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首页> 外文期刊>The New Phytologist >Are fern stomatal responses to different stimuli coordinated? Testing responses to light, vapor pressure deficit, and CO2 for diverse species grown under contrasting irradiances
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Are fern stomatal responses to different stimuli coordinated? Testing responses to light, vapor pressure deficit, and CO2 for diverse species grown under contrasting irradiances

机译:蕨类植物气孔对不同刺激的反应是否协调一致?测试在不同辐照度下生长的各种物种对光,蒸气压不足和CO2的响应

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摘要

The stomatal behavior of ferns provides an excellent system for disentangling responses to different environmental signals, which balance carbon gain against water loss. Here, we measured responses of stomatal conductance (g(s)) to irradiance, CO2, and vapor pressure deficit (VPD) for 13 phylogenetically diverse species native to open and shaded habitats, grown under high-and low-irradiance treatments. We tested two main hypotheses: that plants adapted and grown in high-irradiance environments would have greater responsiveness to all stimuli given higher flux rates; and that species' responsiveness to different factors would be correlated because of the relative simplicity of fern stomatal control. We found that species with higher light-saturated g(s) had larger responses, and that plants grown under high irradiance were more responsive to all stimuli. Open habitat species showed greater responsiveness to irradiance and CO2, but lower responsiveness to VPD; a case of plasticity and adaptation tending in different directions. Responses of g(s) to irradiance and VPD were positively correlated across species, but CO2 responses were independent and highly variable. The novel finding of correlations among stomatal responses to different stimuli suggests coordination of hydraulic and photosynthetic signaling networks modulating fern stomatal responses, which show distinct optimization at growth and evolutionary time-scales.
机译:蕨类植物的气孔行为为解开对不同环境信号的响应提供了一个极好的系统,可以平衡碳的吸收与水分的流失。在这里,我们测量了在高光照和低光照条件下生长的13种系统发育多样性物种的气孔电导率(g(s))对辐照度,CO2和蒸气压亏缺(VPD)的响应。我们检验了两个主要假设:在较高辐照度条件下适应和生长的植物在通量较高的情况下,对所有刺激的反应性都将更高。由于蕨类植物气孔控制的相对简单性,该物种对不同因素的反应性将相互关联。我们发现,具有较高光饱和g(s)的物种具有更大的响应,并且在高辐照度下生长的植物对所有刺激都具有更高的响应性。开放的栖息地物种对辐照度和CO2的响应能力较强,但对VPD的响应能力较低;可塑性和适应性趋于不同方向的情况。 g(s)对辐照度和VPD的响应在物种之间呈正相关,但CO2响应是独立的且高度可变。气孔对不同刺激的反应之间的相关性的新发现表明,调节蕨类气孔反应的水力和光合信号网络相互协调,在生长和进化时间尺度上显示出明显的优化。

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