首页> 美国卫生研究院文献>Frontiers in Plant Science >A 6-Year-Long Manipulation with Soil Warming and Canopy Nitrogen Additions does not Affect Xylem Phenology and Cell Production of Mature Black Spruce
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A 6-Year-Long Manipulation with Soil Warming and Canopy Nitrogen Additions does not Affect Xylem Phenology and Cell Production of Mature Black Spruce

机译:长达6年的土壤增温和冠层氮肥处理不会影响成熟黑云杉的木质部物候和细胞产生

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摘要

The predicted climate warming and increased atmospheric inorganic nitrogen deposition are expected to have dramatic impacts on plant growth. However, the extent of these effects and their interactions remains unclear for boreal forest trees. The aim of this experiment was to investigate the effects of increased soil temperature and nitrogen (N) depositions on stem intra-annual growth of two mature stands of black spruce [Picea mariana (Mill.) BSP] in Québec, QC, Canada. During 2008–2013, the soil around mature trees was warmed up by 4°C with heating cables during the growing season and precipitations containing three times the current inorganic N concentration were added by frequent canopy applications. Xylem phenology and cell production were monitored weekly from April to October. The 6-year-long experiment performed in two sites at different altitude showed no substantial effect of warming and N-depositions on xylem phenological phases of cell enlargement, wall thickening and lignification. Cell production, in terms of number of tracheids along the radius, also did not differ significantly and followed the same patterns in control and treated trees. These findings allowed the hypothesis of a medium-term effect of soil warming and N depositions on the growth of mature black spruce to be rejected.
机译:预计的气候变暖和大气无机氮沉积的增加将对植物生长产生巨大影响。但是,对于北方林木,这些影响的程度及其相互作用仍然不清楚。本实验的目的是研究加拿大魁北克省黑云杉[Picea mariana(Mill。)BSP]两个成熟林分的土壤温度和氮(N)沉积量增加对茎年内生长的影响。在2008–2013年期间,成熟树木周围的土壤在生长期用加热电缆加热了4°C,频繁的冠层施用增加了含有当前无机氮浓度三倍的降水。从四月到十月每周监测木质部的物候和细胞产生。在不同高度的两个地点进行的长达6年的实验表明,变暖和N沉积对木质部物候期的细胞增大,壁增厚和木质化没有实质性影响。就沿半径的气管数量而言,细胞产量也没有显着差异,并且在对照树和处理过的树中遵循相同的模式。这些发现使得关于土壤变暖和氮沉降对成熟黑云杉生长的中期影响的假设被拒绝了。

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