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Transcriptome Analysis of Cadmium-Treated Roots in Maize (Zea mays L.)

机译:玉米镉处理根的转录组分析

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摘要

Cadmium (Cd) is a heavy metal and is highly toxic to all plant species. However, the underlying molecular mechanism controlling the effects of auxin on the Cd stress response in maize is largely unknown. In this study, the transcriptome produced by maize ‘Zheng 58’ root responses to Cd stress was sequenced using Illumina sequencing technology. In our study, six RNA-seq libraries yielded a total of 244 million clean short reads and 30.37 Gb of sequence data. A total of 6342 differentially expressed genes (DEGs) were grouped into 908 Gene Ontology (GO) categories and 198 Kyoto Encyclopedia of Genes and Genomes terms. GO term enrichment analysis indicated that various auxin signaling pathway-related GO terms were significantly enriched in DEGs. Comparison of the transcript abundances for auxin biosynthesis, transport, and downstream response genes revealed a universal expression response under Cd treatment. Furthermore, our data showed that free indole-3-acetic acid (IAA) levels were significantly reduced; but IAA oxidase activity was up-regulated after Cd treatment in maize roots. The analysis of Cd activity in maize roots under different Cd and auxin conditions confirmed that auxin affected Cd accumulation in maize seedlings. These results will improve our understanding of the complex molecular mechanisms underlying the response to Cd stress in maize roots.
机译:镉(Cd)是重金属,对所有植物种类都具有剧毒。但是,控制植物生长素对玉米镉胁迫响应的潜在分子机制尚不清楚。在这项研究中,使用Illumina测序技术对玉米“郑58”根系对Cd胁迫的反应产生的转录组进行了测序。在我们的研究中,六个RNA-seq文库共产生2.44亿个纯净短读和30.37 Gb序列数据。总共6342个差异表达基因(DEG)被分为908个基因本体论(GO)类别和198个《京都议定书》中的基因和基因组术语。 GO术语富集分析表明,各种生长素信号通路相关的GO术语在DEG中均显着富集。生长素生物合成,转运和下游反应基因的转录本丰度的比较显示,在Cd处理下具有普遍的表达反应。此外,我们的数据显示游离吲哚-3-乙酸(IAA)的水平显着降低。镉处理后玉米根中IAA氧化酶活性上调。对不同Cd和生长素条件下玉米根中Cd活性的分析证实,生长素影响玉米幼苗中Cd的积累。这些结果将增进我们对玉米根部对Cd胁迫响应的复杂分子机制的了解。

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