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首页> 外文期刊>Oecologia >Soil microbial communities buffer physiological responses to drought stress in three hardwood species
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Soil microbial communities buffer physiological responses to drought stress in three hardwood species

机译:土壤微生物社区在三种硬木物种中对干旱胁迫进行缓冲生理反应

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Trees possess myriad adaptations for coping with drought stress, but the extent to which their drought responses are influenced by interactions with soil microbes is poorly understood. To explore the role of microbes in mediating tree responses to drought stress, we exposed saplings of three species (Acer saccharum, Liriodendron tulipifera, and Quercus alba) to a four week experimental drought in mesocosms. Half of the pots were inoculated with a live soil slurry (i.e., a microbial inoculum derived from soils beneath the canopies of mature A. saccharum, L. tulipifera or Q. alba stands), while the other half of the pots received a sterile soil slurry. Soil microbes ameliorated drought stress in L. tulipifera by minimizing reductions in leaf water potential and by reducing photosynthetic declines. In A. saccharum, soil microbes reduced drought stress by lessening declines in leaf water potential, though these changes did not buffer the trees from declining photosynthetic rates. In Q. alba, soil microbes had no effects on leaf physiological parameters during drought stress. In all species, microbes had no significant effects on dynamic C allocation during drought stress, suggesting that microbial effects on plant physiology were unrelated to source-sink dynamics. Collectively, our results suggest that soil microbes have the potential to alter key parameters that are used to diagnose drought sensitivity (i.e., isohydry or anisohydry). To the extent that our results reflect dynamics occurring in forests, a revised perspective on plant hydraulic strategies that considers root-microbe interactions may lead to improved predictions of forest vulnerability to drought.
机译:树木具有无数的适应,用于应对干旱胁迫,但其干旱反应受与土壤微生物的相互作用影响的程度很差。为了探讨微生物在介导对干旱胁迫的树木响应中的作用,我们将三种物种(Acer Saccharum,LirioDendron Tulipifera和Quercus Alba)的树苗暴露于中间体核糖中的四周实验干旱。用活土壤浆料接种一半的盆(即,从成熟A. Saccharum,L. Tulipifera或Q. Alba Stands的檐篷下方的土壤中衍生的微生物接种物),而另一半罐接受过育土壤泥浆。通过最大限度地减少叶水潜力的降低,通过降低光合下降,土壤微生物在L. Tulipifera中改善了干旱胁迫。在A. Saccharum中,土壤微生物通过减少叶水潜力下降,虽然这些变化没有缓冲光合速率下降。在Q.Alba中,土壤微生物在干旱胁迫下对叶生理参数没有影响。在所有物种中,微生物对干旱胁迫期间的动态C分配没有显着影响,这表明对植物生理学的微生物作用与源水槽动态无关。统称,我们的结果表明土壤微生物有可能改变用于诊断干旱敏感性的关键参数(即,IsoHydry或AnisoHydry)。在我们的成果反映森林中发生的动态的程度上,对考虑根微生物相互作用的植物液压策略的修订角度可能导致对森林脆弱性的预测改善了对干旱的预测。

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