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The effects of ionizing radiation on the structure and antioxidative and metal-binding capacity of the cell wall of microalga Chlorella sorokiniana

机译:电离辐射对微藻菌氏菌氏菌壁的结构和抗氧化和金属结合能力的影响

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摘要

The impact of ionizing radiation on microorganisms such as microalgae is a topic of increasing importance for understanding the dynamics of aquatic ecosystems in response to environmental radiation, and for the development of efficient approaches for bioremediation of mining and nuclear power plants wastewaters. Currently, nothing is known about the effects of ionizing radiation on the microalgal cell wall, which represents the first line of defence against chemical and physical environmental stresses. Using various microscopy, spectroscopy and biochemical techniques we show that the unicellular alga Chlorella sorokiniana elicits a fast response to ionizing radiation. Within one day after irradiation with doses of 1-5 Gy, the fibrilar layer of the cell wall became thicker, the fraction of uronic acids was higher, and the capacity to remove the main reactive product of water radiolysis increased. In addition, the isolated cell wall fraction showed significant binding capacity for Cu2+, Mn2+, and Cr3+. The irradiation further increased the binding capacity for Cu2+, which appears to be mainly bound to glucosamine moieties within a chitosan-like polymer in the outer rigid layer of the wall. These results imply that the cell wall represents a dynamic structure that is involved in the protective response of microalgae to ionizing radiation. It appears that microalgae may exhibit a significant control of metal mobility in aquatic ecosystems via biosorption by the cell wall matrix. (C) 2020 Elsevier Ltd. All rights reserved.
机译:电离辐射对微生物等微生物的影响是对理解水生生态系统的动态的重要性,以应对环境辐射,以及开发采矿和核电站生物修复的有效方法。目前,关于电离辐射对微藻壁壁的影响的任何内容都不知道,这代表了化学和物理压力的第一道防线。使用各种显微镜,光谱学和生物化学技术,我们表明单细胞藻类藻藻菌氏菌岛对电离辐射的快速响应。在用1-5 GY的剂量照射后的一天内,细胞壁的纤维层变厚,核酸酸的级数较高,并且除去水辐射的主要反应产物的能力增加。另外,分离的细胞壁部分显示出Cu 2 +,Mn2 +和Cr3 +的显着结合能力。辐射进一步提高了Cu2 +的结合能力,这似乎主要与壁的外刚性层中的壳聚糖样聚合物中的葡糖胺部分结合在壁的外刚性层中。这些结果意味着细胞壁代表动态结构,其参与微藻对电离辐射的微藻的保护响应。似乎微藻可以通过细胞壁基质的生物吸附在水生生态系统中表现出对金属迁移率的显着控制。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Chemosphere》 |2020年第12期|127553.1-127553.8|共8页
  • 作者单位

    Univ Belgrade Inst Multidisciplinary Res Dept Life Sci Kneza Vgeslava 1 Belgrade 11030 Serbia;

    Univ Belgrade Inst Multidisciplinary Res Dept Life Sci Kneza Vgeslava 1 Belgrade 11030 Serbia|Univ Belgrade Inst Applicat Nucl Energy Banatska 31b Belgrade 11080 Serbia;

    Baylor Univ Ctr Microscopy & Imaging One Bear Pl 97046 Waco TX 76798 USA;

    Univ Belgrade Inst Multidisciplinary Res Dept Life Sci Kneza Vgeslava 1 Belgrade 11030 Serbia|Univ Belgrade Fac Chem Studentski Trg 12-16 Belgrade 11001 Serbia;

    Univ Belgrade Inst Multidisciplinary Res Dept Life Sci Kneza Vgeslava 1 Belgrade 11030 Serbia;

    Univ Belgrade Inst Multidisciplinary Res Dept Life Sci Kneza Vgeslava 1 Belgrade 11030 Serbia;

    Varicon Aqua Ball Mill Top Business Pk Unit 12 Hallow WR2 6PD England;

    Univ Manchester Sch Nat Sci Dept Earth & Environm Sci Michael Smith Bldg Oxford Rd Manchester M13 9PT Lancs England;

    Univ Belgrade Inst Multidisciplinary Res Dept Life Sci Kneza Vgeslava 1 Belgrade 11030 Serbia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Alga; Cell wall; Copper; Radiation;

    机译:藻类;细胞壁;铜;辐射;

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