首页> 外文期刊>International Journal of Forestry Research >Effect of Ecotype and Latitude on Growth, Frost Hardiness, and Oxidative Stress of South to North Transplanted Scots Pine Seedlings
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Effect of Ecotype and Latitude on Growth, Frost Hardiness, and Oxidative Stress of South to North Transplanted Scots Pine Seedlings

机译:生态型和纬度对南北向移植樟子松幼苗生长,抗冻性和氧化胁迫的影响

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Ecotypes of Pinus sylvestris seedlings from Kuhmo (64°N) and Ranua (66°N) were transplanted to 0 (control), 1, 2, and 3°N higher latitude in Northern Finland in 1997. Sampling was carried out twice per year (spring/autumn) during 1998–2000. Shoot elongation, total nitrogen concentration, frost hardiness and oxidative stress state (lipid peroxidation, glutathione reductase activity, and protein oxidation) in the needles were analyzed. Comparison between the seasonal sampling times indicated that total nitrogen, lipid peroxidation, glutathione reductase activity, and protein oxidation were lower in autumn, during which the frost hardiness was higher. The above suggests that the stress conditions were higher in spring. Comparison between the origins of the seedlings demonstrated that shoot elongation of the northern origin were minor, while their total nitrogen concentrations and frost hardiness were more pronounced. Effect of latitude on elongation of Scots pine is most probably a result of a combination of temperature and light quality. No delay in frost hardening due to higher latitude was observed during the autumnal equinox. No marked stress caused by transplantation to the north was either observed. It is concluded that southern ecotypes of Scots pine have the potential to adapt to migration driven by a warming climate.
机译:来自Kuhmo(64°N)和Ranua(66°N)的樟子松幼苗的生态型在1997年被移植到芬兰北部的0(对照),1、2和3°N高纬度。每年进行两次采样(春季/秋季)在1998-2000年期间。分析了茎中的枝条伸长率,总氮浓度,抗冻性和氧化应激状态(脂质过氧化,谷胱甘肽还原酶活性和蛋白质氧化)。季节性采样时间之间的比较表明,秋季的总氮,脂质过氧化,谷胱甘肽还原酶活性和蛋白质氧化较低,在此期间霜冻强度较高。以上表明,春季的应力条件较高。幼苗起源之间的比较表明,北部起源的枝条伸长较小,而它们的总氮浓度和抗冻性更为明显。纬度对苏格兰松树伸长率的影响很可能是温度和光照质量共同作用的结果。在秋分期间没有观察到由于纬度较高而导致的霜冻硬化延迟。也没有观察到由北方移植引起的明显压力。结论是,南方的苏格兰松树生态型具有适应气候变暖驱动的迁移的潜力。

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