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The Arabidopsis Root Tip (Phospho)Proteomes at Growth-Promoting versus Growth-Repressing Conditions Reveal Novel Root Growth Regulators

机译:拟南芥根尖(磷酸)促进促进与生长抑制条件的蛋白质蛋白酶揭示了新的根生长调节剂

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摘要

Auxin plays a dual role in growth regulation and, depending on the tissue and concentration of the hormone, it can either promote or inhibit division and expansion processes in plants. Recent studies have revealed that, beyond transcriptional reprogramming, alternative auxin-controlled mechanisms regulate root growth. Here, we explored the impact of different concentrations of the synthetic auxin NAA that establish growth-promoting and -repressing conditions on the root tip proteome and phosphoproteome, generating a unique resource. From the phosphoproteome data, we pinpointed (novel) growth regulators, such as the RALF34-THE1 module. Our results, together with previously published studies, suggest that auxin, H+-ATPases, cell wall modifications and cell wall sensing receptor-like kinases are tightly embedded in a pathway regulating cell elongation. Furthermore, our study assigned a novel role to MKK2 as a regulator of primary root growth and a (potential) regulator of auxin biosynthesis and signalling, and suggests the importance of the MKK2 Thr31 phosphorylation site for growth regulation in the Arabidopsis root tip.
机译:植物蛋白在生长调节中起双重作用,并且根据激素的组织和浓度,它可以促进或抑制植物中的分裂和膨胀过程。最近的研究表明,除了转录重编程,替代的疾病控制机制超出了根本生长。在此,我们探讨了不同浓度的合成毒素NAA的影响,该植入性促进的生长促进和磷酸磷蛋白酶物中的作用,产生了独特的资源。从磷脂蛋白酶组数据中,我们精确定位(新)生长调节剂,例如RALF34-THE1模块。我们的结果与先前公布的研究表明,养蛋白,H + -ATP酶,细胞壁修饰和细胞壁样感受体样激酶紧紧地嵌入在途径调节细胞伸长中。此外,我们的研究将MKK2的新作用分配为原发性根生长的调节因子,并表明MKK2 TH1磷酸化位点对拟南芥根尖的生长调节的重要性。

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