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Design of a tobacco exon array with application to investigate the differential cadmium accumulation property in two tobacco varieties

机译:烟草外显子阵列的设计及其在两个烟草品种中镉差异累积特性研究中的应用

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Background For decades the tobacco plant has served as a model organism in plant biology to answer fundamental biological questions in the areas of plant development, physiology, and genetics. Due to the lack of sufficient coverage of genomic sequences, however, none of the expressed sequence tag (EST)-based chips developed to date cover gene expression from the whole genome. The availability of Tobacco Genome Initiative (TGI) sequences provides a useful resource to build a whole genome exon array, even if the assembled sequences are highly fragmented. Here, the design of a Tobacco Exon Array is reported and an application to improve the understanding of genes regulated by cadmium (Cd) in tobacco is described. Results From the analysis and annotation of the 1,271,256 Nicotiana tabacum fasta and quality files from methyl filtered genomic survey sequences (GSS) obtained from the TGI and ~56,000 ESTs available in public databases, an exon array with 272,342 probesets was designed (four probes per exon) and tested on two selected tobacco varieties. Two tobacco varieties out of 45 accumulating low and high cadmium in leaf were identified based on the GGE biplot analysis, which is analysis of the genotype main effect (G) plus analysis of the genotype by environment interaction (GE) of eight field trials (four fields over two years) showing reproducibility across the trials. The selected varieties were grown under greenhouse conditions in two different soils and subjected to exon array analyses using root and leaf tissues to understand the genetic make-up of the Cd accumulation. Conclusions An Affymetrix Exon Array was developed to cover a large (~90%) proportion of the tobacco gene space. The Tobacco Exon Array will be available for research use through Affymetrix array catalogue. As a proof of the exon array usability, we have demonstrated that the Tobacco Exon Array is a valuable tool for studying Cd accumulation in tobacco leaves. Data from field and greenhouse experiments supported by gene expression studies strongly suggested that the difference in leaf Cd accumulation between the two specific tobacco cultivars is dependent solely on genetic factors and genetic variability rather than on the environment.
机译:背景技术几十年来,烟草植物一直是植物生物学中的典范生物,可以回答植物发育,生理学和遗传学领域中的基本生物学问题。由于缺乏足够的基因组序列覆盖范围,迄今为止,尚未开发出任何基于表达序列标签(EST)的芯片来覆盖整个基因组的基因表达。烟草基因组计划(TGI)序列的可用性为构建完整的基因组外显子阵列提供了有用的资源,即使组装的序列高度片段化也是如此。在此,报道了一种烟草外显子阵列的设计,并描述了一种用于提高对烟草中镉(Cd)调控基因的理解的应用。结果根据对从TGI和约56,000个EST获得的甲基过滤的基因组调查序列(GSS)的1,271,256烟草和质量文件的分析和注释,设计了一个具有272342个探针集的外显子阵列(每个外显子四个探针) ),并在两个选定的烟草品种上进行了测试。根据GGE双图分析,从45个烟叶中积累的高和低镉中鉴定出两个烟草品种,这是对基因型主效应(G)的分析,以及通过环境相互作用(GE)对八种田间试验进行的基​​因型分析(四两年内的数据)显示整个试验的可重复性。选择的品种在温室条件下在两种不同的土壤中生长,并使用根和叶组织进行外显子阵列分析,以了解Cd积累的遗传组成。结论开发出Affymetrix外显子阵列可覆盖很大(约90%)的烟草基因空间。通过Affymetrix阵列目录,可将烟草外显子阵列用于研究。作为外显子阵列可用性的证明,我们证明了烟草外显子阵列是研究烟草叶片中Cd积累的宝贵工具。基因表达研究支持的田间和温室实验数据强烈表明,两个特定烟草品种之间叶片Cd积累的差异仅取决于遗传因素和遗传变异性,而不取决于环境。

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