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Irrigation control and physiological responses of nursery-grown black spruce seedlings (1+0) cultivated in air-slit containers

机译:空槽容器中培育的苗木黑云杉苗(1 + 0)的灌溉控制和生理响应

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摘要

Air-slit containerized (IPL 25-350A) black spruce [Picea mariana (Mill) BSP; 1+0] seedlings, were subjected to four irrigation regimes (IR-15%, IR-30%, IR-45%, and IR-60%, by volume, cm(3) water/cm(3) substrate) under tunnel conditions in a forest nursery. Irrigation regimes were controlled by time-domain reflectometry during the first growing season. With exception of midday water potential, water relation and gas exchange variables were unaffected by substrate water content. There were no significant differences in height, diameter or number of needle primordia of the seedlings grown under IR-15%, IR-30%, and IR-45%. Seedlings grown in a substrate with a high water content (IR-60%) had lower oven-dry biomass and higher cuticular transpiration rates than seedlings grown under the three other irrigation regimes. Root hydraulic conductivity was not affected by irrigation regime, but showed a general decrease towards the end of the growing season. Variation in root hydraulic conductivity was most likely related to root growth and degree of lignification. Seedlings that had been exposed to IR-60% during the first growing season remained smaller than the other seedlings throughout the second growing season. Results of this study indicate that nursery managers can reduce the quantity of irrigation water used without significantly affecting the growth or physiology of air-slit containerized black spruce seedlings (1+0) grown under tunnel conditions.
机译:空口集装箱(IPL 25-350A)黑色云杉[Picea mariana(Mill)BSP; [1 + 0]幼苗在以下条件下经受四种灌溉制度(IR-15%,IR-30%,IR-45%和IR-60%(按体积计,cm(3)水/ cm(3)基质))森林苗圃的隧道条件。在第一个生长季节,通过时域反射法控制灌溉制度。除中午水势外,水的关系和气体交换变量不受基质含水量的影响。在IR-15%,IR-30%和IR-45%下生长的幼苗的针原基高度,直径或数量均无显着差异。与在其他三种灌溉制度下生长的幼苗相比,在高水分含量(IR-60%)的基质中生长的幼苗具有较低的烘箱干燥生物量和较高的表皮蒸腾速率。根系水力传导率不受灌溉制度的影响,但在生长季末普遍下降。根系水力传导率的变化最有可能与根系生长和木质化程度有关。在第一个生长季中暴露于IR-60%的幼苗在第二个生长季中仍比其他幼苗小。这项研究的结果表明,苗圃管理人员可以减少灌溉水的使用量,而不会显着影响在隧道条件下生长的空缝容器化黑云杉幼苗(1 + 0)的生长或生理。

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