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比较转录组分析和拟南芥过表达揭示了与两个辣椒品种根系中镉运输和分布相关的关键基因。

Comparative transcriptome analysis and Arabidopsis thaliana overexpression reveal key genes associated with cadmium transport and distribution in root of two Capsicum annuum cultivars.

机构信息

School of Chemical and Environmental Engineering, Hunan Institute of Technology, Hengyang 421002, China.

Hunan Huanbaoqiao Ecology and Environment Engineering Co., Ltd., Changsha 410221, China.

出版信息

J Hazard Mater. 2024 Mar 5;465:133365. doi: 10.1016/j.jhazmat.2023.133365. Epub 2023 Dec 28.

Abstract

The molecular mechanisms underlying high and low cadmium (Cd) accumulation in hot pepper cultivars remain unclear. In this study, comparative transcriptome analysis of root between high-Cd (J) and low-Cd (Z) cultivars was conducted under hydroponic cultivation with 0 and 0.4 mg/L Cd, respectively. The results showed that J enhanced the root uptake of Cd by elevating the expression of Nramp5 and counteracting Cd toxicity by increasing the expression of genes, such as NIR1, GLN1, and IAA9. Z reduced Cd accumulation by enhancing the cell wall lignin synthesis genes PAL, COMT, 4CL, LAC, and POD and the Cd transporters ABC, MTP1, and DTX1. Elevated expression of genes related to sulfur metabolism was observed in Z, potentially contributing to its ability to detoxify Cd. To investigate the function of CaCOMT1, an Arabidopsis thaliana overexpression line (OE-CaCOMT1) was constructed. The results revealed that OE-CaCOMT1 drastically increased the lignin content by 38-42% and reduced the translocation of Cd to the aboveground parts by 32%. This study provides comprehensive insights into the mechanisms underlying Cd accumulation in hot pepper cultivars using transcriptome analysis. Moreover, this study elucidates the critical function of CaCOMT1, providing a theoretical foundation for the production of low-Cd vegetables for food safety.

摘要

高、低镉积累辣椒品种的分子机制尚不清楚。本研究采用水培法,在 0 和 0.4 mg/L Cd 条件下,对高镉(J)和低镉(Z)品种的根系进行了比较转录组分析。结果表明,J 通过上调 Nramp5 的表达,增强了根对 Cd 的摄取,通过增加 NIR1、GLN1 和 IAA9 等基因的表达来拮抗 Cd 毒性。Z 通过增强细胞壁木质素合成基因 PAL、COMT、4CL、LAC 和 POD 以及 Cd 转运蛋白 ABC、MTP1 和 DTX1 的表达,减少了 Cd 的积累。Z 中观察到与硫代谢相关的基因表达升高,这可能有助于其对 Cd 的解毒能力。为了研究 CaCOMT1 的功能,构建了拟南芥过表达系(OE-CaCOMT1)。结果表明,OE-CaCOMT1 使木质素含量增加了 38-42%,并使 Cd 向地上部分的转运减少了 32%。本研究通过转录组分析,全面了解了辣椒品种 Cd 积累的机制。此外,本研究阐明了 CaCOMT1 的关键功能,为生产安全食品用低 Cd 蔬菜提供了理论基础。

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