Department of Civil and Environmental Engineering, Southern Illinois University Carbondale, Carbondale, IL 62901, USA.
Sci Total Environ. 2010 Jul 15;408(16):3053-61. doi: 10.1016/j.scitotenv.2010.03.031.
The rapid development and potential release of engineered nanoparticles (ENPs) have raised considerable concerns due to the unique properties of nanomaterials. An important aspect of the risk assessment of ENPs is to understand the interactions of ENPs with plants, an essential base component of all ecosystems. The impact of ENPs on plant varies, depending on the composition, concentration, size and other important physical chemical properties of ENPs and plant species. Both enhancive and inhibitive effects of ENPs on plant growth at different developmental stages have been documented. ENPs could be potentially taken up by plant roots and transported to shoots through vascular systems depending upon the composition, shape, size of ENPs and plant anatomy. Despite the insights gained through many previous studies, many questions remain concerning the fate and behavior of ENPs in plant systems such as the role of surface area or surface activity of ENPs on phytotoxicity, the potential route of entrance to plant vascular tissues and the role of plant cell walls in internalization of ENPs. This article reviewed the current knowledge on the phytotoxicity and interactions of ENPs with plants at seedling and cellular levels and discussed the information gap and some immediate research needs to further our knowledge on this topic.
由于纳米材料的独特性质,工程纳米粒子(ENPs)的快速发展和潜在释放引起了相当大的关注。ENPs 风险评估的一个重要方面是了解 ENPs 与植物的相互作用,植物是所有生态系统的基本组成部分。ENPs 对植物的影响因 ENPs 和植物物种的组成、浓度、大小和其他重要物理化学性质而异。已经有文献记录了 ENPs 在不同发育阶段对植物生长的促进和抑制作用。ENPs 可以根据其组成、形状和大小以及植物解剖结构,通过根系被植物吸收,并通过维管系统运输到地上部分。尽管通过许多先前的研究获得了一些见解,但关于 ENPs 在植物系统中的命运和行为仍存在许多问题,例如 ENPs 的表面积或表面活性对植物毒性的作用、进入植物维管组织的潜在途径以及植物细胞壁在 ENPs 内化中的作用。本文综述了目前关于 ENPs 在幼苗和细胞水平上对植物的毒性和相互作用的知识,并讨论了信息差距和一些当前的研究需求,以进一步了解这一主题。