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首页> 外文期刊>Trees. Structure and Function >Higher needle anatomic plasticity is related to better water-use efficiency and higher resistance to embolism in fast-growingPinus pinasterfamilies under water scarcity
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Higher needle anatomic plasticity is related to better water-use efficiency and higher resistance to embolism in fast-growingPinus pinasterfamilies under water scarcity

机译:较高的针解剖塑性与在水资源短缺下的快速生长的节目植物中更好的水利用效率和对栓塞的更高抗性有关

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Key Message Needle anatomic plasticity enables fast-growing maritime pine trees to cope with water limitations by enhancing both water-use efficiency and embolism resistance. Maritime pine is a major forest tree grown for wood production in Southern Europe. A breeding program for the selection of fast-growing varieties was established in the 1960s, in France. In the context of climate change, the magnitude of phenotypic plasticity is a key issue for the prediction of putative decreases in productivity in the improved genetic material. We characterized the phenotypic plasticity of anatomical and physiological traits in two families with contrasting growth rates, under different water regimes, at the juvenile stage. An analysis of 38 traits showed that the fastest growing family had the greatest phenotypic plasticity for morphological, anatomic, chemical and physiological traits, enabling it to increase its water use efficiency and embolism resistance in response to water deficit. The observed modifications to the extravascular (proportion of spongy parenchyma in needles) and vascular (xylem in the needles and stem) compartments in response to water constraints were consistent with a higher water use efficiency and greater embolism resistance. The ability to optimize meresis and auxesis according to environmental conditions during needle development could be related to growth performance over time in different environmental conditions. These results suggest that selection for growth in maritime pine leads to the selection of individuals with greater phenotypic plasticity related to higher performances in non-limited conditions.
机译:关键信息:针叶解剖可塑性使快速生长的海洋松树能够通过提高水分利用效率和抗栓塞能力来应对水分限制。海松是欧洲南部一种主要的林木,用于木材生产。20世纪60年代,法国建立了一个选择快速生长品种的育种计划。在气候变化的背景下,表型可塑性的大小是预测改良遗传物质生产力下降的关键问题。我们对两个家系在幼年期不同水分条件下的解剖和生理性状的表型可塑性进行了表征,并对其生长速率进行了对比。对38个性状的分析表明,生长最快的家系在形态、解剖、化学和生理性状上具有最大的表型可塑性,使其能够提高水分利用效率和抗栓塞能力,以应对缺水。观察到的对血管外(针叶中海绵状薄壁组织的比例)和血管(针叶和茎中木质部)隔室的水分限制的改变与更高的水分利用效率和更大的抗栓塞性一致。在针头发育过程中,根据环境条件优化分泌和分泌的能力可能与不同环境条件下的生长性能有关。这些结果表明,对海松生长的选择导致选择具有更大表型可塑性的个体,这与在非限制条件下的更高表现有关。

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