王庆庆, 聂丽军, 王湦曼, 王丽红, 周青. 双酚A对植物影响的研究进展[J]. 中国生态农业学报(中英文), 2014, 22(9): 1002-1009. DOI: 10.13930/j.cnki.cjea.140388
引用本文: 王庆庆, 聂丽军, 王湦曼, 王丽红, 周青. 双酚A对植物影响的研究进展[J]. 中国生态农业学报(中英文), 2014, 22(9): 1002-1009. DOI: 10.13930/j.cnki.cjea.140388
WANG Qingqing, NIE Lijun, WANG Shengman, WANG Lihong, ZHOU Qing. Advances in the effects of bisphenol A on plants[J]. Chinese Journal of Eco-Agriculture, 2014, 22(9): 1002-1009. DOI: 10.13930/j.cnki.cjea.140388
Citation: WANG Qingqing, NIE Lijun, WANG Shengman, WANG Lihong, ZHOU Qing. Advances in the effects of bisphenol A on plants[J]. Chinese Journal of Eco-Agriculture, 2014, 22(9): 1002-1009. DOI: 10.13930/j.cnki.cjea.140388

双酚A对植物影响的研究进展

Advances in the effects of bisphenol A on plants

  • 摘要: 双酚A(BPA), 一种典型环境内分泌干扰物, 也是工业生产树脂、塑料以及涂料的原料, 在奶瓶、食品饮料包装、牙齿固封剂等材料中存在, 因其大规模的生产和广泛使用, 目前BPA在环境中已无所不在。近年来, 国内外学者主要研究了BPA对动物的影响, 而对植物影响的报道却相对较少。本文综述了BPA在植物体内的检测方法、对植物的影响(对种子萌发、植物地下器官、地上器官和藻类的影响等)、对植物影响的机理(对植物生长、光合作用和抗氧化系统的影响等)和植物修复等4个方面, 并指出未来BPA对植物影响的研究重点, 主要包括: 植物代谢、细胞形貌和超微结构、矿质元素及信号转导等的研究, 旨在为后续研究提供参考。

     

    Abstract: As a representative endocrine-disrupting chemical, bisphenol A (BPA) is a raw material used in industrial production of resin, plastic and coatings. These BPA-containing products are used in feeding bottles, food and drink packaging, water-supply pipes and teeth enclosed agents. It has been estimated that BPA production will exceed 3.7 million tons per year and global demand for BPA will increase substantially. Because of its large-scale production and extensive application, a large amount of BPA is continuously released into the environment. Thus BPA has been found ubiquitously in the environment, causing potential harm to living organisms. In contrast to vast literature on the effects of BPA on animals, only limited reports have dealt with the effects of BPA on plants. This paper reviewed the detection methods of BPA in plants, the effects of BPA on plants (including seed germination and growth of aboveground and underground organs of higher plants, and on the growth of algae), the mechanisms of BPA action on plants (including changes in cytokinin, nitrogen nutrients, photosynthesis and antioxidant systems), and the phytoremediation of BPA pollution. Finally, the focus of future research in the field of BPA was proposed. This included the effects of BPA on plant metabolism, cellular morphology and ultrastructure, mineral elements and signal transduction. This review provided relevant references on understanding the effects of BPA on plants. It also provided valuable insights into the action mechanisms of BPA on plants.

     

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