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Autoregulation of RCO by Low-Affinity Binding Modulates Cytokinin Action and Shapes Leaf Diversity

Curr Biol.. 2019; 
Hajheidari M1, Wang Y1, Bhatia N1, Vuolo F1, Franco-Zorrilla JM2, Karady M3, Mentink RA1, Wu A1, Oluwatobi BR1, Müller B4, Dello Ioio R5, Laurent S1, Ljung K3, Huijser P1, Gan X1, Tsiantis M6.
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Gene Synthesis To understand the possible role of cytokinin signaling in the regulation of growth, the coding sequence of ARR1ΔDDK, (synthesized by Genscript LtD, Hong Kong), was cloned downstream of the RCO promoter and upstream of the RCO terminator in the pBJ36 intermediate vector using XmaI and BamHI sites.  Get A Quote

摘要

Mechanisms through which the evolution of gene regulation causes morphological diversity are largely unclear. The tremendous shape variation among plant leaves offers attractive opportunities to address this question. In cruciferous plants, the REDUCED COMPLEXITY (RCO) homeodomain protein evolved via gene duplication and acquired a novel expression domain that contributed to leaf shape diversity. However, the molecular pathways through which RCO regulates leaf growth are unknown. A key question is to identify genome-wide transcriptional targets of RCO and the DNA sequences to which RCO binds. We investigate this question using Cardamine hirsuta, which has complex leaves, and its relative Arabidopsis thaliana, w... More

关键词

RCO; REDUCED COMPLEXITY; cis-regulatory evolution; complex leaves; cytokinin; evo-devo; leaf shape; low-affinity binding sites; plant homeobox gene