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首页> 外文期刊>Plant Physiology and Biochemistry >PLASTID MOVEMENT IMPAIRED1 mediates ABA sensitivity during germination and implicates ABA in light-mediated Chloroplast movements
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PLASTID MOVEMENT IMPAIRED1 mediates ABA sensitivity during germination and implicates ABA in light-mediated Chloroplast movements

机译:PLASTID MOVEMENT IMPAIRED1在发芽过程中介导ABA敏感性并将ABA参与光介导的叶绿体运动

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摘要

The plant hormone abscisic acid (ABA) controls many aspects of plant growth and development, including seed development, germination and responses to water-deficit stress. A complex ABA signaling network integrates environmental signals including water availability and light intensity and quality to fine-tune the response to a changing environment. To further define the regulatory pathways that control water-deficit and ABA responses, we carried out a gene-trap tagging screen for water-deficit-regulated genes in Arabidopsis thaliana. This screen identified PLASTID MOVEMENT IMPAIRED1 (PMI1), a gene involved in blue-light-induced chloroplast movement, as functioning in ABA-response pathways. We provide evidence that PMI1 is involved in the regulation of seed germination by ABA, acting upstream of the intersection between ABA and low-glucose signaling pathways. Furthermore, PMI1 participates in the regulation of ABA accumulation during periods of water deficit at the seedling stage. The combined phenotypes of pmi1 mutants in chloroplast movement and ABA responses indicate that ABA signaling may modulate chloroplast motility. This result was further supported by the detection of altered chloroplast movements in the ABA mutants aba1-6, aba2-1 and abi1-1.
机译:植物激素脱落酸(ABA)控制植物生长和发育的许多方面,包括种子发育,发芽和对缺水胁迫的响应。复杂的ABA信令网络集成了环境信号,包括水的可用性,光强度和质量,以微调对变化的环境的响应。为了进一步定义控制水分亏缺和ABA反应的调控途径,我们对拟南芥中水分亏缺调节基因进行了基因捕获标签筛选。该屏幕将PLASTID MOVEMENT IMPAIRED1(PMI1)(一种参与蓝光诱导的叶绿体运动的基因)确定为在ABA响应途径中起作用。我们提供的证据表明,PMI1参与了ABA种子萌发的调控,在ABA与低糖信号通路之间的交点上游起作用。此外,在苗期缺水期间,PMI1参与了ABA积累的调节。叶绿体运动和ABA反应中pmi1突变体的组合表型表明ABA信号传导可能调节叶绿体运动性。通过检测ABA突变体aba1-6,aba2-1和abi1-1中叶绿体运动的改变,进一步支持了该结果。

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