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Here comes the flood! Stress effects of continuous and interval waterlogging periods during the growing season on Scots pine saplings

机译:这是洪水! 苏格兰松树树苗生长季节中连续和间隔涝渍时期的应力影响

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Future climate scenarios for the boreal zone project increasing temperatures and precipitation, as well as extreme weather events such as heavy rain during the growing season. This can result in more frequent short-term waterlogging (WL) leading to unfavorable conditions for tree roots. In addition, it is decisive whether short-term WL periods during the growing season occur continuously or periodically. We assessed the effects of short-termed WL on 4-year-old Scots pine (Pinus sylvestris L.) saplings after shoot elongation started. Waterlogging (WL) lasted either continuously for 2.5 weeks (ContWL) or noncontinuously for 5 weeks, consisting of three repeated 1-week-interval WL periods (IntWL). Both treatments resulted in the same duration of soil anoxia. We studied soil gases, root and shoot growth and physiology, and root survival probability and longevity during the experiment. In the final harvest, we determined shoot and root biomass and hydraulic conductance and electrical impedance spectra of the root systems. Soil CO2 and CH4 concentrations increased immediately after WL onset and O-2 decreased until anoxia. Waterlogging decreased fine root survival probability, but there was no difference between WL treatments. Shoot growth suffered more from ContWL and root growth more from IntWL. Needle concentrations of pinitol increased in the WL saplings, indicating stress. No WL effects were observed in photosynthesis and chlorophyll fluorescence. Increased starch concentration in needles by WL may be due to damaged roots and thus a missing belowground sink. Electrical impedance indicated suffering of WL saplings, although root hydraulic conductance did not differ between the treatments. Oxidative stress of short-term and interval WL can have long-lasting effects on shoot and root growth and the physiology of Scots pine. We conclude that even short-term WL during the growing season is a stress factor, which will probably increase in the future and can affect carbon allocation and dynamics in boreal forests.
机译:未来的气候情景对于北方区域项目的温度提高温度和降水,以及在不断增长的季节期间的暴雨等极端天气事件。这可能导致更频繁的短期涝渍(WL),导致树根的不利条件。此外,在生长季节期间的短期WL周期是不断的或定期发生的,是决定性的。在射击伸长率开始后,我们评估了短期WL对4岁苏格兰松(Pinus Sylvestris L.)树苗的影响。涝渍(WL)连续持续2.5周(CONTWL)或非连续5周,由三个重复的1周间WL周期(INTWL)组成。两种治疗导致土壤缺氧持续时间相同。在实验期间,我们研究了土壤气体,根本和射击生长和生理学,根本存活概率和寿命。在最终收获中,我们确定了根系系统的射击和根生物量和液压传导和电阻光谱。在WL发作和O-2降低至缺氧后,土壤CO2和CH4浓度立即增加。涝渍降低了细根存量概率,但WL治疗之间没有差异。射击增长从intwl更多的来自intwl和根系增长更多。针粒子的针浓度在WL树苗中增加,表明应力。在光合作用和叶绿素荧光中没有观察到WL效应。通过WL的针头中的淀粉浓度增加可能是由于损坏的根源,因此丢失了地下沉。电阻抗表明WL树苗的患者,尽管治疗之间的根液压导流没有差异。短期和间隔WL的氧化应激可以对芽和根系生长以及苏格兰松树的生理学产生持久的影响。我们得出结论,即使在不断增长的季节期间的短期WL也是一个压力因素,可能会在未来增加,并且可以影响北方森林中的碳分配和动态。

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