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首页> 外文期刊>Environmental and experimental botany >Consecutive submergence and de-submergence both impede growth of a riparian plant during water level fluctuations with different frequencies
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Consecutive submergence and de-submergence both impede growth of a riparian plant during water level fluctuations with different frequencies

机译:连续的潜水和脱垫两者都妨碍了在水位在不同频率的水位波动期间生长

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Repeated exposure to submergence and de-submergence may induce acclimation in plants growing in riparian areas. However, the effect of each consecutive submergence and de-submergence event has not been evaluated separately. We subjected a riparian species Alternanthera philoxeroides to two different fluctuation frequencies: low fluctuation frequency (LFF) and high fluctuation frequency (HFF). Consecutive submergence and de-submergence had comparable negative effects on growth of A. philoxeroides, while they respectively down- and up regulated photosynthetic electron transport in both LFF and HFF. The submergence effects on growth were significantly smaller in the 2nd cycle than in the 1 st cycle of LFF, suggesting reduced tissue loss in the 2nd cycle as a result of acclimation. In HFF, the growth of A. philoxeroides was more strongly suppressed than in LFF. During de-submergence, biomass increased in both control and de-submerged plants in LFF, whereas growth recovery was not always seen in HFF. At the end of the experiment, the treatment plants in HFF had only 50% biomass of the corresponding plants in LFF. Although HFF enhances tissue loss during submergence and thus impairs growth recovery more strongly during de-submergence than LFF, both LFF and HFF induced photosynthetic, photoprotective or growth acclimation in A. philoxeroides.
机译:反复接触淹没和去淹没可能会诱导河岸地区生长的植物的适应。然而,尚未分别评估每种连续潜水和去潜水事件的效果。我们将一个河岸物种交替的Philoxeroides与两个不同的波动频率进行:低波动频率(LFF)和高波动频率(HFF)。连续的潜水和脱乳液对Philoxeroides的生长具有相当的负面影响,而分别在LFF和HFF中分别下调和上调的光合电子传输。第2周期中的淹没对生长的影响显着小于LFF的第1周期,表明由于适应而减少了第2周期中的组织损失。在HFF中,A. Philoxeroides的生长比LFF更强烈地抑制。在去潜水期间,在LFF中的控制和脱淹植物中的生物质增加,而在HFF中并不总是看到生长恢复。在实验结束时,HFF中的治疗植物在LFF中仅具有50%的相应植物生物量。尽管HFF在潜水期间增强了组织损失,因此在脱垫期间比LFF更强烈地损害生长回收,但LFF和HFF诱导的光合作用,光预防或生长适应在Philoxeroides中。

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