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Effects of simulated environmental changes on growth and growth form in a late snowbed population of pohlia wahlenbergii (Web. et Mohr) Andr

机译:模拟的环境变化对华北落叶松的晚雪床种群生长和生长形式的影响(Web。et Mohr)Andr

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摘要

In a factorial field experiment we increased the temperature (OpenTop Chambers) and nutrients (nitrogen, phosphorus, and potassium[NPK]) to simulate predicted future climate changes and studiedthe growth response of the acrocarpous bryophyte Pohliawahlenbergii (Bryaceae) in a wet snowbed environment. The speciesshows a positive growth-length response to added nutrients andincreased temperature. The stronger response to nutrientsindicates a strong limitation of nutrients in the snowbedenvironment. There was an immediate response to nutrienttreatment, whereas the temperature response was delayed. Thegrowth response shows a clear interaction between temperature andnutrients. The immediate positive growth response is interpretedas a function of the wet habitat, since water makes the addednutrients immediately available to the plants. The growth formchanged toward a more lax (loose) and desiccation-intolerant formwith added nutrients. In a climate change scenario based on theseresults we hypothesize that bryophyte response will depend on thewater availability from precipitation and from meltwater. In adrier environment we predict that bryophytes will become moreconstrained toward areas with a high continuity of meltwater,whereas increased precipitation may compensate for any changes ingrowth form, which would be positive for bryophytes.
机译:在阶乘野外实验中,我们提高了温度(OpenTop Chambers)和养分(氮,磷和钾[NPK]),以模拟预测的未来气候变化,并研究了在潮湿的雪床环境中的顶板苔藓植物Pohliawahlenbergii(Bryaceae)的生长响应。该物种对增加的养分和温度升高表现出积极的生长长度响应。对养分的较强反应表明,雪床环境中养分的局限性很大。营养处理立即反应,而温度反应延迟。生长反应表明温度和养分之间存在明显的相互作用。立即的正生长响应被解释为潮湿栖息地的功能,因为水使添加的养分立即可用于植物。生长形式向添加更多养分的松散(松散)和不耐干燥性的形态转变。在基于这些结果的气候变化情景中,我们假设苔藓植物的响应将取决于降水和融化水的水利用率。在较弱的环境中,我们预测苔藓植物将对融水连续性较高的地区产生更大的约束,而增加的降水可能会补偿任何向内生长的变化形式,这对苔藓植物是有利的。

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