Actual address: Department of Sustainable Agro-Ecosystems and Bioresources, Research and Innovation Centre, Fondazione Edmund Mach, San Michele all'Adige, Italy; Department of Biotechnology, University of Study of Verona, St. Le Grazie 15, Verona, Italy.
Department of Biotechnology, University of Study of Verona, St. Le Grazie 15, Verona, Italy.
N Biotechnol. 2017 Mar 25;35:54-61. doi: 10.1016/j.nbt.2016.11.006. Epub 2016 Nov 27.
Cadmium (Cd) is a toxic trace element released into the environment by industrial and agricultural practices, threatening the health of plants and contaminating the food/feed chain. Biotechnology can be used to develop plant varieties with a higher capacity for Cd accumulation (for use in phytoremediation programs) or a lower capacity for Cd accumulation (to reduce Cd levels in food and feed). Here we generated transgenic tobacco plants expressing components of the Pseudomonas putida CzcCBA efflux system. Plants were transformed with combinations of the CzcC, CzcB and CzcA genes, and the impact on Cd mobilization was analysed. Plants expressing PpCzcC showed no differences in Cd accumulation, whereas those expressing PpCzcB or PpCzcA accumulated less Cd in the shoots, but more Cd in the roots. Plants expressing both PpCzcB and PpCzcA accumulated less Cd in the shoots and roots compared to controls, whereas plants expressing all three genes showed a significant reduction in Cd levels only in shoots. These results show that components of the CzcCBA system can be expressed in plants and may be useful for developing plants with a reduced capacity to accumulate Cd in the shoots, potentially reducing the toxicity of food/feed crops cultivated in Cd-contaminated soils.
镉(Cd)是一种由工业和农业活动释放到环境中的有毒微量元素,威胁着植物的健康,并污染了食物链。生物技术可用于开发具有更高镉积累能力的植物品种(用于植物修复计划)或更低镉积累能力的植物品种(以降低食品和饲料中的镉含量)。在这里,我们生成了表达假单胞菌 CzcCBA 外排系统成分的转基因烟草植物。植物被转化为 CzcC、CzcB 和 CzcA 基因的组合,并分析了对 Cd 迁移的影响。表达 PpCzcC 的植物在 Cd 积累方面没有差异,而表达 PpCzcB 或 PpCzcA 的植物在地上部分积累的 Cd 较少,但在根部积累的 Cd 较多。与对照相比,同时表达 PpCzcB 和 PpCzcA 的植物在地上部和根部的 Cd 积累量都减少了,而表达所有三个基因的植物仅在地上部显著降低了 Cd 水平。这些结果表明,CzcCBA 系统的成分可以在植物中表达,并且可能有助于开发地上部 Cd 积累能力降低的植物,从而降低在 Cd 污染土壤中种植的粮食/饲料作物的毒性。