Gasic Ksenija, Korban Schuyler S
Department of Natural Resources and Environmental Sciences, University of Illinois at Urbana-Champaign, 310 ERML, 1201 W. Gregory Dr., Urbana, IL 61801, USA.
Plant Mol Biol. 2007 Jul;64(4):361-9. doi: 10.1007/s11103-007-9158-7. Epub 2007 Mar 28.
Phytochelatins (PCs) are post-translationally synthesized thiol reactive peptides that play important roles in detoxification of heavy metal and metalloids in plants and other living organisms. The overall goal of this study is to develop transgenic plants with increased tolerance for and accumulation of heavy metals and metalloids from soil by expressing an Arabidopsis thaliana AtPCS1 gene, encoding phytochelatin synthase (PCS), in Indian mustard (Brassica juncea L.). A FLAG-tagged AtPCS1 gDNA, under its native promoter, is expressed in Indian mustard, and transgenic pcs lines have been compared with wild-type plants for tolerance to and accumulation of cadmium (Cd) and arsenic (As). Compared to wild type plants, transgenic plants exhibit significantly higher tolerance to Cd and As. Shoots of Cd-treated pcs plants have significantly higher concentrations of PCs and thiols than those of wild-type plants. Shoots of wild-type plants accumulated significantly more Cd than those of transgenic plants, while accumulation of As in transgenic plants was similar to that in wild type plants. Although phytochelatin synthase improves the ability of Indian mustard to tolerate higher levels of the heavy metal Cd and the metalloid As, it does not increase the accumulation potential of these metals in the above ground tissues of Indian mustard plants.
植物螯合肽(PCs)是翻译后合成的硫醇反应性肽,在植物和其他生物体中对重金属和类金属的解毒过程中发挥重要作用。本研究的总体目标是通过在印度芥菜(Brassica juncea L.)中表达编码植物螯合肽合酶(PCS)的拟南芥AtPCS1基因,培育出对土壤中重金属和类金属具有更高耐受性和积累能力的转基因植物。一个带有FLAG标签的AtPCS1基因组DNA在其天然启动子控制下在印度芥菜中表达,并且已将转基因pcs系与野生型植物在镉(Cd)和砷(As)的耐受性和积累方面进行了比较。与野生型植物相比,转基因植物对Cd和As表现出显著更高的耐受性。经Cd处理的pcs植物的地上部分中PCs和硫醇的浓度显著高于野生型植物。野生型植物地上部分积累的Cd显著多于转基因植物,而转基因植物中As的积累与野生型植物相似。尽管植物螯合肽合酶提高了印度芥菜耐受更高水平重金属Cd和类金属As的能力,但它并未增加这些金属在印度芥菜植物地上组织中的积累潜力。