...
首页> 外文期刊>BMC Genomics >Large-scale analysis of antisense transcription in wheat using the Affymetrix GeneChip Wheat Genome Array
【24h】

Large-scale analysis of antisense transcription in wheat using the Affymetrix GeneChip Wheat Genome Array

机译:使用Affymetrix GeneChip小麦基因组芯片对小麦中的反义转录进行大规模分析

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Background Natural antisense transcripts (NATs) are transcripts of the opposite DNA strand to the sense-strand either at the same locus (cis-encoded) or a different locus (trans-encoded). They can affect gene expression at multiple stages including transcription, RNA processing and transport, and translation. NATs give rise to sense-antisense transcript pairs and the number of these identified has escalated greatly with the availability of DNA sequencing resources and public databases. Traditionally, NATs were identified by the alignment of full-length cDNAs or expressed sequence tags to genome sequences, but an alternative method for large-scale detection of sense-antisense transcript pairs involves the use of microarrays. In this study we developed a novel protocol to assay sense- and antisense-strand transcription on the 55 K Affymetrix GeneChip Wheat Genome Array, which is a 3' in vitro transcription (3'IVT) expression array. We selected five different tissue types for assay to enable maximum discovery, and used the 'Chinese Spring' wheat genotype because most of the wheat GeneChip probe sequences were based on its genomic sequence. This study is the first report of using a 3'IVT expression array to discover the expression of natural sense-antisense transcript pairs, and may be considered as proof-of-concept. Results By using alternative target preparation schemes, both the sense- and antisense-strand derived transcripts were labeled and hybridized to the Wheat GeneChip. Quality assurance verified that successful hybridization did occur in the antisense-strand assay. A stringent threshold for positive hybridization was applied, which resulted in the identification of 110 sense-antisense transcript pairs, as well as 80 potentially antisense-specific transcripts. Strand-specific RT-PCR validated the microarray observations, and showed that antisense transcription is likely to be tissue specific. For the annotated sense-antisense transcript pairs, analysis of the gene ontology terms showed a significant over-representation of transcripts involved in energy production. These included several representations of ATP synthase, photosystem proteins and RUBISCO, which indicated that photosynthesis is likely to be regulated by antisense transcripts. Conclusion This study demonstrated the novel use of an adapted labeling protocol and a 3'IVT GeneChip array for large-scale identification of antisense transcription in wheat. The results show that antisense transcription is relatively abundant in wheat, and may affect the expression of valuable agronomic phenotypes. Future work should select potentially interesting transcript pairs for further functional characterization to determine biological activity.
机译:背景技术天然反义转录物(NAT)是在相同位点(顺式编码)或在不同位点(反式编码)处与有义链相反的DNA链的转录物。它们可以在多个阶段影响基因表达,包括转录,RNA加工和运输以及翻译。 NAT产生了正义-反义转录本对,并且随着DNA测序资源和公共数据库的可用性,已识别出的转录本对的数量已大大增加。传统上,NAT是通过将全长cDNA或表达的序列标签与基因组序列进行比对来识别的,但是大规模检测有义反义转录本对的另一种方法涉及使用微阵列。在这项研究中,我们开发了一种新颖的协议来检测55 K Affymetrix基因芯片小麦基因组阵列上的有义和反义链转录,这是一个3'体外转录(3'IVT)表达阵列。我们选择了五种不同的组织类型进行分析,以实现最大发现,并使用了“中国春”小麦基因型,因为大多数小麦GeneChip探针序列均基于其基因组序列。这项研究是首次使用3'IVT表达阵列发现自然有义反义转录本对的表达的报道,可以被认为是概念证明。结果通过使用替代的靶标制备方案,有义和反义链衍生的转录本均被标记并与小麦基因芯片杂交。质量保证证实,反义链测定中确实发生了成功的杂交。应用了严格的阳性杂交阈值,从而鉴定了110个有义反义转录物对以及80个潜在的反义特异性转录物。链特异性RT-PCR验证了微阵列观察结果,并显示反义转录可能是组织特异性的。对于带注释的正义-反义转录本对,基因本体术语的分析表明,参与能量生产的转录本的显着过量表达。其中包括ATP合酶,光系统蛋白和RUBISCO的几种表示,表明光合作用可能受反义转录物的调节。结论这项研究证明了适用的标记方案和3'IVT GeneChip阵列在小麦反义转录大规模鉴定中的新颖用途。结果表明,反义转录在小麦中相对丰富,并可能影响有价值的农学表型的表达。未来的工作应该选择可能有趣的转录本对,以进行进一步的功能表征,从而确定生物学活性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号