Department of Biological Sciences, Michigan Technological University, 1400 Townsend Drive, Houghton, MI 49931, USA.
School of Medicine, University of California, San Diego, San Diego, CA 92103, USA.
Chemosphere. 2018 Feb;193:903-911. doi: 10.1016/j.chemosphere.2017.11.087. Epub 2017 Nov 20.
Lead (Pb) contamination of residential soils in United States is attributed to use of Pb based paints prior to 1978 and their deterioration and accumulation in surface soils. Exposure to Pb due to ingestion and inhalation of Pb laden soil and dust causes neurological disorders, renal disorders, developmental and behavioral problems, particularly in children under the age of six. Vetiver grass is one of the leading choices for Pb remediation due to its ability to hyperaccumulate Pb, in addition to high biomass. In order to understand the effect of Pb on vetiver metabolic pathways, we compared the global metabolic changes in vetiver with that of maize, a Pb susceptible plant under Pb stress. Vetiver showed massive increase in levels of key metabolites in response to Pb, including amino acids, organic acids and coenzymes. Maize showed very modest increase in some of the same metabolites, and no change in others. The results provide the first indication of the difference in metabolic response of the hyperaccumulator, vetiver to lead stress as compared to maize.
美国住宅土壤中的铅污染归因于 1978 年以前使用含铅涂料,以及它们在表层土壤中的劣化和积累。由于摄入和吸入含铅土壤和灰尘,接触铅会导致神经系统疾病、肾脏疾病、发育和行为问题,特别是在 6 岁以下的儿童中。香根草是修复铅污染的主要选择之一,因为它不仅具有高生物量,而且还能够超积累铅。为了了解铅对香根草代谢途径的影响,我们比较了香根草和玉米(一种对铅敏感的植物)在铅胁迫下的全球代谢变化。香根草对铅的反应表现出关键代谢物水平的大量增加,包括氨基酸、有机酸和辅酶。玉米对一些相同的代谢物只表现出适度的增加,而对其他代谢物则没有变化。这些结果首次表明,与玉米相比,超积累植物香根草对铅胁迫的代谢反应存在差异。