ELIGULUM-A Regulates Lateral Branch and Leaf Development in Barley

分生组织 生物 腋芽 突变体 普通大麦 器官发生 开枪 拟南芥 植物 大麦 基因 细胞生物学 遗传学 禾本科 组织培养 体外
作者
Ron J. Okagaki,Allison Haaning,Hatice Bilgiç,Shane Heinen,Arnis Druka,Micha Bayer,Robbie Waugh,Gary J. Muehlbauer
出处
期刊:Plant Physiology [Oxford University Press]
卷期号:176 (4): 2750-2760 被引量:24
标识
DOI:10.1104/pp.17.01459
摘要

The shoot apical and axillary meristems control shoot development, effectively influencing lateral branch and leaf formation. The barley (Hordeum vulgare) uniculm2 (cul2) mutation blocks axillary meristem development, and mutant plants lack lateral branches (tillers) that normally develop from the crown. A genetic screen for cul2 suppressors recovered two recessive alleles of ELIGULUM-A (ELI-A) that partially rescued the cul2 tillering phenotype. Mutations in ELI-A produce shorter plants with fewer tillers and disrupt the leaf blade-sheath boundary, producing liguleless leaves and reduced secondary cell wall development in stems and leaves. ELI-A is predicted to encode an unannotated protein containing an RNaseH-like domain that is conserved in land plants. ELI-A transcripts accumulate at the preligule boundary, the developing ligule, leaf margins, cells destined to develop secondary cell walls, and cells surrounding leaf vascular bundles. Recent studies have identified regulatory similarities between boundary development in leaves and lateral organs. Interestingly, we observed ELI-A transcripts at the preligule boundary, suggesting that ELI-A contributes to boundary formation between the blade and sheath. However, we did not observe ELI-A transcripts at the axillary meristem boundary in leaf axils, suggesting that ELI-A is not involved in boundary development for axillary meristem development. Our results show that ELI-A contributes to leaf and lateral branch development by acting as a boundary gene during ligule development but not during lateral branch development.
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