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首页> 外文期刊>Journal of Plant Research >Rapid response of leaf photosynthesis in two fern species Pteridium aquilinum and Thelypteris dentata to changes in CO2 measured by tunable diode laser absorption spectroscopy
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Rapid response of leaf photosynthesis in two fern species Pteridium aquilinum and Thelypteris dentata to changes in CO2 measured by tunable diode laser absorption spectroscopy

机译:可调二极管激光吸收光谱法测量两种蕨类蕨类植物和齿形蕨类植物叶片的光合作用对CO2变化的快速响应

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摘要

We investigated stomatal conductance (g (s)) and mesophyll conductance (g (m)) in response to atmospheric CO2 concentration [CO2] in two primitive land plants, the fern species Pteridium aquilinum and Thelypteris dentata, using the concurrent measurement of leaf gas exchange and carbon isotope discrimination. [CO2] was initially decreased from 400 to 200 mu mol mol(-1), and then increased from 200 to 700 mu mol mol(-1), and finally decreased from 700 to 400 mu mol mol(-1). Analysis by tunable diode laser absorption spectroscopy (TDLAS) revealed a rapid and continuous response in g (m) within a few minutes. In most cases, both ferns showed rapid and significant responses of g (m) to changes in [CO2]. The largest changes (quote % decrease) were obtained when [CO2] was decreased from 400 to 200 mu mol mol(-1). This is in contrast to angiosperms where an increase in g (m) is commonly observed at low [CO2]. Similarly, fern species observed little or no response of g (s) to changes in [CO2] whereas, a concomitant decline of g (m) and g (s) with [CO2] is often reported in angiosperms. Together, these results suggest that regulation of g (m) to [CO2] may differ between angiosperms and ferns.
机译:我们利用同时测量叶气的方法,研究了两种原始陆生植物(蕨类蕨类植物蕨菜和齿形斑竹)中响应大气CO2浓度[CO2]的气孔电导(g(s))和叶肉电导率(g(m))。交换和碳同位素歧视。 [CO2]最初从400 mol mol(-1)降低到200 mol mol(-1),然后从200 mol mol(-1)升高到700 mol,然后最终从700 mol mol(-1)降低到400 mol mol(-1)。通过可调谐二极管激光吸收光谱法(TDLAS)进行的分析显示,在几分钟内以g(m)为单位的快速且连续的响应。在大多数情况下,两种蕨类植物均对[CO2]的变化表现出快速而显着的g(m)响应。当[CO2]从400 mol mol mol(-1)减少到最大时(报价%降低)。这与被子植物相反,后者在低[CO2]下通常会观察到g(m)的增加。同样,蕨类植物对g [s]对[CO2]变化的响应很小或没有反应,而在被子植物中通常报告g [m]和g [s]与[CO2]的伴随下降。总之,这些结果表明,被子植物和蕨类植物对[CO2]的g(m)调节可能不同。

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