佐斯特拉码头
海草
背景(考古学)
光合作用
硫化物
硫黄
环境化学
硫化氢
生态学
生物
化学
植物
生态系统
古生物学
有机化学
作者
Yu Zhang,Shidong Yue,Yaping Gao,Peng Zhao,Mingjie Liu,Yongliang Qiao,Shaochun Xu,Ruiting Gu,Xiaomei Zhang,Yi Zhou
摘要
Sulfide in sediment porewaters, is toxic to rooted macrophytes in both marine and freshwater environments. Current research on sulfide stress in seagrasses primarily focuses on morphological and physiological aspects, with little known about the molecular response and resistance mechanisms. This study first investigated the damage caused by sulfide to eelgrass (Zostera marina L.) using transcriptomic, metabolomic, and other physiological and biochemical indicators and explored the potential resistance of eelgrass at molecular level through laboratory simulated and in-situ sulfide stress experiments. Comprehensive results showed that sulfide stress severely inhibited the growth, photosynthesis, and antioxidant enzyme activities of eelgrass. Importantly, transcriptome analysis revealed significant activation of pathways related to carbohydrate and sulfur metabolism. This activation served a dual purpose: providing an energy source for eelgrass stress response and achieving detoxification through accelerated sulfur metabolism-a potential resistance mechanism. The toxicity of sulfide increased with rising temperature as evidenced by a decrease in EC
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