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首页> 外文期刊>Frontiers in Plant Science >A Complex Molecular Interplay of Auxin and Ethylene Signaling Pathways Is Involved in Arabidopsis Growth Promotion by Burkholderia phytofirmans PsJN
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A Complex Molecular Interplay of Auxin and Ethylene Signaling Pathways Is Involved in Arabidopsis Growth Promotion by Burkholderia phytofirmans PsJN

机译:生长素和乙烯信号通路的复杂分子相互作用涉及拟南芥 PsJN促进拟南芥的生长。

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Modulation of phytohormones homeostasis is one of the proposed mechanisms to explain plant growth promotion induced by beneficial rhizobacteria (PGPR). However, there is still limited knowledge about the molecular signals and pathways underlying these beneficial interactions. Even less is known concerning the interplay between phytohormones in plants inoculated with PGPR. Auxin and ethylene are crucial hormones in the control of plant growth and development, and recent studies report an important and complex crosstalk between them in the regulation of different plant developmental processes. The objective of this work was to study the role of both hormones in the growth promotion of Arabidopsis thaliana plants induced by the well-known PGPR Burkholderia phytofirmans PsJN. For this, the spatiotemporal expression patterns of several genes related to auxin biosynthesis, perception and response and ethylene biosynthesis were studied, finding that most of these genes showed specific transcriptional regulations after inoculation in roots and shoots. PsJN-growth promotion was not observed in Arabidopsis mutants with an impaired ethylene ( ein2-1 ) or auxin ( axr1–5 ) signaling. Even, PsJN did not promote growth in an ethylene overproducer ( eto2 ), indicating that a fine regulation of both hormones signaling and homeostasis is necessary to induce growth of the aerial and root tissues. Auxin polar transport is also involved in growth promotion, since PsJN did not promote primary root growth in the pin2 mutant or under chemical inhibition of transport in wild type plants. Finally, a key role for ethylene biosynthesis was found in the PsJN-mediated increase in root hair number. These results not only give new insights of PGPR regulation of plant growth but also are also useful to understand key aspects of Arabidopsis growth control.
机译:植物激素稳态的调节是解释由有益根瘤菌(PGPR)诱导的植物生长促进的机制之一。但是,关于这些有益相互作用的分子信号和途径的知识仍然有限。关于PGPR接种植​​物中植物激素之间相互作用的了解甚少。生长素和乙烯是控制植物生长和发育的关键激素,最近的研究报道了它们之间在调节不同植物发育过程中的重要而复杂的串扰。这项工作的目的是研究两种激素在著名的PGPR伯克霍尔德氏菌植物PsJN诱导的拟南芥植物的生长促进中的作用。为此,研究了与生长素生物合成,知觉和应答以及乙烯生物合成相关的几个基因的时空表达模式,发现这些基因中的大多数在根和芽中接种后显示出特定的转录调控。在具有受损的乙烯(ein2-1)或生长素(axr1-5)信号传导的拟南芥突变体中未观察到PsJN的生长。甚至,PsJN并没有促进乙烯过量生产者(eto2)的生长,表明对激素信号传导和体内稳态的精细调节对于诱导气生和根组织的生长是必需的。生长素极地运输也参与了生长促进,因为PsJN不会在pin2突变体中或在化学抑制野生型植物中的运输过程中促进初级根生长。最后,在PsJN介导的根毛数增加中发现了乙烯生物合成的关键作用。这些结果不仅提供了PGPR调节植物生长的新见解,而且对于了解拟南芥生长控制的关键方面也很有用。

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