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转录组分析和基因表达图谱为 Panicum hallii var. filipes,一个生物燃料研究的二倍体模型。

Transcriptome analysis and gene expression atlas for Panicum hallii var. filipes, a diploid model for biofuel research.

机构信息

Section of Integrative Biology, University of Texas - Austin, 1 University Station, Austin, TX 78712, USA.

出版信息

Plant J. 2012 Jun;70(5):879-90. doi: 10.1111/j.1365-313X.2012.04938.x. Epub 2012 Mar 30.

Abstract

Panicum hallii is an emerging model for genetic studies of agronomic traits in Panicum, presenting a tractable diploid alternative study system to the tetra- or octaploid biofuel crop switchgrass (Panicum virgatum). To characterize the gene complement in P. hallii var. filipes and enable gene expression analysis in this system we sequenced, assembled, and annotated the transcriptome. Over 300 Mb of normalized cDNA prepared from multiple tissues and treatments was sequenced using 454-Titanium, producing an annotated assembly including 15 422 unique gene names. Comparison with other grass genomes identified putative P. hallii homologs for >14 000 previously characterized genes. We also developed an atlas of gene expression across tissues and stages using RNA-Seq (the quantitative analysis of short cDNA reads). SOLiD sequencing and quantitative analysis of more than 40 million cDNA tags identified substantial variation in expression profiles among tissues, consistent with known functional differences. Putative homologs were found for all enzymes in the phenylpropanoid pathway leading to lignin biosynthesis, including genes with known effects on biomass conversion efficiency. The resources developed here will enable studies of the genes underlying variation in cell wall composition, drought tolerance, and biomass production in Panicum.

摘要

帕尼姆草(Panicum hallii)是研究帕尼姆属(Panicum)农艺性状遗传的新兴模式植物,为研究四倍体或八倍体生物燃料作物柳枝稷(Panicum virgatum)提供了一个易于处理的二倍体替代研究系统。为了对帕尼姆草变种细茎帕尼姆草的基因组成进行描述,并使其成为该系统中基因表达分析的有效工具,我们对其转录组进行了测序、组装和注释。利用 454-Titanium 测序技术对来自多种组织和处理的 300 Mb 以上的归一化 cDNA 进行测序,生成了一个注释组装体,其中包含 15 422 个独特的基因名称。与其他禾本科基因组的比较确定了 >14 000 个先前鉴定基因的帕尼姆草可能同源物。我们还利用 RNA-Seq(对短 cDNA 读取进行定量分析)技术,通过构建组织和发育阶段的基因表达图谱,研究了基因表达。SOLiD 测序和对超过 4000 万个 cDNA 标签的定量分析表明,组织间的表达谱存在显著差异,这与已知的功能差异一致。在木质素生物合成的苯丙烷途径中,发现了所有酶的假定同源物,包括对生物质转化效率有已知影响的基因。这里开发的资源将能够研究细胞壁成分、耐旱性和生物质产量变异的相关基因。

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