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Plastic response of tracheids in Pinus pinaster in a water-limited environment : adjusting lumen size instead of wall thickness

机译:缺水环境中松树中管胞的塑性响应:调节管腔大小而不是壁厚

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摘要

The formation of wood results from cambial activity and its anatomical properties reflect the variability of environmental conditions during the growing season. Recently, it was found that wood density variations in conifers growing under cold-limited environment result from the adjustment of cell wall thickness (CWT) to temperature. Additionally, it is known that intra-annual density fluctuations (IADFs) are formed in response to precipitation after the summer drought. Although IADFs are frequent in Mediterranean conifers no study has yet been conducted to determine if these structures result from the adjustment of lumen diameter (LD) or CWT to soil water availability. Our main objective is to investigate the intra-ring variation of wood anatomical features (LD and CWT) in Pinus pinaster Ait. growing under a water-limited environment. We compared the tracheidograms of LD and CWT for the years 2010-2013 in P. pinaster growing in the west coast of Portugal. Our results suggest a close association between LD and soil moisture content along the growing season, reinforcing the role of water availability in determining tracheid size. Compared with CWT, LD showed a higher intra- and inter-annual variability suggesting its strong adjustment value to variations in water availability. The formation of a latewood IADF appears to be predisposed by higher rates of cell production in spring and triggered by early autumn precipitation. Our findings reinforce the crucial role of water availability on cambial activity and wood formation in Mediterranean conifers, and emphasize the high plasticity of wood anatomical features under Mediterranean climate.
机译:木材的形成来自于冈比亚的活动,其解剖学特征反映了生长期中环境条件的变化。最近,发现在寒冷的环境下生长的针叶树的木材密度变化是由于细胞壁厚度(CWT)随温度的变化而引起的。另外,已知在夏季干旱之后响应于降水形成年内密度波动(IADF)。尽管IADF在地中海针叶树中很常见,但尚未进行研究来确定这些结构是否是通过调整管腔直径(LD)或CWT来调节土壤水分利用率的结果。我们的主要目的是调查松树针叶木材的木材解剖特征(LD和CWT)在环内的变化。在缺水的环境中生长。我们比较了在葡萄牙西海岸生长的P. pinaster的2010-2013年LD和CWT的气管图。我们的结果表明,LD和生长季土壤水分含量之间存在密切联系,从而增强了水分在确定气管大小方面的作用。与CWT相比,LD的年内和年际变化较大,表明其对可用水量变化具有很强的调整价值。晚春IADF的形成似乎是由春季较高的细胞产量和秋季早期的降水引发的。我们的发现加强了水的可利用性对地中海针叶树的层层活动和木材形成的关键作用,并强调了地中海气候下木材解剖特征的高可塑性。

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