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United States Gulf of Mexico Coastal Marsh Vegetation Responses and Sensitivities to Oil Spill: A Review

机译:美国墨西哥湾沿海沼泽植被对溢油的响应和敏感性:综述

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The present review summarizes the literature on the effects of oil spill on the U.S. Gulf of Mexico coastal vegetation including freshwater-, brackish-, and salt-marshes. When in contact with plant tissues, oil may have adverse impacts via physical and chemical effects. Oil may also become detrimental to plants by covering soil surfaces, leading to root oxygen stress and/or penetrate into the soil where it becomes in contact with the roots. The affected vegetation may survive the impact by producing new leaves, however, an episode of oil spill may impose severe stress. Oil spills may lead to partial or complete plant death but in many situations plants recover by regenerating new shoots. Plant sensitivity to oil varies among species; plants from salt marshes appear to be more sensitive than freshwater species. In addition, sensitivity appears to be dependent on the oil characteristics and the quantity of oil being spilled, repeated oiling events, season of spill, greenhouse vs. field conditions, and plant age are among the many factors that interact simultaneously. Many aspects of coastal plant responses to oiling remain in need of additional research, including the possibility that differences in oil sensitivity may interact with changes in the environment, and contribution to additional wetland losses through coastal erosion. Environmental stressors such as drought and salinity may also interact with oil, leading to the observed changes in plant species community composition following an oil spill.
机译:本综述总结了有关溢油对美国墨西哥湾沿岸植被(包括淡水,微咸水和盐沼)的影响的文献。与植物组织接触时,油可能通过物理和化学作用产生不利影响。油也可能通过覆盖土壤表面而对植物有害,从而导致根部氧胁迫和/或渗透到土壤中,使其与根部接触。受影响的植被可能会通过产生新的叶子而幸免于难,但是,溢油事件可能会带来严重的压力。漏油可能导致植物部分或全部死亡,但在许多情况下,植物会通过再生新芽而恢复。植物对油的敏感性因物种而异;来自盐沼的植物似乎比淡水物种更敏感。此外,敏感性似乎取决于油的特性和所泄漏的油量,重复的上油事件,泄漏的季节,温室与田间条件以及植物年龄是同时相互作用的许多因素。沿海植物对油脂的反应的许多方面仍然需要进一步的研究,包括对石油敏感性的差异可能与环境变化相互作用的可能性,以及由于海岸侵蚀而造成的额外湿地损失的贡献。诸如干旱和盐分之类的环境压力因素也可能与油类相互作用,导致在漏油后观察到的植物物种群落组成发生变化。

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