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Ecophysiological responses and self-protective canopy effects of surfgrass (Phyllospadix torreyi) in the intertidal

天蓬 开枪 渗透压 潮间带 光合作用 植物 干燥 生物 园艺 生态学
作者
Leonardo Ruiz‐Montoya,José Miguel Sandoval-Gil,María Dolores Belando‐Torrentes,Manuel Vivanco‐Bercovich,Alejandro Cabello‐Pasini,Laura Karina Rangel-Mendoza,Alejandra Maldonado-Gutiérrez,Alejandra Ferrerira-Arrieta,Jose Manuel Guzmán‐Calderón
出处
期刊:Marine Environmental Research [Elsevier]
卷期号:172: 105501-105501 被引量:6
标识
DOI:10.1016/j.marenvres.2021.105501
摘要

Intertidal seagrasses are subjected to desiccation and direct solar radiation during low tides. It is assumed that the canopy structure can self-protect the underlying shoots during these events, although there is no evidence on a physiological basis. The physiological responses of the surfgrass Phyllospadix torreyi were examined when emerged during low tide, on i) shoots overlaying the canopy, and ii) shoots sheltered within the canopy. Leaf water potential and water content decreased in external leaves after emersion, and the higher concentration of organic osmolytes reflected osmoregulation. Additionally, these shoots also exhibited a drastic reduction in carbohydrates after re-immersion, likely from cellular damage. Lipid peroxidation and antioxidant activity increments were also detected, while photosynthetic efficiency strongly diminished from direct exposure to solar radiation. Conversely, the sheltered shoots did not dehydrate and solely accumulated some oxidative stress, likely resulting from the warming of the canopy. In conclusion, the leaf canopy structure buffers physiological stress in the sheltered shoots, thus acting as a self-protective mechanism to cope with emersion.

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