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A Maize Thiamine Auxotroph Is Defective in Shoot Meristem Maintenance

机译:玉米硫胺素营养缺陷型芽新芽组织的维持

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Plant shoots undergo organogenesis throughout their life cycle via the perpetuation of stem cell pools called shoot apical meristems (SAMs). SAM maintenance requires the coordinated equilibrium between stem cell division and differentiation and is regulated by integrated networks of gene expression, hormonal signaling, and metabolite sensing. Here, we show that the maize (Zea mays) mutant bladekiller1-R (blk1-R) is defective in leaf blade development and meristem maintenance and exhibits a progressive reduction in SAM size that results in premature shoot abortion. Molecular markers for stem cell maintenance and organ initiation reveal that both of these meristematic functions are progressively compromised in blk1-R mutants, especially in the inflorescence and floral meristems. Positional cloning of blk1-R identified a predicted missense mutation in a highly conserved amino acid encoded by thiamine biosynthesis2 (thi2). Consistent with chromosome dosage studies suggesting that blk1-R is a null mutation, biochemical analyses confirm that the wild-type THI2 enzyme copurifies with a thiazole precursor to thiamine, whereas the mutant enzyme does not. Heterologous expression studies confirm that THI2 is targeted to chloroplasts. All blk1-R mutant phenotypes are rescued by exogenous thiamine supplementation, suggesting that blk1-R is a thiamine auxotroph. These results provide insight into the role of metabolic cofactors, such as thiamine, during the proliferation of stem and initial cell populations.
机译:植物芽通过称为芽顶端分生组织(SAMs)的干细胞库的永存,在整个生命周期中经历器官发生。 SAM维持需要干细胞分裂与分化之间的协调平衡,并受基因表达,激素信号传导和代谢物传感的综合网络调控。在这里,我们显示了玉米(Zea mays)突变Bladekiller1-R(blk1-R)在叶片发育和分生组织维持方面存在缺陷,并且SAM尺寸逐渐减小,导致过早地流产。干细胞维持和器官启动的分子标记显示,这两个分生功能在blk1-R突变体中逐渐受到损害,尤其是在花序和花分生组织中。 blk1-R的位置克隆在硫胺素生物合成2(thi2)编码的高度保守的氨基酸中鉴定出预测的错义突变。与染色体剂量研究表明blk1-R为无效突变相一致,生化分析证实野生型THI2酶与硫胺素的噻唑前体共纯化,而突变酶不是。异源表达研究证实THI2靶向叶绿体。所有的blk1-R突变表型都通过外源硫胺素的补充得以挽救,这表明blk1-R是硫胺素营养缺陷型。这些结果提供了对代谢辅助因子(如硫胺素)在干细胞和初始细胞群增殖过程中的作用的了解。

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