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Physiological and growth responses of eleven Ontario provenances of one-year old Picea glauca seedlings to elevated carbon dioxide concentrations.

机译:一年生青云杉幼苗的11种安大略种源对二氧化碳浓度升高的生理和生长响应。

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To study the physiological and growth responses of eleven Ontario provenances of white spruce [Picea glauca (Moench) Voss] to elevated atmospheric CO2 concentrations, one-year old seedlings were grown in three greenhouses under CO2 concentrations of ambient, 530 ppm, and 700 ppm for a period 90 days. The following physiological traits were measured after 60 and 90 days of treatment: net assimilation rate (A), stomatal conductance (gs), transpiration (E), water-use efficiency (WUE), and intercellular to ambient CO2 concentration ratio (C i/Ca). Shoot, root, and total biomass and biomass allocation were also measured after 60 and 90 days of treatment. Height and root collar diameter (RCD) data were collected after 0, 30, 60, and 90 days of treatment.; Net CO2 assimilation was significantly enhanced by elevated [CO2] after 60 and 90 days of treatment despite reductions in photosynthetic capacity. Elevated [CO2] also enhanced WUE and decreased g s and E after 60 days of treatment. There was significant down-regulation of photosynthesis in response to CO2 concentration elevation. Elevated [CO2] significantly reduced Rubisco carboxylation efficiency (V cmax), RuBP regeneration capacity (Jmax), and triose phosphate utilisation (TPU), but had no significant effect on leaf respiration (R d) or CO2 compensation point. Despite its substantial influence on gas exchange, CO2 concentration did not significantly affect seedling biomass, biomass allocation, height, or RCD. No significant CO 2 x provenance interactions were found in the gas exchange measurements. Provenance had a significant effect on the height and RCD of the white spruce seedlings. Strong correlations existed between gas exchange and monthly climate variables for the 11 Ontario provenances of white spruce at ambient and elevated CO2 concentrations, suggesting adaptation of individual provenances to local climate.; The implications of CO2 response of diverse sources of white spruce seedlings on tree improvement programs will probably be minimal. Seed sources of white spruce in Ontario selected for superior growth characteristics in the present climate will probably perform well in the predicted future climate.
机译:为了研究安大略省11种白云杉[Picea glauca(Moench)Voss]对升高的大气CO2浓度的生理和生长响应,在环境温度,530 ppm和700 ppm的CO2浓度下,在三个温室中种植了一年生的幼苗。为期90天。在治疗60天和90天后测量以下生理特征:净同化率(A),气孔导度(gs),蒸腾(E),耗水率(WUE)以及细胞间与环境中的CO2浓度比(C i / Ca)。处理60天和90天后,还测量了枝条,根,总生物量和生物量分配。在治疗0、30、60和90天后收集身高和根颈直径(RCD)数据。尽管光合作用能力降低,但在处理60天和90天后[CO2]升高,净CO2同化作用显着增强。在治疗60天后,升高的[CO2]还可以提高WUE并降低g s和E。响应于CO2浓度升高,光合作用显着下调。升高的[CO2]显着降低了Rubisco羧化效率(V cmax),RuBP再生能力(Jmax)和磷酸三糖利用率(TPU),但对叶片呼吸(R d)或CO2补偿点没有显着影响。尽管CO2浓度对气体交换有很大影响,但并未显着影响幼苗生物量,生物量分配,高度或RCD。在气体交换测量中未发现明显的CO 2 x来源相互作用。种源对白云杉幼苗的株高和RCD有显着影响。安大略省11种云杉在环境浓度和CO2浓度升高时,气体交换与月气候变量之间存在很强的相关性,这表明个体种源适应当地气候。白云杉幼苗的各种来源的CO2响应对树木改良计划的影响可能很小。在目前的气候条件下选择具有优越生长特性的安大略省白云杉的种子来源可能在预测的未来气候下表现良好。

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