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Planting frozen conifer seedlings: Warming trends and effects on seedling performance

机译:种植冷冻针叶树幼苗:变暖趋势及其对幼苗性能的影响

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In temperate climates, conifer seedlings are often held in frozen storage (-2 degreesC) for extended periods and then placed in cool storage (+2 degreesC) so the root plug can thaw prior to outplanting. Two plug temperature treatments were used to test the hypothesis that thawing seedlings prior to outplanting may be unnecessary: seedlings were planted with frozen root plugs ('frozen seedlings') and with thawed root plugs ('thawed seedlings'). The experiment was conducted under two watering regimes (irregular, regular) and with three conifer species (lodgepole pine [Pinus contorta var. latifolia], western larch [Larix occidentalis], interior spruce [Picea glauca x engelmannii]) to increase the generality of the results. The warming of root plugs after planting was examined. Thawed root plugs warmed to soil temperature rapidly (about 30 min) while frozen root plugs took longer (to 2 h) because ice in the plug had to melt before temperatures rose. Larger root plugs took longer to warm to soil temperature. Several aspects of seedling field performance were also assessed. For all species, variable fluorescence did not differ between frozen and thawed seedlings. Bud break was faster for thawed than frozen western larch seedlings but did not differ between frozen and thawed seedlings for either lodgepole pine or interior spruce. Height increment differed significantly between frozen and thawed seedlings that received the irregular watering regime; this effect was likely a response to the positioning of irrigation nozzles, which resulted in sporadic and non-uniform irrigation patterns. Height increment did not differ between frozen and thawed seedlings that received the regular watering regime. Root collar diameter and volume increments were not significantly affected by plug temperature treatment under either watering regime. Planting seedlings with frozen root plugs did not hinder field performance over one growing season under these watering regimes.
机译:在温带气候下,针叶树幼苗通常会在冷藏(-2摄氏度)下长时间保存,然后放在冷藏(+2摄氏度)下,这样根插可以在移栽前解冻。两种插拔温度处理用于检验以下假设:在移栽之前可能不需要解冻幼苗:将幼苗种植有冷冻的根塞(“冷冻苗”)和解冻的根塞(“解冻的幼苗”)。该实验在两种浇水方式下(不规则,常规)进行,并使用三种针叶树种(黑松(Pinus contorta var。latifolia),西部落叶松(Larix occidentalis),内部云杉(Picea glauca x engelmannii))来增加结果。检查种植后的根塞变暖。解冻后的根塞迅速升温至土壤温度(约30分钟),而冷冻的根塞则花费了更长的时间(至2小时),因为在温度升高之前必须融化其中的冰。较大的根塞需要更长的时间才能加热至土壤温度。还评估了幼苗田间表现的几个方面。对于所有物种,冷冻和解冻的幼苗之间的可变荧光没有差异。解冻的芽芽比冷冻的西落叶松幼苗更快,但是对于寄主松或内部云杉而言,冷冻和解冻的幼苗之间没有差异。接受不规则浇水方式的冷冻和解冻幼苗之间的高度增加差异显着。这种影响可能是对灌溉喷嘴位置的响应,这导致了零星的和不均匀的灌溉方式。接受常规浇水处理的冷冻和解冻幼苗的高度增加没有差异。在两种浇水方式下,插穗温度处理均不会显着影响根颈直径和体积增量。在这些灌溉制度下,用冷冻的根茎种苗不会影响一个生长季节的田间表现。

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