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首页> 外文期刊>Scientific reports. >Molecular and physiological responses in roots of two full-sib poplars uncover mechanisms that contribute to differences in partial submergence tolerance
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Molecular and physiological responses in roots of two full-sib poplars uncover mechanisms that contribute to differences in partial submergence tolerance

机译:两个全同胞杨树根部的分子和生理反应揭示了导致部分淹没耐受性差异的机制

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Poplar is a major afforestation tree species in flood-prone areas. Here, we compared molecular and physiological responses in the roots of two full-sib poplar clones, LS1 (flood-tolerant) and LS2 (flood-susceptive), subjected to stagnant flooding using transcript and metabolite profiling. LS1 displayed less phenotypic damage and superior leaf gas exchange and plant growth compared with those of LS2. We concluded that three characteristics might contribute to the differences in flood tolerance between LS1 and LS2. First, fermentation was initiated through lactic dehydrogenation in LS1 roots under flooding and subsequently dominated by alcohol fermentation. However, lactic dehydrogenase was persistently active in flooded LS2. Second, 13 differentially expressed genes associated with energy and O2 consumption processes under soil flooding had lower transcript levels in LS1 than those in LS2, which might contribute to better energy-/O2-saving abilities and behaviours in flood-tolerant LS1 than those in flood-susceptible LS2 under hypoxic stress. Third, LS1 possessed increased reactive oxygen species scavenging abilities compared with those of LS2 under edaphic flooding. Our data are a valuable contribution to understanding the mechanisms involved in the flood tolerance of poplar.
机译:杨树是易发洪水地区的主要造林树种。在这里,我们比较了两个全同胞杨树无性系LS1(耐水)和LS2(耐水)的根系在转录和代谢物谱分析中均处于停滞状态的分子和生理响应。与LS2相比,LS1表现出较少的表型损伤,叶片气体交换和植物生长更出色。我们得出的结论是,三个特性可能会导致LS1和LS2之间的耐洪能力差异。首先,通过淹没在LS1根中的乳酸脱氢来启动发酵,然后以酒精发酵为主导。但是,乳酸脱氢酶在淹没的LS2中具有持久活性。其次,土壤淹没下13个与能量和O 2 消耗过程相关的差异表达基因在LS1中的转录水平低于在LS2中的转录水平,这可能有助于产生更好的能量-/ O 2

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