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Photosynthetic response of poikilochlorophyllous desiccation-tolerant Pleurostima purpurea (Velloziaceae) to dehydration and rehydration.

机译:鬼臼叶绿素耐干燥紫叶侧耳科(Pellourostima purpurea(Velloziaceae))对脱水和复水的光合作用响应。

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摘要

The poikilochorophyllous, desiccation-tolerant (PDT) angiosperm, Pleurostima purpurea, normally occurs in less exposed rock faces and slightly shady sites. Our aim was to evaluate the light susceptibility of the photosynthetic apparatus during dehydration-rehydration cycle in P. purpurea. In a controlled environment, the potted plants were subjected to water deficit under two different photosynthetic photon flux densities [PPFD, 100 and 400 μmol(photon) m?2 s?1]. In the higher PPFD, net photosynthetic rate (PN) become undetectable after stomata closure but photochemical efficiency of photosystem II, electron transport rate, and photochemical quenching coefficient were maintained relatively high, despite a partial decrease. The photochemical activity was inhibited only after the complete loss of chlorophylls, when leaf relative water content dropped below 72% and total carotenoids reached maximal accumulation. Nonphotochemical energy dissipation increased earlier in response to dehydration under higher PPFD. PN and photochemical activity were fully recovered after rehydration under both light treatments. Our results suggested that the natural occurrence of P. purpurea should not be restricted by the light intensity during the complete desiccation-rehydration cycles. Additional key words: chlorophyll fluorescence; gas exchange; photoprotective mechanisms; vegetative desiccation tolerance
机译:鬼臼叶绿素,耐干燥(PDT)被子植物,Pleurostima purpurea,通常发生在裸露较少的岩石表面和稍微阴暗的地方。我们的目的是评估紫斑病菌在脱水-脱水循环过程中光合装置的光敏感性。在受控环境中,盆栽植物在两种不同的光合作用光子通量密度[PPFD,100和400μmol(光子)m?2 s?1]下遭受水分亏缺。在较高的PPFD中,气孔关闭后无法检测到净光合速率(PN),但是尽管部分降低,但光系统II的光化学效率,电子传输速率和光化学猝灭系数仍保持较高。仅当叶绿素完全丧失后,当叶片相对含水量降至72%以下且总类胡萝卜素达到最大积累量时,光化学活性才受到抑制。在较高的PPFD下,脱水会导致非光化学能耗散的增加。两种光照条件下复水后,PN和光化学活性完全恢复。我们的结果表明,在整个干燥-补充水分循环过程中,紫杉的自然发生不应受到光强度的限制。附加关键词:叶绿素荧光气体交换;光保护机制;营养干燥耐性

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