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Photosynthetic light response and growth analysis of competitive regeneration after partial cutting in a boreal mixed stand

机译:在北方混合架中偏切割后竞争再生的光合光响应及成长分析

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The ecophysiological development of two competitive species naturally regenerated after partial cutting was studied in a boreal mixed stand of eastern Canada. Photosynthetic light response curve and growth analyses were performed on balsam fir [Abies balsamea (L.) Mill.] and trembling aspen (Populus tremuloides Michx.) natural regeneration growing at different light intensities. Five levels of light intensity (14, 21, 26, 30 and 76% of full light) were obtained by applying the following treatments: three partial cutting intensities (removal of 35, 50 and 65% of the initial basal area), a clearcut (removal of 100% of the initial basal area) and an uncut control. Leaves of aspen suckers showed higher values of photosynthetic capacity, apparent quantum yield, light compensation point and dark respiration in comparison to fir seedlings at all light levels. In response to light availability, photosynthetic plasticity of aspen was greater than that of fir. Aspen was less able to maintain a positive net photosynthesis at low light than fir, and this could reduce its survivorship, particularly at 14% and 21% of full light. Leaf area ratio of balsam fir was higher than for aspen at all light levels, but both species showed a general increase in leaf area ratio as percent of full light decreased. Above-ground relative growth rate of aspen was higher than for fir at all light levels. At 14% and 21% of full light, aspen suckers had higher height-to-stemwood weight ratios than at higher light intensities. This higher allocation to height growth formed etiolated seedlings that can hinder the long-term survivorship of aspen in low light.
机译:在加拿大东部的北方混合架上研究了两种竞争物种的生态学发展。在Balsam Fir上进行光合光响应曲线和生长分析[Abies Balsamea(L.)磨机。颤抖的Aspen(Populus Trowuloides Michx。)自然再生在不同的光强度生长。通过施加以下治疗方法,获得五个光强度(14,21,26,30和76%的全光线):三个部分切割强度(除去35,50%和65%的初始基础区域),是一个清除(去除初始基础区域的100%)和未切割的控制。与所有光线水平的冷杉幼苗相比,Aspen吸盘的叶子表现出更高的光合作用,表观量子产率,光补偿点和暗呼吸。响应于光可用性,白杨的光合可塑性大于冷杉的光合塑性。 Aspen能够在低光下保持正净光合作用而不是冷杉,这可以减少其生存,特别是14%和21%的全光线。 Balsam FIR的叶面积比在所有光水平上高于白杨,但两种物种显示出叶面积比的一般性增加,百分比百分比下降。在所有光水平下,Aspen的上面相对生长速率高于冷杉。在全灯的14%和21%,Aspen吸盘比在更高的光强度高的高度到干沿重量比。这种较高的分配到高度生长形成的光素幼苗,可以阻碍在低光中的长期存活。

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