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Physiological and metabolic responses of Salix sinopurpurea and Salix suchowensis to drought stress

机译:SALIX SINOPORPURPUREA和SALIX SUSHOWensis对干旱胁迫的生理和代谢反应

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Key message Physiological and metabolic analysis showed the difference in drought tolerance and revealed the common and specific metabolic regulations in Salix sinopurpurea and Salix suchowensis. Willows (Salix spp.) are important woody plants as promising sources for sustainable and renewable biomass. However, drought is highly detrimental to their growth and development. Deciphering the adaptation mechanism of willows to drought will provide a theoretical basis for the cultivation of drought-tolerant varieties. In this work, we investigated the physiological and metabolic responses to drought stress in Salix sinopurpurea and Salix suchowensis. The drought experiment was conducted on clonal plants from cuttings of the two willow species under greenhouse conditions. S. sinopurpurea exhibited higher drought tolerance, as evidenced by lower growth reduction, and higher leaf relative water content, water use efficiency and net photosynthesis rate than those of S. suchowensis under the same drought conditions. Metabolic profiling identified 67 and 64 differentially accumulated metabolites in S. sinopurpurea and S. suchowensis, respectively. These metabolites function as compatible solutes and energy reserves and in antioxidant protection to defend against drought stress. Carbohydrate, amino acid and lipid metabolic pathways were central in the metabolic regulations of the drought response in the two willow species. The accumulation of aspartate, glutamate, serine, threonine, and sedoheptulose particularly in S. sinopurpurea might equip this species with drought tolerance. Meanwhile, phenylalanine and phytosterols were specifically inhibited in S. suchowensis, which might be associated with its susceptibility to drought stress. Taken together, these results provide a framework for better understanding the metabolic responses of willow to drought stress.
机译:关键消息生理和代谢分析显示耐旱性差异,并揭示了Salix Sinopurpurea和Salix SupoWensis中的常见和特异性代谢法规。 Willows(Salix SPP。)是重要的木质植物,作为可持续和可再生生物量的有希望的来源。然而,干旱对他们的增长和发展非常有害。将柳树的适应机构解构到干旱将为耐旱品种的培养提供理论依据。在这项工作中,我们研究了Salix Sinopurpurea和Salix SupoWensis的生理和代谢反应。干旱实验在温室条件下的两种杨柳种类的克隆植物上进行。 S. Sinopurpurea表现出更高的干旱耐受性,如较低的生长减少,叶片相对含水量,水使用效率和净光合率比同样的干旱条件下的净光合率较高。代谢分析分别确定了S.Inopurpurea和S. Supovensis的67和64次差异累积的代谢物。这些代谢物用作兼容的溶质和能量储备以及抗氧化剂保护,以防御干旱胁迫。碳水化合物,氨基酸和脂质代谢途径是两种杨柳物种的干旱反应的代谢法规中的中心。特别是在S. Sinopurpurea的Aspharate,谷氨酸,丝氨酸,苏氨酸和Sedoheptulose的积累可以用耐旱性配备该物种。同时,苯丙氨酸和植物甾醇在S.诸如Supovensis中被特异性抑制,这可能与其对干旱胁迫的易感性相关。总之,这些结果提供了一个框架,以便更好地理解柳树的代谢响应到干旱胁迫。

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  • 来源
    《Trees. Structure and Function》 |2020年第2期|共15页
  • 作者单位

    Chinese Acad Forestry State Key Lab Tree Genet &

    Breeding Key Lab Tree Breeding &

    Cultivat Natl Forestry &

    Grassland Adm Res Inst Forestry Beijing 100091 Peoples R China;

    Chinese Acad Forestry State Key Lab Tree Genet &

    Breeding Key Lab Tree Breeding &

    Cultivat Natl Forestry &

    Grassland Adm Res Inst Forestry Beijing 100091 Peoples R China;

    Chinese Acad Forestry Expt Ctr Forestry North China Beijing 102300 Peoples R China;

    Chinese Acad Forestry State Key Lab Tree Genet &

    Breeding Key Lab Tree Breeding &

    Cultivat Natl Forestry &

    Grassland Adm Res Inst Forestry Beijing 100091 Peoples R China;

    Chinese Acad Forestry State Key Lab Tree Genet &

    Breeding Key Lab Tree Breeding &

    Cultivat Natl Forestry &

    Grassland Adm Res Inst Forestry Beijing 100091 Peoples R China;

    Chinese Acad Forestry State Key Lab Tree Genet &

    Breeding Key Lab Tree Breeding &

    Cultivat Natl Forestry &

    Grassland Adm Res Inst Forestry Beijing 100091 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;
  • 关键词

    Willow; Drought physiology; Metabolomics; Compatible solutes; Antioxidants;

    机译:杨柳;干旱生理学;代谢组合;兼容溶质;抗氧化剂;

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