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Photoacclimation strategies in northeastern Atlantic seagrasses: Integrating responses across plant organizational levels

机译:东北大西洋海草的光驯化策略:整合植物组织各个层面的响应

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摘要

Seagrasses live in highly variable light environments and adjust to these variations by expressing acclimatory responses at different plant organizational levels (meadow, shoot, leaf and chloroplast level). Yet, comparative studies, to identify species’ strategies, and integration of the relative importance of photoacclimatory adjustments at different levels are still missing. The variation in photoacclimatory responses at the chloroplast and leaf level were studied along individual leaves of Cymodocea nodosa, Zostera marina and Z. noltei, including measurements of variable chlorophyll fluorescence, photosynthesis, photoprotective capacities, non-photochemical quenching and D1-protein repair, and assessments of variation in leaf anatomy and chloroplast distribution. Our results show that the slower-growing C. nodosa expressed rather limited physiological and biochemical adjustments in response to light availability, while both species of faster-growing Zostera showed high variability along the leaves. In contrast, the inverse pattern was found for leaf anatomical adjustments in response to light availability, which were more pronounced in C. nodosa. This integrative plant organizational level approach shows that seagrasses differ in their photoacclimatory strategies and that these are linked to the species’ life history strategies, information that will be critical for predicting the responses of seagrasses to disturbances and to accordingly develop adequate management strategies.
机译:海草生活在高度可变的光照环境中,并通过在不同植物组织水平(草甸,枝条,叶片和叶绿体水平)表达适应性反应来适应这些变化。但是,仍然缺乏用于确定物种策略的比较研究,以及不同水平的光适应性调节相对重要性的整合。研究了沿着Cymodocea nodosa,Zostera marina和Z. noltei的各个叶片在叶绿体和叶片水平上光适应反应的变化,包括测量可变的叶绿素荧光,光合作用,光保护能力,非光化学猝灭和D1-蛋白修复,以及评估叶片解剖结构和叶绿体分布的变化。我们的结果表明,生长较慢的结节菜对光的利用率表达的生理和生化调节相当有限,而生长较快的Zostera的两个物种均沿叶显示出较高的变异性。相比之下,发现了对叶片解剖调整的反模式,以响应光的可利用性,这在结节梭菌中更为明显。这种综合性的植物组织层次方法表明,海草的光适应策略不同,并且这些与物种的生活史策略有关,这些信息对于预测海草对干扰的反应至关重要,并因此制定了适当的管理策略。

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