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Response of leaf respiration to water stress in Mediterranean species with different growth forms

机译:不同生长形式的地中海物种叶片呼吸对水分胁迫的响应

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The aim of the present study was to undertake a comparative analysis of the effects of water stress on leaf respiration rates and carbon balance, including a wide variety of Mediterranean species with different growth forms and evolutionary history. Plant water relations, photosynthetic and respiration rates, and specific leaf area were measured in plants grown in pots and subjected to different levels of water stress, the most severe followed by re-watering. A high range of variation was observed in maximum leaf respiration rates, largely related to differences among plant growth forms. Leaf respiration rates decreased under drought in most but not all species. Such decline also resulted growth form-dependent, with herbs showing both the highest proportional decrease and the highest recovery after re-watering, and evergreens the lowest, reflecting differences in respiration requirements due to different life span and growth carbon costs between growth forms. The decline in respiration in response to drought occurred at a stomatal conductance threshold which is coincident with that observed to induce down-regulation of the activity of many other metabolic components, suggesting that decreased respiration is part of a systemic metabolic response, which occurs under conditions where drought severely restricts CO_2 availability inside leaves.
机译:本研究的目的是对水分胁迫对叶片呼吸速率和碳平衡的影响进行比较分析,其中包括各种具有不同生长形式和进化历史的地中海物种。在盆栽的植物中测量植物的水分关系,光合和呼吸速率以及比叶面积,并对其水分胁迫进行不同程度的处理,其中最严重的是紧随其后的再浇水。最大叶片呼吸速率观察到很大范围的变化,主要与植物生长形式之间的差异有关。在大多数但不是全部物种中,干旱导致叶片呼吸速率下降。这种下降还导致了生长形式的依赖性,其中草药在补水后显示出最高的比例下降和最高的回收率,而常绿植物显示出最低的增长率,这反映了由于生命周期不同和生长形式之间的碳排放成本不同,对呼吸的要求也不同。干旱引起的呼吸下降发生在气孔导度阈值上,与观察到的导致许多其他代谢成分活性下调的阈值相吻合,这表明呼吸下降是系统性代谢反应的一部分,在一定条件下会发生干旱严重限制了叶片内部CO_2的利用率。

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