首页> 外文期刊>Planta: An International Journal of Plant Biology >Apical meristem exhaustion during determinate primary root growth in the moots koom 1 mutant of Arabidopsis thaliana
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Apical meristem exhaustion during determinate primary root growth in the moots koom 1 mutant of Arabidopsis thaliana

机译:拟南芥拟人无性系koom 1突变体确定的初生根生长过程中的顶端分生组织衰竭

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摘要

An indeterminate developmental program allows plant organs to grow continuously by maintaining functional meristems over time. The molecular mechanisms involved in the maintenance of the root apical meristem are not completely understood. We have identified a new Arabidopsis thaliana mutant named moots koom 1 (mko1) that showed complete root apical meristem exhaustion of the primary root by 9 days post-germination. MKO1 is essential for maintenance of root cell proliferation. In the mutant, cell division is uncoupled from cell growth in the region corresponding to the root apical meristem. We established the sequence of cellular events that lead to meristem exhaustion in this mutant. Interestingly, the SCR and WOX5 promoters were active in the mko1 quiescent center at all developmental stages. However, during meristem exhaustion, the mutant root tip showed defects in starch accumulation in the columella and changes in auxin response pattern. Therefore, contrary to many described mutants, the determinate growth in mko1 seedlings does not appear to be a consequence of incorrect establishment or affected maintenance of the quiescent center but rather of cell proliferation defects both in stem cell niche and in the rest of the apical meristem. Our results support a model whereby the MKO1 gene plays an important role in the maintenance of the root apical meristem proliferative capacity and indeterminate root growth, which apparently acts independently of the SCR/SHR and WOX5 regulatory pathways.
机译:不确定的发育计划允许植物器官通过随着时间的推移保持功能性分生组织而持续生长。维持根尖状分生组织所涉及的分子机制尚不完全清楚。我们已经确定了一个新的拟南芥突变体,名为moots koom 1(mko1),该突变体在发芽后9天显示出完全根尖的分生组织。 MKO1对于维持根细胞增殖至关重要。在突变体中,细胞分裂与对应于根尖分生组织的区域中的细胞生长脱钩。我们建立了导致该突变体分生组织耗尽的细胞事件的序列。有趣的是,SCR和WOX5启动子在所有发育阶段均在mko1静止中心活跃。然而,在分生组织耗尽期间,突变体的根尖显示出小肠中淀粉积累的缺陷和生长素应答模式的改变。因此,与描述的许多突变体相反,mko1幼苗中确定的生长似乎不是静态中心的正确建立或维护不正确的结果,而是干细胞生态位和顶端分生组织中细胞增殖缺陷的结果。 。我们的结果支持了一个模型,其中MKO1基因在维持根尖分生组织的增殖能力和不确定的根生长中起着重要作用,后者显然独立于SCR / SHR和WOX5调控途径。

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