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Autumnal nitrogen nutrition affects the C and N storage and architecture of young peach trees

机译:秋季氮营养影响年轻桃树的C和N储存和建筑

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摘要

Nitrogen fertilisation is a regular practice in orchards. Its effect on tree development, N and C acquisition and allocation were evaluated simultaneously, while coupling on the same trees in situ measurements of N uptake and shoot development and destructive determinations of organ composition in N and Total Non structural Carbohydrates (TNC). An hydroponic set-up was designed that could grow young peach trees at constant NO3 concentration while measuring N uptake. Forty-eight trees were raised outdoors under excessive N supply. Between October 2 and December 7, half of them were then N-limited to reduce N uptake by 75%. Organ N concentrations remained stable in the controls but were halved in N-limited trees. Growth (390 vs. 353 g DW tree−1) was less affected by the treatment than N uptake (10.6 vs. 2.7 g N tree−1). Growth was affected only in terms of axillary bud development, which was restricted to the median and upper crown parts. The number of buds which transformed into elongating axes (44 vs. 84 tree−1) was halved, thus reducing leaf area by one-third (10,464 vs. 15,568 cm2). Tree TNC content was not impacted. The difference in C acquisition likely balanced the C costs of N uptake. In N-limited trees, more TNC was stored as starch (73 vs. 56%), and the allocation patterns of TNC and N were altered in favour of the roots. Our results provide deeper insights into the tree integrated response to autumnal N fertilisation, focusing on an alteration of the balance between storage and growth
机译:氮肥是果园常规的作法。其上树发展,N和C的采集和分配效果进行了同时评价,而对氮的吸收和枝条发育和在N和总非结构性碳水化合物(TNC)器官成分的无损测定的原位测量相同的树木耦合。一种水培的建立旨在使得在测量氮的吸收可能增长在恒定NO3浓度年轻桃树。四十八个树提出了下过多氮素供应户外。 10月2日和12月7日之间,其中一半然后N限制75%,以减少氮的吸收。器官氮浓度在对照保持稳定,但在氮限制树被减半。生长(390对比353克DW树-1)较少受到大于N摄取(10.6对比2.7克Ñ树-1)的治疗。增长只有在腋芽发展,这仅限于中位数和上冠部方面的影响。其转化为延长轴(44与84树-1)芽的数目减少了一半,从而通过三分之一(10464对15568平方厘米)减少叶面积。树TNC内容没有影响。用C采集的差异可能平衡吸氮量的C-成本。在氮限制树木,更TNC被存储为淀粉(73比56%),和TNC和N的分配模式有利于根的被改变。我们的研究结果提供了深入了解树综合应对秋季施氮肥,专注于存储和经济增长之间的平衡的改变

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