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Relating visual crown conditions to nutritional status and site quality in monoclonal poplar plantations (Populus × euramericana)

机译:杨树人工林中人工林冠状况与营养状况和立地质量的关系

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The area covered by plantations of hybrid poplar in Europe is increasing greatly because of the high profitability of these trees. However, the productivity varies widely depending on nutritional status, and it is therefore essential to identify the limiting nutrients. The aims of this study were (a) to identify the main nutrients limiting the growth and vitality of monoclonal poplar (Populus × euramericana) plantations and (b) to develop a means of early detection of nutrition-related problems in growth, based on visual crown conditions (crown transparency, VCT, and visual crown discoloration, VCD). The study was carried out in one of the most suitable areas for this species in Southern Europe. Thirty-two Populus × euramericana (clone I-214) stands displaying different levels of decline were selected for study, and tree growth, nutritional status (soil properties and foliar nutrient concentrations) and crown conditions were assessed. The stands, which were growing in soils with high contents of coarse fragments, displayed low growth rates, poor crown conditions and deficiencies in Fe, B, N, P, K, and to a lesser extent, Zn and Cu. The deficiencies increased with the age of the stand, presumably because of the higher nutrient demand in older trees. Visual crown conditions were related to growth rates and nutritional status. Predictive models were developed to relate crown conditions to the nutritional status identified by analysis of soil properties and foliar concentrations of nutrients.
机译:由于这些树木的高获利能力,欧洲杂种杨树人工林覆盖的面积正在大大增加。但是,生产率因营养状况的不同而有很大差异,因此必须确定限制性营养素。这项研究的目的是(a)识别限制单株杨树(Populus×euramericana)人工林生长和活力的主要养分,以及(b)根据肉眼可见的现象,开发一种早期发现与生长有关的营养相关问题的方法牙冠状况(牙冠透明度,VCT和可视牙冠变色,VCD)。这项研究是在南欧最适合该物种的地区之一进行的。选择表现出不同下降水平的32个杨树×美洲杨(I-214克隆)林分进行研究,并评估树木生长,营养状况(土壤特性和叶面养分浓度)和树冠状况。这些林分生长在土壤中的粗碎屑含量高的土壤中,生长速率低,冠冠条件差,并且铁,硼,氮,磷,钾以及锌和铜的含量较低。缺乏程度随着林分年龄的增长而增加,大概是由于老树的养分需求更高。冠状视觉状况与生长速度和营养状况有关。开发了预测模型,以将冠状条件与通过土壤性质和营养元素叶面浓度分析确定的营养状况相关联。

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