首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Comparison of gene expression between upland and lowland rice cultivars under water stress using cDNA microarray
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Comparison of gene expression between upland and lowland rice cultivars under water stress using cDNA microarray

机译:利用cDNA芯片比较水分胁迫下旱稻和旱稻品种基因表达。

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To elucidate the differences in the regulation of water stress tolerance between two genotypes of rice, upland-rice (UR, resistant to water stress) and lowland-rice (LR, susceptible to water stress), we constructed subtracted cDNA libraries from polyethyleneglycol (PEG)-treated and non-treated rice seedlings (IRAT109, an upland-rice variety) by suppression subtractive hybridization (SSH), from which about 2,000 recombinant colonies were picked and amplified. Then, a cDNA microarray containing these expressed sequence tags (ESTs) was used to analyze the gene expression profiles in UR and LR in response to PEG treatment. Microarray data revealed that the majority of genes expressed in UR and LR are almost identical and Student's t test showed that 13% of all the ESTs detected in leaves and 7% of that in roots expressed differentially in transcripts abundance between the two genotypes. After sequencing, it was found that 64 and 79 unique ESTs expressed at higher levels in UR and LR, respectively. Many of the ESTs that showed higher expression in UR upon PEG treatment represented genes for transcription factors, genes playing roles in detoxification or protection against oxidative stress, and genes that help in maintaining cell turgor. In contrast, some ESTs that showed higher expression in LR were genes functioning in the degradation of cellular components. Based on data from this study and previous reports, we suggest that overexpression of some genes that expressed at higher level in UR may improve water stress tolerance in LR and other plant species.
机译:为了阐明两种基因型水稻的抗旱性差异,旱稻(UR,耐水胁迫)和低稻(LR,易受水分胁迫),我们从聚乙二醇(PEG)中减去了cDNA文库。处理和未处理的水稻幼苗(IRAT109,一种旱稻品种)通过抑制消减杂交(SSH),从中挑选并扩增了大约2,000个重组菌落。然后,包含这些表达的序列标签(EST)的cDNA微阵列用于分析响应PEG处理的UR和LR中的基因表达谱。微阵列数据显示,在UR和LR中表达的大多数基因几乎相同,Student's t检验显示,在两种基因型之间的转录本丰度中,在叶片中检测到的所有EST中有13%,在根中检测到的EST中有7%差异表达。测序后,发现在UR和LR中分别以较高的水平表达了64和79个独特的EST。在PEG处理后在UR中表现出较高表达的许多EST代表转录因子基因,在解毒或抗氧化应激中发挥作用的基因以及有助于维持细胞充盈的基因。相反,一些在LR中表达较高的EST是在细胞成分降解中起作用的基因。根据这项研究和以前的报告中的数据,我们建议在UR中以较高水平表达的某些基因的过表达可能会改善LR和其他植物物种的水分胁迫耐受性。

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