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首页> 外文期刊>BMC Plant Biology >Transcript profiling of common bean ( Phaseolus vulgaris L.) using the GeneChip ? Soybean Genome Array: optimizing analysis by masking biased probes
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Transcript profiling of common bean ( Phaseolus vulgaris L.) using the GeneChip ? Soybean Genome Array: optimizing analysis by masking biased probes

机译:使用GeneChip?对普通豆(菜豆)的转录谱进行分析。大豆基因组阵列:通过掩盖有偏向的探针来优化分析

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Background Common bean ( Phaseolus vulgaris L.) and soybean ( Glycine max ) both belong to the Phaseoleae tribe and share significant coding sequence homology. This suggests that the GeneChip? Soybean Genome Array (soybean GeneChip) may be used for gene expression studies using common bean. Results To evaluate the utility of the soybean GeneChip for transcript profiling of common bean, we hybridized cRNAs purified from nodule, leaf, and root of common bean and soybean in triplicate to the soybean GeneChip. Initial data analysis showed a decreased sensitivity and accuracy of measuring differential gene expression in common bean cross-species hybridization (CSH) GeneChip data compared to that of soybean. We employed a method that masked putative probes targeting inter-species variable (ISV) regions between common bean and soybean. A masking signal intensity threshold was selected that optimized both sensitivity and accuracy of measuring differential gene expression. After masking for ISV regions, the number of differentially-expressed genes identified in common bean was increased by 2.8-fold reflecting increased sensitivity. Quantitative RT-PCR (qRT-PCR) analysis of 20 randomly selected genes and purine-ureide pathway genes demonstrated an increased accuracy of measuring differential gene expression after masking for ISV regions. We also evaluated masked probe frequency per probe set to gain insight into the sequence divergence pattern between common bean and soybean. The sequence divergence pattern analysis suggested that the genes for basic cellular functions and metabolism were highly conserved between soybean and common bean. Additionally, our results show that some classes of genes, particularly those associated with environmental adaptation, are highly divergent. Conclusions The soybean GeneChip is a suitable cross-species platform for transcript profiling in common bean when used in combination with the masking protocol described. In addition to transcript profiling, CSH of the GeneChip in combination with masking probes in the ISV regions can be used for comparative ecological and/or evolutionary genomics studies.
机译:背景普通豆(菜豆)和大豆(大豆)都属于菜豆族,并且具有明显的编码序列同源性。这表明GeneChip ?大豆基因组阵列(soybean GeneChip)可用于普通豆的基因表达研究。结果为了评估大豆GeneChip在普通豆转录谱分析中的实用性,我们将从普通豆和大豆的结节,叶和根中纯化的cRNA与大豆GeneChip进行了三次重复杂交。初始数据分析显示,与大豆相比,在普通豆跨物种杂交(CSH)基因芯片数据中测量差异基因表达的敏感性和准确性降低。我们采用了一种方法,该方法掩盖了针对普通豆和大豆之间的种间可变区(ISV)的推定探针。选择一个掩蔽信号强度阈值,以优化灵敏度和测量差异基因表达的准确性。对ISV区进行掩盖后,在普通豆中鉴定出的差异表达基因的数量增加了2.8倍,反映了敏感性的提高。对20个随机选择的基因和嘌呤-尿素途径基因的定量RT-PCR(qRT-PCR)分析表明,掩盖ISV区后,差异基因表达的测量准确性提高。我们还评估了每个探针组的掩蔽探针频率,以深入了解普通豆和大豆之间的序列差异模式。序列差异模式分析表明,大豆和普通豆之间的基本细胞功能和代谢基因高度保守。此外,我们的结果表明,某些类型的基因,尤其是与环境适应性相关的基因,高度不同。结论大豆GeneChip与上述掩蔽方案结合使用时,是适合普通豆转录本分析的跨物种平台。除转录谱分析外,GeneChip的CSH与ISV区域中的掩蔽探针结合还可用于比较生态学和/或进化基因组学研究。

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