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The Emerging Role of Reactive Oxygen Species Signaling during Lateral Root Development

机译:侧根发育过程中活性氧信号的新兴作用

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Overall root architecture is the combined result of primary and lateral root growth and is influenced by both intrinsic genetic programs and external signals. One of the main questions for root biologists is how plants control the number of lateral root primordia and their emergence through the main root. We recently identified S-phase kinase-associated protein2 (SKP2B) as a new early marker for lateral root development. Here, we took advantage of its specific expression pattern in Arabidopsis (Arabidopsis thaliana) in a cell-sorting and transcriptomic approach to generate a lateral root-specific cell sorting SKP2B data set that represents the endogenous genetic developmental program. We first validated this data set by showing that many of the identified genes have a function during root growth or lateral root development. Importantly, genes encoding peroxidases were highly represented in our data set. Thus, we next focused on this class of enzymes and showed, using genetic and chemical inhibitor studies, that peroxidase activity and reactive oxygen species signaling are specifically required during lateral root emergence but, intriguingly, not for primordium specification itself.
机译:总体根结构是初级和侧根生长的综合结果,并受内在遗传程序和外部信号的影响。根生物学家面临的主要问题之一是植物如何控制侧根原基的数量及其通过主根的出苗。我们最近确定S期激酶相关蛋白2(SKP2B)作为侧根发育的新的早期标记。在这里,我们利用其在拟南芥(Arabidopsis thaliana)中的特定表达模式,通过细胞分选和转录组学方法来生成侧向根特定细胞分选的SKP2B数据集,该数据集代表了内源性遗传发育程序。我们首先通过显示许多已鉴定的基因在根系生长或侧向根系发育过程中具有功能来验证该数据集。重要的是,编码过氧化物酶的基因在我们的数据集中具有很高的代表性。因此,我们接下来将重点放在这类酶上,并通过遗传和化学抑制剂研究表明,过氧化物酶活性和活性氧信号是在侧根出现期间特别需要的,但有趣的是,原基体本身并不需要。

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