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首页> 外文期刊>Algae >Effects of Six Antibiotics on the Activity of the Photosynthetic Apparatus and Ammonium Uptake of Thallus of Porphyra yezoensis
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Effects of Six Antibiotics on the Activity of the Photosynthetic Apparatus and Ammonium Uptake of Thallus of Porphyra yezoensis

机译:六种抗生素对紫叶紫菜光合装置活性和氨水吸收的农杆菌的影响

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The modern integrated fish-seaweed mariculture has been tested to reduce the environmental impacts of an intensive fed culture. To obtain the best seaweed bioremediation performance, the effects of therapeutants used for fish disease control on the selected seaweed species should be considered. As a selected seaweed, Porphyra yezoensis was tested with six commercial antibiotics including erythromycin thiocyanate_A, erythromycin thiocyanate_B, oxytetracycline, doxycycline, pefloxacin, and amoxicillin trihydrate under the batch incubation at a photon flux density of 10 mol at 15 . Among the tested commercial antibiotics, erythromycin thiocyanate_A, erythromycin thiocyanate_B, oxytetracycline, and doxycycline showed decreases in Fv/Fm, the photochemical efficiency of photosystem II, with a dose-dependant and time-dependant manner. From the quenching analysis of chlorophyll fluorescence, three differential patterns were observed in the antibiotics-treated Porphyra: (1) high nonphotochemical quenching (NPQ) and low photochemical quenching (qP) in the cases of Erythromycin thiocyanate_B and amoxicillin trihydrate, (2) high NPQ and high qP in the case of pefloxacin and (3) low NPQ and low qP in the case of oxytetracycline. These results indicated that antibiotics affected in various ways on the photosynthetic apparatus, reflecting differential lesion sites of antibiotics. In addition, the rates of ammonium uptake also decreased with a decrease of Fv/Fm in P. yezoensis thalli treated with erythromycin thiocyanate_B and oxytetracycline. Therefore, the four antibiotics mentioned could affect the bioremediation capacity of the selected seaweed species in the integrated fish-seaweed mariculture system due to the decrease of photosynthetic activity and the simultaneous decrease of ammonium uptake.
机译:已对现代鱼类海藻综合海水养殖进行了测试,以减少集约化养殖的环境影响。为了获得最佳的海藻生物修复性能,应考虑用于鱼类疾病控制的治疗剂对所选海藻物种的影响。作为一种选择的紫菜,紫菜已用六种商用抗生素进行了测试,包括在15的光子通量密度下于10 mol的分批温育下的硫氰酸红霉素A,红霉素硫氰酸盐B,土霉素,强力霉素,培氟沙星和阿莫西林三水合物。在测试的商业抗生素中,红霉素硫氰酸酯_A,红霉素硫氰酸酯_B,土霉素和强力霉素显示出Fv / Fm降低,即光系统II的光化学效率,呈剂量依赖性和时间依赖性。根据叶绿素荧光的猝灭分析,在用抗生素处理的紫菜中观察到三种不同的模式:(1)硫氰酸红霉素_B和阿莫西林三水合物的情况为高非光化学猝灭(NPQ)和低光化学猝灭(qP),(2)培氟沙星为NPQ和高qP,(3)土霉素为低NPQ和低qP。这些结果表明,抗生素以各种方式影响光合作用,反映了不同的病变部位。此外,红霉素硫氰酸盐_B和土霉素处理后的夜蛾P. yezoensis thalli的Fv / Fm降低,铵的吸收率也降低。因此,由于光合活性的下降和铵盐吸收的下降,上述四种抗生素可能会影响鱼类-海藻综合养殖系统中所选海藻物种的生物修复能力。

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