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Terpenoids in the wood of Scots pine and Norway spruce seedlings exposed to ozone at different nitrogen availability

机译:樟子松和挪威云杉幼苗中的萜类化合物暴露于不同氮素供应量的臭氧下

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Scots pine (Pinus sylvestris L.) and Norway spruce (Picea abies (L.) Karst.) seedlings were exposed to low-level ozone (O-3) in an open-air exposure system for three or two growing seasons, respectively. Simultaneously, seedlings were supplied with nutrient solution containing either optimum (control) nitrogen (N). 70% of optimum N (low N availability), or 150% of optimum N (high N availability). Carbon-based secondary compounds. e.g.. terpenes and resin acids, were analysed from the stemwood. alpha-Pinene, 3-carene, and limonene + beta-phellandrene were the major terpenes in pine wood, whereas alpha-pinene, beta-pinene, and limonene + beta-phellandrene dominated in the spruce wood, Palustric + levopimaric and abietic acids were the major resin acids in the wood of both species. Ozone exposure did not cause any remarkable changes in the concentrations and proportional quantities of terpenes and resin acids in the wood of either tree species. Nitrogen availability did not affect the concentrations of carbon-based secondary compounds either, and the effects on proportional quantities were slight and ambiguous with respect to N supply. We conclude that realistically elevated levels of O-3 do not have effects on concentrations of carbon-based secondary compounds of conifer wood and N availability might cause only slight changes in them, Therefore, our results do not directly support the carbon-nutrient balance hypothesis.
机译:苏格兰松(Pinus sylvestris L.)和挪威云杉(Picea abies(L.)Karst。)幼苗在露天暴露系统中分别暴露于低水平臭氧(O-3)中三个或两个生长季节。同时,向幼苗提供含有最佳(对照)氮(N)的营养液。最佳N的70%(低N可用性),或最佳N的150%(高N可用性)。碳基次要化合物。从茎木中分析例如萜烯和树脂酸。松木中的主要萜烯是α-P烯,3-胡萝卜素和柠檬烯+β-芹菜烯,而云杉木中则主要是α-,烯,β-,烯和柠檬烯+β-芹菜烯,palustric + levopimaric和松香酸是两种木材中的主要树脂酸。臭氧暴露对两种树木的木材中萜烯和树脂酸的浓度和比例量均未造成任何显着变化。氮的可用性也不会影响碳基次要化合物的浓度,并且对比例数量的影响相对于氮供应而言是微不足道的。我们得出的结论是,现实中O-3含量的升高不会对针叶木材的碳基次要化合物的浓度产生影响,氮的有效性可能只会对其造成轻微变化,因此,我们的结果并不直接支持碳营养平衡的假设。

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