HEADLESS, aWUSCHELhomolog, uncovers novel aspects of shoot meristem regulation and leaf blade development inMedicago truncatula

截形苜蓿 分生组织 生物 拟南芥 突变体 植物 细胞生物学 腋芽 开枪 拟南芥 基因 遗传学 共生 外植体培养 体外 细菌
作者
Yingying Meng,Huan Liu,Hui Wang,Ye Liu,Butuo Zhu,Zuoyi Wang,Yaling Hou,Pengcheng Zhang,Jiangqi Wen,Hongshan Yang,Kirankumar S. Mysore,Jianghua Chen,Million Tadege,Lifang Niu,Hao Lin
出处
期刊:Journal of Experimental Botany [Oxford University Press]
卷期号:70 (1): 149-163 被引量:32
标识
DOI:10.1093/jxb/ery346
摘要

The formation and maintenance of the shoot apical meristem (SAM) are critical for plant development. However, the underlying molecular mechanism of regulating meristematic cell activity is poorly understood in the model legume Medicago truncatula. Using forward genetic approaches, we identified HEADLESS (HDL), a homolog of Arabidopsis WUSCHEL, required for SAM maintenance and leaf development in M. truncatula. Disruption of HDL led to disorganized specification and arrest of the SAM and axillary meristems, resulting in the hdl mutant being locked in the vegetative phase without apparent stem elongation. hdl mutant leaves are shorter in the proximal–distal axis due to reduced leaf length elongation, which resulted in a higher blade width/length ratio and altered leaf shape, uncovering novel phenotypes undescribed in the Arabidopsis wus mutant. HDL functions as a transcriptional repressor by recruiting MtTPL through its conserved WUS-box and EAR-like motif. Further genetic analysis revealed that HDL and STENOFOLIA (STF), a key regulator of M. truncatula lamina outgrowth, act independently in leaf development although HDL could recruit MtTPL in the same manner as STF does. Our results indicate that HDL has conserved and novel functions in regulating shoot meristems and leaf shape in M. truncatula, providing new avenues for understanding meristem biology and plant development.
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