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The Maize Hairy Sheath Frayed1 (Hsf1) Mutation Alters Leaf Patterning through Increased Cytokinin Signaling

机译:玉米毛鞘磨损1(HSF1)突变通过增加的细胞素信号传导改变叶子图案化

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Leaf morphogenesis requires growth polarized along three axes-proximal-distal (P-D) axis, medial-lateral axis, and abaxial-adaxial axis. Grass leaves display a prominent P-D polarity consisting of a proximal sheath separated from the distal blade by the auricle and ligule. Although proper specification of the four segments is essential for normal morphology, our knowledge is incomplete regarding the mechanisms that influence P-D specification in monocots such as maize (Zea mays). Here, we report the identification of the gene underlying the semidominant, leaf patterning maize mutant Hairy Sheath Frayed1 (Hsf1). Hsf1 plants produce leaves with outgrowths consisting of proximal segments-sheath, auricle, and ligule-emanating from the distal blade margin. Analysis of three independent Hsf1 alleles revealed gain-of-function missense mutations in the ligand binding domain of the maize cytokinin (CK) receptor Z. mays Histidine Kinase1 (ZmHK1) gene. Biochemical analysis and structural modeling suggest the mutated residues near the CK binding pocket affect CK binding affinity. Treatment of the wild-type seedlings with exogenous CK phenocopied the Hsf1 leaf phenotypes. Results from expression and epistatic analyses indicated the Hsf1 mutant receptor appears to be hypersignaling. Our results demonstrate that hypersignaling of CK in incipient leaf primordia can reprogram developmental patterns in maize.
机译:叶形态发生需要沿三轴 - 近端 - 远端(P-D)轴,内侧侧轴和轴向轴偏振的生长。草叶显示出一个突出的P-D极性,由耳廓和拉伸的远端叶片分离的近端护套。虽然四个段的正确规格对于正常形态至关重要,但我们的知识对于影响单胶质(Zea Mays)等单极管中P-D规范的机制不完整。在这里,我们报告了半组织的基因鉴定,叶图案玉米致突变纹毛纹磨损1(HSF1)。 HSF1植物产生叶子,叶子具有由远端鞘,耳廓和从远端叶片边缘散发出来的近端的瓣膜。三个独立HSF1等位基因分析显示了玉米细胞蛋白(CK)受体Z的配体结合结构域中的功能性畸变突变。可以组合组氨酸激酶1(ZMHK1)基因。生物化学分析和结构建模表明CK结合口袋附近的突变残留物影响CK结合亲和力。用外源性CK处理野生型幼苗,HSF1叶表型HSF1叶片表型。表达和背景分析的结果表明HSF1突变受体似乎是过度的。我们的研究结果表明,初生叶原金中的CK的高度无碱性可以重新编程玉米的发育模式。

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