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通过大规模平行签名测序(MPSS)对拟南芥花转录组进行空间剖析。

A spatial dissection of the Arabidopsis floral transcriptome by MPSS.

作者信息

Peiffer Jason A, Kaushik Shail, Sakai Hajime, Arteaga-Vazquez Mario, Sanchez-Leon Nidia, Ghazal Hassan, Vielle-Calzada Jean-Philippe, Meyers Blake C

机构信息

Department of Plant and Soil Sciences, University of Delaware, Newark, DE 19711, USA.

出版信息

BMC Plant Biol. 2008 Apr 21;8:43. doi: 10.1186/1471-2229-8-43.

Abstract

BACKGROUND

We have further characterized floral organ-localized gene expression in the inflorescence of Arabidopsis thaliana by comparison of massively parallel signature sequencing (MPSS) data. Six libraries of RNA sequence tags from immature inflorescence tissues were constructed and matched to their respective loci in the annotated Arabidopsis genome. These signature libraries survey the floral transcriptome of wild-type tissue as well as the floral homeotic mutants, apetala1, apetala3, agamous, a superman/apetala1 double mutant, and differentiated ovules dissected from the gynoecia of wild-type inflorescences. Comparing and contrasting these MPSS floral expression libraries enabled demarcation of transcripts enriched in the petals, stamens, stigma-style, gynoecia, and those with predicted enrichment within the sepal/sepal-petals, petal-stamens, or gynoecia-stamens.

RESULTS

By comparison of expression libraries, a total of 572 genes were found to have organ-enriched expression within the inflorescence. The bulk of characterized organ-enriched transcript diversity was noted in the gynoecia and stamens, whereas fewer genes demonstrated sepal or petal-localized expression. Validation of the computational analyses was performed by comparison with previously published expression data, in situ hybridizations, promoter-reporter fusions, and reverse transcription PCR. A number of well-characterized genes were accurately delineated within our system of transcript filtration. Moreover, empirical validations confirm MPSS predictions for several genes with previously uncharacterized expression patterns.

CONCLUSION

This extensive MPSS analysis confirms and supplements prior microarray floral expression studies and illustrates the utility of sequence survey-based expression analysis in functional genomics. Spatial floral expression data accrued by MPSS and similar methods will be advantageous in the elucidation of more comprehensive genetic regulatory networks governing floral development.

摘要

背景

我们通过比较大规模平行签名测序(MPSS)数据,进一步对拟南芥花序中花器官定位的基因表达进行了表征。构建了来自未成熟花序组织的六个RNA序列标签文库,并将其与注释的拟南芥基因组中的各自位点进行匹配。这些签名文库对野生型组织以及花同源异型突变体、无花瓣1、无花瓣3、无雄蕊、超级男人/无花瓣1双突变体的花转录组,以及从野生型花序雌蕊中分离出的分化胚珠进行了检测。比较和对比这些MPSS花表达文库,能够划分出在花瓣、雄蕊、柱头-花柱、雌蕊中富集的转录本,以及在萼片/萼片-花瓣、花瓣-雄蕊或雌蕊-雄蕊中预测富集的转录本。

结果

通过对表达文库的比较,共发现572个基因在花序中具有器官富集表达。在雌蕊和雄蕊中发现了大部分已表征的器官富集转录本多样性,而表现出萼片或花瓣定位表达的基因较少。通过与先前发表的表达数据、原位杂交、启动子-报告基因融合以及逆转录PCR进行比较,对计算分析进行了验证。在我们的转录本筛选系统中,准确地划定了许多特征明确的基因。此外,实证验证证实了MPSS对几个具有先前未表征表达模式的基因的预测。

结论

这种广泛的MPSS分析证实并补充了先前的微阵列花表达研究,并说明了基于序列检测的表达分析在功能基因组学中的实用性。通过MPSS和类似方法积累的花空间表达数据,将有助于阐明控制花发育的更全面的遗传调控网络。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3a3/2375892/49d6500030c7/1471-2229-8-43-1.jpg

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