MAPK2 AND NRAMP6 EXPRESSION ANALYSIS UNDER CD STRESS IN DOMESTIC KALE VARIETIES FROM BiH

Jasmin Šutković, Annissa Van Wieren, A. Yildirim
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Abstract

Brassica oleracea var. acephala (kale) is a worldwide known vegetable plant, known for its heavy metal accumulation abilities. This study analyzed the phytoremediation potential of domestic BiH kale varieties, grown in a controlled environment and with different concentrations of Cadmium (Cd). Cd is a known pollutant found in small concentrations in soil under normal environmental conditions. Real-Time PCR was used to analyze the gene expression activity of Cd heavy metal correlated genes (MAPK2 and NRAMP6). The root analysis assay confirmed shorter root length after Cd treatment, confirming severe Cd impact on plant cell growth, implying shorter growth in roots in all treated kales. Gene expression results showed that Cd triggers the expression of MAPK2 and NRAMP6 suggesting their significant involvement in Cd metabolizing processes. Based on the combined results, kale from the Stolac region is found to be the most resistant variety, while the only hybrid kale, accumulates the most Cd suggesting its phytoremediation potential.
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CD胁迫下国内甘蓝品种MAPK2和NRAMP6的表达分析
甘蓝(Brassica oleracea var. acephala)是一种世界闻名的蔬菜植物,以其重金属积累能力而闻名。本研究分析了在不同镉浓度环境下生长的国内黑黑省羽衣甘蓝品种的植物修复潜力。Cd是一种已知的污染物,在正常环境条件下,土壤中的浓度很低。采用Real-Time PCR分析Cd重金属相关基因MAPK2和NRAMP6的基因表达活性。根系分析结果表明,Cd处理后的羽衣甘蓝根长变短,表明Cd对植物细胞生长有严重影响,说明所有处理的羽衣甘蓝根长都变短。基因表达结果显示,Cd触发MAPK2和NRAMP6的表达,表明它们在Cd代谢过程中具有重要作用。综合结果发现,来自Stolac地区的羽衣甘蓝是抗性最强的品种,而唯一的杂交羽衣甘蓝积累的Cd最多,表明其具有植物修复潜力。
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