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全基因组水平上组织偏好性水稻基因及其上游调控序列的鉴定与分子特征分析

Identification and molecular characterization of tissue-preferred rice genes and their upstream regularly sequences on a genome-wide level.

作者信息

Jiang Shu-Ye, Vanitha Jeevanandam, Bai Yanan, Ramachandran Srinivasan

出版信息

BMC Plant Biol. 2014 Nov 27;14:331. doi: 10.1186/s12870-014-0331-2.

Abstract

BACKGROUND

Gene upstream regularly sequences (URSs) can be used as one of the tools to annotate the biological functions of corresponding genes. In addition, tissue-preferred URSs are frequently used to drive the transgene expression exclusively in targeted tissues during plant transgenesis. Although many rice URSs have been molecularly characterized, it is still necessary and valuable to identify URSs that will benefit plant transformation and aid in analyzing gene function.

RESULTS

In this study, we identified and characterized root-, seed-, leaf-, and panicle-preferred genes on a genome-wide level in rice. Subsequently, their expression patterns were confirmed through quantitative real-time RT-PCR (qRT-PCR) by randomly selecting 9candidate tissue-preferred genes. In addition, 5 tissue-preferred URSs were characterized by investigating the URS::GUS transgenic plants. Of these URS::GUS analyses, the transgenic plants harboring LOC_Os03g11350 URS::GUS construct showed the GUS activity only in young pollen. In contrast, when LOC_Os10g22450 URS was used to drive the reporter GUS gene, the GUS activity was detected only in mature pollen. Interestingly, the LOC_Os10g34360 URS was found to be vascular bundle preferred and its activities were restricted only to vascular bundles of leaves, roots and florets. In addition, we have also identified two URSs from genes LOC_Os02G15090 and LOC_Os06g31070 expressed in a seed-preferred manner showing the highest expression levels of GUS activities in mature seeds.

CONCLUSION

By genome-wide analysis, we have identified tissue-preferred URSs, five of which were further characterized using transgenic plants harboring URS::GUS constructs. These data might provide some evidence for possible functions of the genes and be a valuable resource for tissue-preferred candidate URSs for plant transgenesis.

摘要

背景

基因上游调控序列(URSs)可作为注释相应基因生物学功能的工具之一。此外,组织偏好性URSs在植物转基因过程中常用于驱动转基因仅在目标组织中表达。尽管许多水稻URSs已进行了分子特征分析,但鉴定有助于植物转化和基因功能分析的URSs仍然是必要且有价值的。

结果

在本研究中,我们在全基因组水平上鉴定并表征了水稻中根、种子、叶和穗偏好性基因。随后,通过随机选择9个候选组织偏好性基因,利用定量实时RT-PCR(qRT-PCR)确认了它们的表达模式。此外,通过对携带URS::GUS的转基因植物进行研究,表征了5个组织偏好性URSs。在这些URS::GUS分析中,携带LOC_Os03g11350 URS::GUS构建体的转基因植物仅在幼嫩花粉中显示出GUS活性。相反,当使用LOC_Os10g22450 URS驱动报告基因GUS时,仅在成熟花粉中检测到GUS活性。有趣的是,发现LOC_Os10g34360 URS是维管束偏好性的,其活性仅局限于叶、根和小花的维管束。此外,我们还从以种子偏好方式表达的LOC_Os02G15090和LOC_Os06g31070基因中鉴定出两个URSs,它们在成熟种子中显示出最高水平的GUS活性表达。

结论

通过全基因组分析,我们鉴定了组织偏好性URSs,其中5个通过携带URS::GUS构建体的转基因植物进一步表征。这些数据可能为基因的潜在功能提供一些证据,并为植物转基因的组织偏好性候选URSs提供有价值的资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e85/4248441/44e9318cd7ee/12870_2014_331_Fig1_HTML.jpg

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