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Effects of establishment silviculture on carbon and nitrogen isotope compositions and tree growth in a F1 hybrid pine plantation of southeast Queensland

机译:设施造林对昆士兰州东南部F1杂交松人工林碳氮同位素组成和树木生长的影响

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摘要

TThe effects of routine and luxury weed control and fertilization treatments on diameter, height, carbon (d13C) and nitrogen (d15N) isotope composition in foliage were assessed in an 8-year-old, F1 hybrid pine (Pinus elliottii var. elliottii Pinus caribaea var. hondurensis) plantation, on typical sandy soils in southeast Queensland. The aim of this research was to identify how weed control and fertilization treatments affect nitrogen nutrition and water use in F1 hybrid pine plantations, together with tree growth. The results have indicated that a lack of weed competition has shown greater potential for height and diameter at breast height (Dbh) increment and d15N in the foliage. A strong correlation between growth and d15N existed for all canopy positions, demonstrating that foliar d15N may prove to be a better indicator of growth indices in the canopy than total foliar N concentrations alone. These differences could be in part due to discrimination against 15N by soil micro-fauna, during the processes of decomposition and mineralization and as a result of leaching of lighter 14N, where no weed cover exists. These results indicate that in an 8-year-old F1 hybrid pine plantation, luxury weed control treatments significantly affected foliar d15N, but not foliar d13C, nor foliar N or C concentrations. It is therefore concluded that luxury weed control treatments result in both greater height and Dbh increment and an increased pool of 15N abundance available for tree uptake as reflected in the foliage of 8-year-old F1 hybrid pine trees at this site
机译:在8岁的F1杂种松树(Pinus elliottii var。elliottii Pinus caribaea)中评估了常规和豪华杂草控制与施肥处理对叶片直径,高度,碳(d13C)和氮(d15N)同位素组成的影响昆士兰州东南部典型的沙土上种植)这项研究的目的是确定杂草的控制和施肥处理如何影响F1杂交松人工林的氮营养和水分利用以及树木的生长。结果表明,缺乏杂草竞争已显示出在胸高(Dbh)增大和叶子中d15N时高度和直径更大的潜力。在所有冠层位置,生长和d15N之间都存在很强的相关性,这表明叶面d15N可能比单独的总叶面氮浓度更能说明冠层的生长指数。这些差异可能部分是由于在分解和矿化过程中土壤微动物区系对15N的歧视,以及由于较轻的14N的浸出而没有杂草覆盖的结果。这些结果表明,在一个有8年历史的F1杂种松树人工林中,豪华杂草防治对叶面d15N的影响显着,但对叶面d13C的影响不大,叶面的N或C浓度也没有影响。因此得出的结论是,豪华杂草控制处理导致更高的身高和Dbh增量,以及15N丰度增加,可用于树木吸收,这一点反映在该地点8岁的F1杂种松树的叶子上

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