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Effects of Elevated CO2 and Low Soil Moisture on the Physiological Responses of Mountain Maple (Acer spicatum L.) Seedlings to Light

机译:CO2升高和土壤湿度低对山枫幼苗对光的生理响应的影响

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摘要

Global climate change is expected to affect how plants respond to their physical and biological environments. In this study, we examined the effects of elevated CO2 ([CO2]) and low soil moisture on the physiological responses of mountain maple (Acer spicatum L.) seedlings to light availability. The seedlings were grown at ambient (392 µmol mol−1) and elevated (784 µmol mol−1) [CO2], low and high soil moisture (M) regimes, at high light (100%) and low light (30%) in the greenhouse for one growing season. We measured net photosynthesis (A), stomatal conductance (g s), instantaneous water use efficiency (IWUE), maximum rate of carboxylation (V cmax), rate of photosynthetic electron transport (J), triose phosphate utilization (TPU)), leaf respiration (R d), light compensation point (LCP) and mid-day shoot water potential (Ψx). A and g s did not show significant responses to light treatment in seedlings grown at low soil moisture treatment, but the high light significantly decreased the C i/C a in those seedlings. IWUE was significantly higher in the elevated compared with the ambient [CO2], and the effect was greater at high than the low light treatment. LCP did not respond to the soil moisture treatments when seedlings were grown in high light under both [CO2]. The low soil moisture significantly reduced Ψx but had no significant effect on the responses of other physiological traits to light or [CO2]. These results suggest that as the atmospheric [CO2] rises, the physiological performance of mountain maple seedlings in high light environments may be enhanced, particularly when soil moisture conditions are favourable.
机译:预计全球气候变化将影响植物如何应对其物理和生物环境。在这项研究中,我们研究了升高的CO2([CO2])和低土壤湿度对山枫(Acer spicatum L.)幼苗对光利用率的生理响应的影响。幼苗在常温(392 µmol mol -1 )下生长并升高(784 µmol mol -1 )[CO2],低和高土壤湿度(M)体制,在一个生长季节中,以高光(100%)和低光(30%)在温室中。我们测量了净光合作用(A),气孔导度(gs),瞬时水分利用效率(IWUE),最大羧化速率(V cmax),光合电子传输速率(J),磷酸三糖利用率(TPU)),叶片呼吸(R d),光补偿点(LCP)和午间射水势(Ψx)。在低土壤水分处理下生长的幼苗中,a和g s对光照没有明显反应,但是高光照显着降低了这些幼苗的C i / C a。与周围环境[CO2]相比,高处的IWUE显着更高,并且在高光下的效果比在弱光条件下更大。当两种[CO2]下高光下生长幼苗时,LCP对土壤水分处理没有反应。低的土壤水分显着降低了Ψx,但对其他生理性状对光或[CO2]的响应没有明显影响。这些结果表明,随着大气中[CO2]的升高,枫树幼苗在强光环境下的生理性能可能会增强,尤其是在土壤湿度条件有利的情况下。

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