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Microstructural and physiological responses to cadmium stress under different nitrogen levels in Populus cathayana females and males

机译:杨树Cathayana女性和雄性不同氮水平下镉胁迫的微观结构和生理反应

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摘要

Although increasing attention has been paid to the relationships between heavy metal and nitrogen (N) availability, the mechanism underlying adaptation to cadmium (Cd) stress in dioecious plants has been largely overlooked. This study examined Cd accumulation, translocation and allocation among tissues and cellular compartments in Populus cathayana Rehder females and males. Both leaf Cd accumulation and root-to-shoot Cd translocation were significantly greater in females than in males under a normal N supply, but they were reduced in females and enhanced in males under N deficiency. The genes related to Cd uptake and translocation, HMA2, YSL2 and ZIP2, were strongly induced by Cd stress in female roots and in males under a normal N supply. Cadmium largely accumulated in the leaf blades of females and in the leaf veins of males under a normal N supply, while the contrary was true under N deficiency. Furthermore, Cd was mainly distributed in the leaf epidermis and spongy tissues of males, and in the leaf palisade tissues of females. Nitrogen deficiency increased Cd allocation to the spongy tissues of female leaves and to the palisade tissues of males. In roots, Cd was preferentially distributed to the epidermis and cortices in both sexes, and also to the vascular tissues of females under a normal N supply but not under N deficiency. These results suggested that males possess better Cd tolerance compared with females, even under N deficiency, which is associated with their reduced root-to-shoot Cd translocation, specific Cd distribution in organic and/or cellular compartments, and enhanced antioxidation and ion homeostasis. Our study also provides new insights into engineering woody plants for phytoremediation.
机译:虽然对重金属和氮气(N)可用性之间的关系增加了越来越长的关注,但在大型植物中适应对镉(CD)胁迫的机制已经很大程度上被忽略了。本研究检测了杨树Cathayana Rehder女性和雄性组织和细胞室中的CD积累,易位和分配。叶片Cd累积和根到拍摄的CD易位在女性中比在正常N供应下的男性中显着更大,但它们在雌性中减少并在N缺乏下的男性中增强。与CD摄取和易位,HMA2,YSL2和ZIP2相关的基因被雌性根部的CD胁迫和正常N供应下的母体中的CD胁迫强烈诱导。镉在雌性的叶片和雌性的叶片下累积在正常的n供应下,而N缺乏相反是如此。此外,CD主要分布在叶片表皮和男性的海绵组织中,并在女性的叶子撑杆菌组织中。氮缺乏症对女性叶子的海绵组织和雄性肉体组织的CD分配增加。在根中,CD优先分发到两性的表皮和皮质,也是在正常的N供应下的雌性的血管组织,但不在N缺乏下。这些结果表明,与雌性相比,雄性也具有更好的CD耐受性,即使在N缺乏下,与其在有机和/或细胞室中的细胞和/或细胞室中的特异性CD分布以及增强的抗氧化和离子稳态相关。我们的研究还为工程木质植物提供了新的洞察力。

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  • 来源
    《Tree Physiology》 |2020年第1期|共16页
  • 作者单位

    Hangzhou Normal Univ Coll Life &

    Environm Sci Hangzhou 310036 Peoples R China;

    Hangzhou Normal Univ Coll Life &

    Environm Sci Hangzhou 310036 Peoples R China;

    Hangzhou Normal Univ Coll Life &

    Environm Sci Hangzhou 310036 Peoples R China;

    Hangzhou Normal Univ Coll Life &

    Environm Sci Hangzhou 310036 Peoples R China;

    Univ Helsinki Dept Agr Sci Viikki Plant Sci Ctr POB 27 FI-00014 Helsinki Finland;

    Estonian Univ Life Sci Inst Agr &

    Environm Sci Kreutzwaldi 1 EE-51006 Tartu Estonia;

    Hangzhou Normal Univ Coll Life &

    Environm Sci Hangzhou 310036 Peoples R China;

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

    Cd distribution; dioecy; nitrogen level; sequestration; sexual differences;

    机译:CD分布;Diocy;氮水平;封存;性差异;

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