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Transcriptomic Analysis of Cadmium Stress Response in the Heavy Metal Hyperaccumulator Sedum alfredii Hance

机译:重金属超蓄积景天中镉胁迫响应的转录组学分析。

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摘要

The Sedum alfredii Hance hyperaccumulating ecotype (HE) has the ability to hyperaccumulate cadmium (Cd), as well as zinc (Zn) and lead (Pb) in above-ground tissues. Although many physiological studies have been conducted with these plants, the molecular mechanisms underlying their hyper-tolerance to heavy metals are largely unknown. Here we report on the generation of 9.4 gigabases of adaptor-trimmed raw sequences and the assembly of 57,162 transcript contigs in S. alfredii Hance (HE) shoots by the combination of Roche 454 and Illumina/Solexa deep sequencing technologies. We also have functionally annotated the transcriptome and analyzed the transcriptome changes upon Cd hyperaccumulation in S. alfredii Hance (HE) shoots. There are 110 contigs and 123 contigs that were up-regulated (Fold Change ≧2.0) and down-regulated (Fold Change ≦0.5) by chronic Cd treatment in S. alfredii Hance (HE) at q-value cutoff of 0.005, respectively. Quantitative RT-PCR was employed to compare gene expression patterns between S. alfredii Hance (HE) and non-hyperaccumulating ecotype (NHE). Our results demonstrated that several genes involved in cell wall modification, metal translocation and remobilization were more induced or constitutively expressed at higher levels in HE shoots than that in NHE shoots in response to Cd exposure. Together, our study provides large-scale expressed sequence information and genome-wide transcriptome profiling of Cd responses in S. alfredii Hance (HE) shoots.
机译:景天景天超富集生态型(HE)具有在地上组织超富集镉(Cd)以及锌(Zn)和铅(Pb)的能力。尽管已经对这些植物进行了许多生理学研究,但很大程度上尚不清楚它们对重金属的超耐受性的分子机制。在这里,我们通过结合Roche 454和Illumina / Solexa深度测序技术,报告了9.4 gb的适应区修饰的原始序列的产生以及在S. alfredii Hance(HE)芽中组装的57,162个转录组重叠群。我们还功能上注释了转录组,并分析了在S. alfredii Hance(HE)芽中Cd超富集时转录组的变化。通过慢性镉处理,在S. alfredii Hance(HE)中,有110个重叠群和123个重叠群分别在q值截止值为0.005时被上调(折叠变化≥2.0)和下调(折叠变化≤0.5)。定量RT-PCR被用来比较苜蓿链球菌(HE)和非高蓄积生态型(NHE)之间的基因表达模式。我们的研究结果表明,与Cd暴露相比,HE芽中的一些基因比NHE芽中的细胞壁修饰,金属转运和迁移更多地被诱导或组成型表达。在一起,我们的研究提供了大规模表达序列信息和全基因组转录谱分析中的S. alfredii Hance(HE)枝条中的Cd反应。

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