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Positive effect of shade on plant growth: amelioration of stress or active regulation of growth rate?

机译:遮荫对植物生长的积极影响:缓解压力或积极调节生长速率?

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While plant competition for light has received considerable attention, the facilitative effect that shading can have on plants and the role of species-specific adaptations in mediating this phenomenon are still poorly understood. Evidence is accumulating, however, that positive interactions can play as important a role in community structuring as has been shown for competition. We examined interspecific variation in growth responses to shade using 46 temperate grassland species grown for 10weeks in a common garden under identical soil conditions but at different levels of shading. The importance of morphological plasticity and habitat preference as species traits determining the net effect of shading on plant growth was tested. Moderate shade (50% daylight) had, on average, a net facilitative effect on plant mass. Plant growth in the 25% daylight treatment was not significantly different from that in full daylight, and it was only when 90% of natural light was made unavailable that shaded plants attained a significantly lower dry mass than plants in full daylight. Species that exhibited the most pronounced reduction in specific leaf area and increased allocation to roots in full compared with 50% daylight were least facilitated by shading. This finding supports the hypothesis that morphological plasticity is an important trait determining the strength of facilitative interactions. The growth response to shade was also dependent on species' ecological optima, with species characteristic of nutrient-poor or dry habitats most facilitated by shade. Greater growth enhancement by shade in grassland stress-tolerant plants is surprising because such species frequently occupy unproductive vegetation with little shade and should therefore be adapted to high irradiance. This result calls into question the notion that a positive effect of shade on growth always reflects stress amelioration. Synthesis. Our study demonstrates a widespread ability of plant species to decouple growth from resource availability and challenges our understanding of the processes determining plant productivity.
机译:尽管植物对光的竞争已引起广泛关注,但遮光对植物的促进作用以及特定物种的适应在介导这种现象方面的作用仍知之甚少。但是,越来越多的证据表明,积极的互动在社区结构中可以发挥与竞争一样重要的作用。我们在相同的土壤条件下,但在不同的遮荫水平下,在普通花园中使用46个温带草原物种生长了10周,研究了其对遮荫的生长响应的种间差异。测试了形态可塑性和栖息地偏好作为确定性状对植物生长的净效应的物种特征的重要性。平均而言,适度的阴影(50%的日光)对植物质量有净促进作用。 25%日光处理下的植物生长与全日照下的植物生长没有显着差异,只有当无法获得90%的自然光时,遮荫植物的干重才明显低于全日照下的植物。与50%的日光相比,比叶面积减少最明显且完全分配到根部的物种受遮荫影响最小。这一发现支持以下假设:形态可塑性是决定促进相互作用强度的重要特征。对树荫的生长反应也取决于物种的生态最佳状态,树荫下最容易造成营养贫乏或干燥生境的物种特征。令人吃惊的是,在草地耐压植物中通过遮荫来促进生长的增加是令人惊讶的,因为这类物种经常占据无生产力的植被,遮荫很少,因此应适应高辐照度。这个结果使人们质疑阴影对生长的积极影响总是反映出压力的减轻。合成。我们的研究表明,植物物种具有广泛的能力来将生长与资源可用性脱钩,并挑战了我们对决定植物生产力的过程的理解。

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