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比较茄属植物(Solanum nigrum 和 Solanum torvum)对镉响应的转录组分析。

Comparative transcriptome analysis of cadmium responses in Solanum nigrum and Solanum torvum.

机构信息

Key Laboratory of Agricultural Water Resources, Center for Agricultural Resources Research, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, 286 Huaizhong RD, Shijiazhuang 050021, China.

Hebei Province Engineering Laboratory for Plant Breeding and Germplasm Enhancement of Stress-Tolerant Plants, 286 Huaizhong RD, Shijiazhuang 050021, China.

出版信息

New Phytol. 2012 Oct;196(1):110-124. doi: 10.1111/j.1469-8137.2012.04235.x. Epub 2012 Jul 18.

Abstract

• Solanum nigrum is a cadmium (Cd) accumulator, whereas Solanum torvum is a low Cd-accumulating plant. The molecular mechanisms that are responsible for differential cadmium (Cd) accumulation in the two Solanum species are poorly understood. • Here, grafting experiments confirmed that increased Cd loading into the root xylem was responsible for the differential Cd accumulation in the two Solanum species. An iron (Fe) supply assay indicated that low Fe accumulation in S. torvum leaves is related to its Cd sensitivity. • Transcriptome analyses revealed higher expression of the genes that encode several metal transporters as well as antioxidant-related genes, and several organic and amino acid biosynthesis/metabolism-related genes in Cd-treated S. nigrum. Our data also indicated that the different responsive mechanisms of the transporter genes to Fe deficiency might be responsible for differential uptake and redistribution of metals in the two Solanum species • These results form a basis upon which to further explore the molecular mechanisms of Cd accumulation and tolerance, and provide an insight into novel strategies that can be used for phytoremediation and food safety.

摘要

• 龙葵是一种镉(Cd)积累植物,而天茄子则是一种低镉积累植物。导致这两个茄属植物中 Cd 积累存在差异的分子机制尚不清楚。 • 本研究通过嫁接实验证实,根木质部中 Cd 负载的增加是导致两个茄属植物中 Cd 积累差异的原因。铁(Fe)供应实验表明,天茄子叶片中 Fe 积累较少与其对 Cd 的敏感性有关。 • 转录组分析表明,Cd 处理后的龙葵中,编码几种金属转运蛋白以及抗氧化相关基因的基因表达水平较高,同时还包括一些有机和氨基酸生物合成/代谢相关基因。我们的数据还表明,转运蛋白基因对 Fe 缺乏的不同响应机制可能是导致两个茄属植物中金属吸收和再分配差异的原因。 • 这些结果为进一步研究 Cd 积累和耐受的分子机制奠定了基础,并为植物修复和食品安全提供了新的策略思路。

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