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叶片 CO2 扩散受损介导 Zn/Cd 超积累植物苦苣菜中 Cd 抑制光合作用。

Impaired leaf CO2 diffusion mediates Cd-induced inhibition of photosynthesis in the Zn/Cd hyperaccumulator Picris divaricata.

机构信息

School of Environmental Science and Engineering, Sun Yat-Sen University, Guangzhou 510275, China.

出版信息

Plant Physiol Biochem. 2013 Dec;73:70-6. doi: 10.1016/j.plaphy.2013.09.008. Epub 2013 Sep 18.

Abstract

Mechanisms of cadmium (Cd)-induced inhibition of photosynthesis in the Zn/Cd hyperaccumulator Picris divaricata were investigated using photosynthesis limitation analysis. P. divaricata seedlings were grown in nutrient solution containing 0, 5, 10, 25, 50, or 75 μM Cd for 2 weeks. Total limitations to photosynthesis (TL) increased from 0% at 5 μM Cd to 68.8% at 75 μM Cd. CO2 diffusional limitation (DL) made the largest contribution to TL, accounting for 93-98% of TL in the three highest Cd treatments, compared to just 2-7% of TL attributable to biochemical limitation (BL). Microscopic imaging revealed significantly decreased stomatal density and mesophyll thickness in the three highest Cd treatments. Chlorophyll fluorescence parameters related to photosynthetic biochemistry (Fv/Fm, NPQ, ΦPSII, and qP) were not significantly decreased by increased Cd supply. Our results suggest that increased DL in leaves is the main cause of Cd-induced inhibition of photosynthesis in P. divaricata, possibly due to suppressed function of mesophyll and stomata. Analysis of chlorophyll fluorescence showed that Cd supply had little effect on photochemistry parameters, suggesting that the PSII reaction centers are not a main target of Cd inhibition of photosynthesis in P. divaricata.

摘要

采用光合作用限制分析方法研究了镉(Cd)抑制 Zn/Cd 超富集植物鬼针草光合作用的机制。将鬼针草幼苗在含有 0、5、10、25、50 或 75μM Cd 的营养液中培养 2 周。总光合作用限制(TL)从 5μM Cd 时的 0%增加到 75μM Cd 时的 68.8%。CO2 扩散限制(DL)对 TL 的贡献最大,在三个 Cd 处理中占 TL 的 93-98%,而生物化学限制(BL)仅占 TL 的 2-7%。显微镜成像显示,在三个最高 Cd 处理中,气孔密度和叶肉厚度明显降低。与增加的 Cd 供应相比,与光合作用生物化学相关的叶绿素荧光参数(Fv/Fm、NPQ、ΦPSII 和 qP)没有显著降低。我们的结果表明,叶片中增加的 DL 是 Cd 抑制鬼针草光合作用的主要原因,可能是由于叶肉和气孔功能受到抑制。叶绿素荧光分析表明,Cd 供应对光化学参数几乎没有影响,这表明 PSII 反应中心不是 Cd 抑制鬼针草光合作用的主要靶标。

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