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卷柏科复苏植物卷柏茎卷曲可减轻光抑制作用。

Reduced photoinhibition with stem curling in the resurrection plant Selaginella lepidophylla.

作者信息

Lebkuecher Jefferson G, Eickmeier William G

机构信息

Department of Biology, Vanderbilt University, 37235, Nashville, TN, USA.

出版信息

Oecologia. 1991 Dec;88(4):597-604. doi: 10.1007/BF00317725.

Abstract

Selaginella lepidophylla, the resurrection plant, curls dramatically during desiccation and the hypothesis that curling may help limit bright light-induced damage during desiccation and rehydration was tested under laboratory conditions. Restraint of curling during desiccation at 25° C and a constant irradiance of 2000 μmol m s significantly decreased PSII and whole-chain electron transport and the F/F fluorescence yield ratio following rehydration relative to unrestrained plants. Normal curling during desiccation at 37.5°C and 200 μmol m s irradiance did not fully protect against photoinhibition or chlorophyll photooxidation indicating that some light-induced damage occurred early in the desiccation process before substantial curling. Photosystem I electron transport was less inhibited by high-temperature, high-irradiance desiccation than either PSII or whole-chain electron transport and PSI was not significantly affected by restraint of curling during desiccation at 25°C and high irradiance. Previous curling also helped prevent photoinhibition of PSII electron transport and loss of whole-plant photosynthetic capacity as the plants uncurled during rehydration at high light. These results demonstrate that high-temperature desiccation exacerbated photoinhibition, PSI was less photoinhibited than PSII or whole-chain electron transport, and stem curling ameliorated bright light-induced damage helping to make rapid recovery of photosynthetic competence possible when the plants are next wetted.

摘要

卷柏,即复苏植物,在脱水过程中会剧烈卷曲。本研究在实验室条件下验证了一个假说:卷曲可能有助于减少脱水和复水过程中强光诱导的损伤。与未受限制的植株相比,在25°C和2000 μmol m⁻² s⁻¹的恒定辐照度下进行脱水时抑制卷曲,显著降低了PSII和全链电子传递,以及复水后的F/F₀荧光产量比。在37.5°C和200 μmol m⁻² s⁻¹辐照度下脱水时正常卷曲,不能完全防止光抑制或叶绿素光氧化,这表明在大量卷曲之前的脱水过程早期就发生了一些光诱导损伤。与PSII或全链电子传递相比,光系统I电子传递受高温、高辐照度脱水的抑制较小,并且在25°C和高辐照度下脱水时,卷曲的抑制对PSI没有显著影响。先前的卷曲还有助于防止PSII电子传递的光抑制以及整株植物光合能力的丧失,因为植株在高光下复水时会展开。这些结果表明,高温脱水加剧了光抑制,PSI比PSII或全链电子传递受光抑制的程度小,茎卷曲减轻了强光诱导的损伤,有助于植株下次被润湿时光合能力的快速恢复。

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