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Growth, allocation and tissue chemistry of Picea abies seedlings affected by nutrient supply during the second growing season

机译:第二生长季节养分供应对云杉云杉幼苗生长,分配和组织化学的影响

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One-year-old Norway spruce (Picea abies (L.) Karst.) seedlings were grown hydroponically in a growth chamber to investigate the effects of low and high nutrient availability (LN; 0.25 mM N and HN; 2.50 mM N) on growth, biomass allocation and chemical composition of needles, stem and roots during the second growing season. Climatic conditions in the growth chamber simulated the mean growing season from May to early October in Flakaliden, northern Sweden. In the latter half of the growing season, biomass allocation changed in response to nutrient availability: increased root growth and decreased shoot growth led to higher root/shoot ratios in LN seedlings than in HN seedlings. At high nutrient availability, total biomass, especially stem biomass, increased, as did total nonstructural carbohydrate and nitrogen contents per seedling. Responses of stem chemistry to nutrient addition differed from those of adult trees of the same provenance. In HN seedlings, concentrations of alpha-cellulose, hemicellulose and lignin decreased in the secondary xylem. Our results illustrate the significance of retranslocation of stored nutrients to support new growth early in the season when root growth and nutrient uptake are still low. We conclude that nutrient availability alters allocation patterns, thereby influencing the success of 2-year-old Norway spruce seedlings at forest planting sites.
机译:将一岁的挪威云杉(Picea abies(L.)Karst。)幼苗在生长室中水培生长,以研究低养分利用率和高养分利用率(LN; 0.25 mM N和HN; 2.50 mM N)对生长的影响第二生长季节中针叶,茎和根的生物量分配和化学成分。生长室内的气候条件模拟了瑞典北部弗拉卡利登5月至10月初的平均生长季节。在生长期的后半段,生物量分配随养分利用率的变化而变化:根部生长增加和枝条生长减少导致LN幼苗的根/茎比高于HN幼苗。在高养分利用率下,总生物量(尤其是茎生物量)增加,每棵幼苗的总非结构性碳水化合物和氮含量也增加。茎化学对养分添加的反应不同于相同出处的成年树木。在HN幼苗中,次生木质部的α-纤维素,半纤维素和木质素浓度降低。我们的结果表明,在根部生长和养分吸收仍然很低的季节,重新分配存储的养分以支持新生长的重要性。我们得出的结论是,养分的可利用性改变了分配方式,从而影响了2岁的挪威云杉幼苗在森林种植现场的成功。

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