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首页> 外文期刊>Acta Botanica Brasilica >Hypnea musciformis (Wulfen) J. V. Lamour. (Gigartinales, Rhodophyta) responses to gasoline short-term exposure: biochemical and cellular alterations
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Hypnea musciformis (Wulfen) J. V. Lamour. (Gigartinales, Rhodophyta) responses to gasoline short-term exposure: biochemical and cellular alterations

机译:mushyformnea musciformis(Wulfen)J.V.Lamour。 (Gigartinales,Rhodophyta)对汽油短期暴露的反应:生化和细胞改变

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Presence of toxic compounds in marine coastal waters has increased exponentially since Industrial Revolution. In this way, we aimed to evaluate biochemical and physiological changes occurring within Hypnea musciformis after short-term exposure to gasoline. Hypnea musciformis was cultivated without gasoline and then exposed to various concentrations of it (0.001 % - 1.0 %, v/v) for periods of 30 min, 1 h, 12 h and 24 h. A Pricncipal Compound Analysis of UV-vis spectral window (200-700 nm) was able to discriminate gasoline-exposed samples according to both exposure time and gasoline concentration. Changes in carotenoid profile composition were observed. Decreased carotenoid content was associated to gasoline exposure time, being lutein and trans -β-carotene the major compounds found. Higher gasoline concentrations negatively interfered with phenolic compounds accumulation. In addition, increased gasoline concentrations corresponded to decreased intracellular starch grains content as well as increased its deposition on cell wall external surface. Data obtained allow us to conclude that gasoline can damage Hypnea musciformi s physiology and cell morphology. This is important, considering Hypnea musciformi s carotenoids and phenolics are potential biomarkers of environmental stress investigated, as well as its increased cell wall thickness to avoid gasoline diffusion.
机译:自工业革命以来,海洋沿海水域中有毒化合物的数量呈指数增长。通过这种方式,我们旨在评估短期暴露于汽油后在呼吸型呼吸不足中发生的生化和生理变化。在不使用汽油的情况下培养无呼吸呼吸器,然后将其暴露于各种浓度(0.001%-1.0%,v / v)中,持续30分钟,1小时,12小时和24小时。紫外-可见光谱窗口(200-700 nm)的主要化合物分析能够根据暴露时间和汽油浓度来区分汽油暴露的样品。观察到类胡萝卜素轮廓组成的变化。类胡萝卜素含量的降低与汽油暴露时间有关,叶黄素和反式-β-胡萝卜素是发现的主要化合物。较高的汽油浓度会对酚类化合物的积累产生负面影响。另外,增加的汽油浓度对应于减少的细胞内淀粉颗粒含量以及增加其在细胞壁外表面上的沉积。所获得的数据使我们得出结论,汽油可能会损害肌肉呼吸不足(Hypernea musciformi)的生理和细胞形态。这很重要,考虑到Hypernea musciformi的类胡萝卜素和酚类物质是研究环境压力的潜在生物标志物,并且其细胞壁厚度增加以避免汽油扩散。

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