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首页> 外文期刊>Acta Botanica Brasilica >Ecophysiological performance of a threatened shrub under restored and natural conditions in a harsh tropical mountaintop environment
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Ecophysiological performance of a threatened shrub under restored and natural conditions in a harsh tropical mountaintop environment

机译:在恶劣的热带山顶环境中,经过恢复和自然条件下的濒危灌木的生理生态性能

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摘要

Ecophysiological responses of plants are useful for monitoring the success of ecological restoration projects that target species conservation. In this study we evaluated the ecophysiological traits of individuals of Chamaecrista semaphora from a natural population and from a site under restoration. Water potential and chlorophyll a fluorescence parameters were measured both in adult and young plants of the two populations. No difference in water potential was found between sites, but individuals in the restored site had higher water potential at predawn. Adults in the natural site presented lower daily values of potential quantum yield, indicating the occurrence of photoinhibition. Individuals in the restored site also presented higher maximum relative electron transport rate (ETRMAX). No difference was found in leaf carbon isotope discrimination values (σ13C) between plants growing in restored and natural sites, suggesting similar water use efficiency. These results indicate that C. semaphora individuals in the restored site had similar or better photosynthetic and water economy performances than individuals at the natural site. Methodologies traditionally employed to assess stress response of plants, such as chlorophyll a fluorescence and procedures used to evaluate the efficiency of water use, allowed us to verify the success of restoration procedures using an endangered species.
机译:植物的生态生理响应对于监测针对物种保护的生态恢复项目的成功很有用。在这项研究中,我们评估了自然种群和恢复地点的Chamaecrista semaphora个体的生理生理特性。在这两个种群的成年和年轻植物中都测量了水势和叶绿素a荧光参数。地点之间的水势没有差异,但是恢复地点的个体在黎明前的水势较高。天然地点的成年动物每天的潜在量子产值较低,表明发生了光抑制作用。恢复位点的个体也表现出更高的最大相对电子传输速率(ETRMAX)。在恢复的地点和自然地点生长的植物之间,叶片碳同位素判别值(σ13C)均未发现差异,表明水分利用效率相似。这些结果表明,恢复位点上的C. semaphora个体与自然位点上的个体相比具有相似或更好的光合作用和节水性能。传统上用于评估植物胁迫响应的方法,例如叶绿素a荧光和用于评估用水效率的程序,使我们能够验证使用濒危物种的恢复程序的成功。

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