o, he k, gou x, and li j*. (2017). brassinosteroid biosynthesis is modulated via a transcription factor cascade of cog1, pif4, and pif5. plant physiology 174(2), 1260-1273.
wei z#, li j*. (2017). serks, 拟南芥中一组参与多条细胞信号传导途径的共受体. (serks, shared co-receptors in multiple cell signaling pathways in arabidopsis) (in chinese). 中国科学: 生命科学(scientia sinica vitae) 47, 789-797.
wang h#, wei z, li j*, and wang x*. (2017). 9-brassinosteroids. hormone metabolism and signaling in plants. j. li, c. li and s. m. smith, academic press: 291-326.
wei z#, and li j*. (2016). brassinosteroids regulate root growth, development, and symbiosis. molecular plant 9, 86-100.
wei z#, gou x, li j*. (2016). brassinosteroids. els, 1-11. in: els. john wiley & sons, ltd: chichester. doi: 10.1002/9780470015902.a0020092.pub2.
ou y#, lu x, zi q, xun q, zhang j, wu y, shi h, wei z, zhao b, zhang x, he k, gou x, li c and li j*. (2016) rgf1 insensitive 1 to 5, a group of lrr receptor-like kinases, are essential for the perception of root meristem growth factor 1 in arabidopsis thaliana. cell research 26, 686-698.
du j#, yin h, zhang s, wei z, zhao b, zhang j, gou x, lin h, li j*. (2012) somatice embryogenesis receptor kinases control root development mainly via brassinosteroid-independent actions in arabidopsis thaliana. journal of integrative plant biology 54(6), 388-399.
wei z#, li j*. (2011). 受体激酶介导的油菜素内酯信号转导途径. (receptor kinases mediated brassinosteroid signal transduction in plants) (in chinese).生命科学(chinese bulletin of life sciences) 23(11), 1106-1113.