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首页> 外文期刊>Perspectives in plant ecology, evolution and systematics >Topsoil depth substantially influences the responses to drought of the foliar metabolomes of Mediterranean forests
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Topsoil depth substantially influences the responses to drought of the foliar metabolomes of Mediterranean forests

机译:表土深度严重影响地中海森林叶片代谢组对干旱的响应

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The upper soil provides support, water, and nutrients to terrestrial plants and is therefore crucial for forest dynamics. We hypothesised that a tree's metabolic activity (and therefore its metabolome; the total set of metabolites) would be affected by both the depth of upper soil layers and water availability. We sampled leaves for stoichiometric and metabolomic analyses once per season from differently sized Quercus ilex trees under natural and experimental drought conditions representing the likely conditions in the coming decades). Although the metabolomes varied according to tree size, smaller trees did not show higher concentrations of biomarker metabolites related to drought stress. However, the effect of the drought treatment on the metabolomes was greatest for small trees growing in shallow soils. Our results suggest that tree size is more dependent on the depth of the upper soil, which indirectly affects a tree's metabolome, rather than on the moisture content in the upper soil. Metabolomic profiling of Q. ilex supports our finding that water availability in the upper soil is not necessarily correlated with tree size. The higher impact of drought on trees growing in shallower soils nevertheless indicates that any increase in the frequency, intensity, and duration of drought - as has been projected for the Mediterranean Basin and other areas - would affect small trees most. Metabolomics has proved to be a useful means for investigating the links between plant metabolism and environmental conditions. Published by Elsevier GmbH.
机译:上层土壤为陆生植物提供了支持,水和养分,因此对于森林动态至关重要。我们假设一棵树的代谢活动(及其代谢组;代谢物的总集合)将同时受上层土壤层深度和水分供应的影响。我们每季从自然和实验干旱条件下(代表未来几十年的可能条件)从不同大小的栎树上采下叶子,以进行化学计量和代谢组学分析。尽管代谢组根据树木的大小而变化,但较小的树木没有显示出与干旱胁迫相关的较高的生物标志物代谢物浓度。然而,干旱处理对代谢组的影响对于在浅土壤中生长的小树最大。我们的结果表明,树木的大小更多地取决于上部土壤的深度,而后者间接影响树木的代谢组,而不是上部土壤的水分含量。 Q. ilex的代谢组学分析支持了我们的发现,即上部土壤中的水分利用率不一定与树木大小相关。尽管如此,干旱对生长在较浅土壤中的树木的较高影响表明,干旱的频率,强度和持续时间的任何增加(如对地中海盆地和其他地区的预测一样)将对小树造成最大影响。代谢组学已被证明是研究植物代谢与环境条件之间联系的有用手段。由Elsevier GmbH发布。

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