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首页> 外文期刊>The Plant Cell >The Systems Architecture of Molecular Memory in Poplar after Abiotic Stress
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The Systems Architecture of Molecular Memory in Poplar after Abiotic Stress

机译:非生物应力后杨树分子仪的系统体系结构

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摘要

Throughout the temperate zones, plants face combined drought and heat spells in increasing frequency and intensity. Here, we compared periodic (intermittent, i.e., high-frequency) versus chronic (continuous, i.e., high-intensity) drought-heat stress scenarios in gray poplar (Populus x canescens) plants for phenotypic and transcriptomic effects during stress and after recovery. Photosynthetic productivity after stress recovery exceeded the performance of poplar trees without stress experience. We analyzed the molecular basis of this stress-related memory phenotype and investigated gene expression responses across five major tree compartments including organs and wood tissues. For each of these tissue samples, transcriptomic changes induced by the two stress scenarios were highly similar during the stress phase but strikingly divergent after recovery. Characteristic molecular response patterns were found across tissues but involved different genes in each tissue. Only a small fraction of genes showed similar stress and recovery expression profiles across all tissues, including type 2C protein phosphatases, the LATE EMBRYOGENESIS ABUNDANT PROTEIN4-5 genes, and homologs of the Arabidopsis (Arabidopsis thaliana) transcription factor HOMEOBOX7. Analysis of the predicted transcription factor regulatory networks for these genes suggested that a complex interplay of common and tissue-specific components contributes to the coordination of post-recovery responses to stress in woody plants.
机译:在整个温带区域,植物面部相结合的干旱和热法术在增加频率和强度。在此,我们比较了灰色杨树(杨树X型)植物的周期性(间歇,即高强度)与慢性(连续,即高强度)干旱热应激情景,用于应力和恢复后的表型和转录组效应。压力恢复后的光合生产力超过杨树树的性能而没有压力经验。我们分析了这种应力相关的记忆表型的分子基础,并在包括器官和木组织中的五个主要树木隔层中研究了基因表达反应。对于这些组织样品中的每一个,两个应力场景诱导的转录组变化在应力相期间高度相似,但在恢复后显着发散。在组织中发现特征分子反应模式,但涉及每个组织中的不同基因。只有一小部分基因显示出跨所有组织的相似应激和恢复表达谱,包括2C型蛋白质磷酸酶,晚期胚胎发生丰富的蛋白质4-5基因,以及拟南芥的同源物(拟南芥)转录因子Homeobox7。对这些基因的预测转录因子调节网络的分析表明,常见和组织特异性组分的复杂相互作用有助于协调回收率对木质植物中的应力的反应。

著录项

  • 来源
    《The Plant Cell》 |2019年第2期|共22页
  • 作者单位

    German Res Ctr Environm Hlth Inst Biochem Plant Pathol Helmholtz Zentrum Munchen D-85764 Neuherberg Germany;

    German Res Ctr Environm Hlth Helmholtz Zentrum Munchen Plant Genome &

    Syst Biol D-85764 Neuherberg Germany;

    German Res Ctr Environm Hlth Helmholtz Zentrum Munchen Plant Genome &

    Syst Biol D-85764 Neuherberg Germany;

    German Res Ctr Environm Hlth Inst Biochem Plant Pathol Res Unit Environm Simulat Helmholtz Zentrum Munchen D-85764 Neuherberg Germany;

    German Res Ctr Environm Hlth Inst Biochem Plant Pathol Res Unit Environm Simulat Helmholtz Zentrum Munchen D-85764 Neuherberg Germany;

    Univ Antwerp Lab Integrated Mol Plant Res B-2020 Antwerp Belgium;

    German Res Ctr Environm Hlth Inst Biochem Plant Pathol Res Unit Environm Simulat Helmholtz Zentrum Munchen D-85764 Neuherberg Germany;

    Univ Antwerp Lab Integrated Mol Plant Res B-2020 Antwerp Belgium;

    Univ Antwerp Lab Integrated Mol Plant Res B-2020 Antwerp Belgium;

    Max Planck Inst Plant Breeding Res Max Planck Genome Ctr Cologne D-50829 Cologne Germany;

    Univ Innsbruck Inst Ion Phys &

    Appl Phys A-6020 Innsbruck Austria;

    German Res Ctr Environm Hlth Helmholtz Zentrum Munchen Plant Genome &

    Syst Biol D-85764 Neuherberg Germany;

    German Res Ctr Environm Hlth Inst Biochem Plant Pathol Helmholtz Zentrum Munchen D-85764 Neuherberg Germany;

    Fac Biol BIOSS Ctr Biol Signalling Studies Ctr Biol Syst Anal Inst Biol Mol Plant Physiol 2 D-79104 Freiburg Germany;

    German Res Ctr Environm Hlth Helmholtz Zentrum Munchen Plant Genome &

    Syst Biol D-85764 Neuherberg Germany;

    German Res Ctr Environm Hlth Inst Biochem Plant Pathol Res Unit Environm Simulat Helmholtz Zentrum Munchen D-85764 Neuherberg Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物细胞学;
  • 关键词

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