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Sulfide Intrusion and Detoxification in the Seagrass Zostera marina

机译:海草Zostera码头中的硫化物入侵和排毒

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摘要

Gaseous sulfide intrusion into seagrasses growing in sulfidic sediments causes little or no harm to the plant, indicating the presence of an unknown sulfide tolerance or detoxification mechanism. We assessed such mechanism in the seagrass Zostera marina in the laboratory and in the field with scanning electron microscopy coupled to energy dispersive X-ray spectroscopy, chromatographic and spectrophotometric methods, and stable isotope tracing coupled with a mass balance of sulfur compounds. We found that Z. marina detoxified gaseous sediment-derived sulfide through incorporation and that most of the detoxification occurred in underground tissues, where sulfide intrusion was greatest. Elemental sulfur was a major detoxification compound, precipitating on the inner wall of the aerenchyma of underground tissues. Sulfide was metabolized into thiols and entered the plant sulfur metabolism as well as being stored as sulfate throughout the plant. We conclude that avoidance of sulfide exposure by reoxidation of sulfide in the rhizosphere or aerenchyma and tolerance of sulfide intrusion by incorporation of sulfur in the plant are likely major survival strategies of seagrasses in sulfidic sediments.
机译:气体硫化物侵入生长在硫化物沉积物中的海草中,对植物的危害很小或没有危害,表明存在未知的硫化物耐受性或解毒机理。我们在实验室和现场的海草Zostera滨海中通过扫描电子显微镜,能量色散X射线光谱法,色谱法和分光光度法,以及稳定的同位素示踪和硫化合物的质量平衡,评估了这种机理。我们发现Z. marina通过掺入解毒了气态沉积物衍生的硫化物,并且大部分解毒发生在地下组织中,其中硫化物的入侵最大。元素硫是主要的排毒化合物,沉淀在地下组织的气孔内壁上。硫化物被代谢成硫醇,进入植物体内的硫代谢,并作为硫酸盐存储在整个植物中。我们得出的结论是,避免根际或气孔内的硫化物再氧化而暴露于硫化物,以及通过在植物中掺入硫来耐受硫化物入侵,这可能是硫化物沉积物中海草的主要生存策略。

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