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Effects of different light intensities, CO2 concentrations, temperatures and drought stress on photosynthetic activity in two paleoendemic resurrection plant species Ramonda serbica and R-nathaliae

机译:不同光强度,CO2浓度,温度和干旱胁迫对两种古地方性复活植物物种Ramonda serbica和R-nathaliae光合活性的影响

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Ramonda serbica and R. nathaliae are rare resurrection flowering plants of the northern hemisphere. Although their habitats on the north-exposed slopes of canyons and gorges are similar, those inhabited by R. nathaliae are more varied in terms of humidity, temperature and type of bedrock. These fine differences in ecological preference lead us to ask whether diploid R. nathaliae is ecologically more plastic than hexaploid R. serbica. Photosynthetic performance and fluorescence parameters are central in evaluating a plant's capacity to withstand extreme environmental conditions. We have compared the effects of various light intensities, CO2 concentrations and temperatures on the photosynthetic response of well hydrated plants of the two species. We also tracked changes in chlorophyll a fluorescence, photochemical efficiency and non-photochemical quenching during plant desiccation. The results have shown that both species have a low compensation point and low dark respiration that are indispensable for their survival at shaded and humid sites; only there are they able to maintain an appropriate equilibrium between positive net carbon gain and optimal water status. Under conditions of saturating light and CO2, net CO2 uptake was always higher in R. nathaliae that showed lower sensitivity to temperatures between 25 degrees C and 40 degrees C. Moreover, the leaves of R. nathaliae are amphistomatic, with smaller but more numerous stomata than those in the hypostomatic leaves of R. serbica. These xeromorphic characters of R. nathaliae suggest the better regulation of gas exchange and efficiency of water use, under the conditions of everyday short periods of direct sunlight and higher temperatures, making it possible for this species to inhabit more open, warm and dry habitats than R. serbica. Pronounced drought stress induced, in both species, strong decline in fluorescence parameters, photochemical quenching and chain electron transport rate. At the same time the exceptionally high non-photochemical quenching provided the main and highly effective mechanism of energy dissipation and protection against over-excitation. Although being homoiochlorophyllous, chloroplasts in desiccated plants are well protected from photodamage in two ways. First, the leaves are curled inward with the palisade tissue oriented to the inner side of the leaf. Second, the lower epidermis, that hence becomes exposed to sunlight, is densely covered with dark non-glandular hairs and is rich in carotenoids, anthocyanins and phenolics. All this protects desiccated plant tissues against excessive light induced damage. (C) 2014 Elsevier B.V. All rights reserved.
机译:Ramonda serbica和R. nathaliae是北半球罕见的复活开花植物。尽管它们在峡谷和峡谷向北暴露的山坡上的栖息地相似,但纳塔利河豚的栖息地在湿度,温度和基岩类型方面差异更大。这些在生态偏好上的细微差别使我们想知道二倍体纳塔利氏菌在生态学上是否比六倍体R. serbica具有更多的可塑性。光合性能和荧光参数对于评估植物抵御极端环境条件的能力至关重要。我们已经比较了各种光强度,CO2浓度和温度对这两个物种水合良好的植物的光合响应的影响。我们还跟踪了植物干燥过程中叶绿素a荧光,光化学效率和非光化学猝灭的变化。结果表明,这两种物种的补偿点低,暗呼吸低,这对于它们在阴暗潮湿的地方生存是必不可少的。只有它们能够在正的净碳增加量与最佳水状况之间保持适当的平衡。在饱和光和CO2的条件下,R。nathaliae的净CO2吸收始终较高,对25摄氏度至40摄氏度之间的温度显示较低的敏感性。此外,R。nathaliae的叶片是两亲性的,气孔较小但数量较多比R. serbica的假说叶中的那些。 R. nathaliae的这些亚纯性特征表明,在每天短时直射阳光和较高温度的条件下,对气体交换和水利用效率的调节更好,这使该物种比其他物种能够居住在更开放,温暖和干燥的栖息地。 R. serbica。在两个物种中,明显的干旱胁迫都导致荧光参数,光化学猝灭和链电子传输速率的强烈下降。同时,极高的非光化学猝灭提供了主要的,高效的能量耗散机制,并提供了防止过度励磁的机制。尽管是干叶绿素,但通过两种方式可以很好地保护干燥植物中的叶绿体免受光害。首先,叶子向内卷曲,栅栏组织朝向叶子内侧。其次,下表皮因此暴露于阳光下,被深色的非腺毛密集地覆盖着,并富含类胡萝卜素,花色苷和酚类。所有这些保护干燥的植物组织免受过度的光诱导的伤害。 (C)2014 Elsevier B.V.保留所有权利。

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