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驱动马铃薯块茎起始和生长的基因:基于使用POCI阵列的转录变化进行的鉴定

Genes driving potato tuber initiation and growth: identification based on transcriptional changes using the POCI array.

作者信息

Kloosterman Bjorn, De Koeyer David, Griffiths Rebecca, Flinn Barry, Steuernagel Burkhard, Scholz Uwe, Sonnewald Sophia, Sonnewald Uwe, Bryan Glenn J, Prat Salomé, Bánfalvi Zsófia, Hammond John P, Geigenberger Peter, Nielsen Kåre L, Visser Richard G F, Bachem Christian W B

机构信息

Wageningen UR Plant Breeding, Wageningen University and Research Center, P.O. Box 386, 6700, AJ, Wageningen, The Netherlands.

出版信息

Funct Integr Genomics. 2008 Nov;8(4):329-40. doi: 10.1007/s10142-008-0083-x. Epub 2008 May 27.

DOI:10.1007/s10142-008-0083-x
PMID:18504629
Abstract

The increasing amount of available expressed gene sequence data makes whole-transcriptome analysis of certain crop species possible. Potato currently has the second largest number of publicly available expressed sequence tag (EST) sequences among the Solanaceae. Most of these ESTs, plus other proprietary sequences, were combined and used to generate a unigene assembly. The set of 246,182 sequences produced 46,345 unigenes, which were used to design a 44K 60-mer oligo array (Potato Oligo Chip Initiative: POCI). In this study, we attempt to identify genes controlling and driving the process of tuber initiation and growth by implementing large-scale transcriptional changes using the newly developed POCI array. Major gene expression profiles could be identified exhibiting differential expression at key developmental stages. These profiles were associated with functional roles in cell division and growth. A subset of genes involved in the regulation of the cell cycle, based on their Gene Ontology classification, exhibit a clear transient upregulation at tuber onset indicating increased cell division during these stages. The POCI array allows the study of potato gene expression on a much broader level than previously possible and will greatly enhance analysis of transcriptional control mechanisms in a wide range of potato research areas. POCI sequence and annotation data are publicly available through the POCI database ( http://pgrc.ipk-gatersleben.de/poci ).

摘要

可用的表达基因序列数据量不断增加,使得对某些作物物种进行全转录组分析成为可能。马铃薯目前是茄科中公开可用表达序列标签(EST)序列数量第二多的物种。这些EST中的大多数,加上其他专有序列,被合并并用于生成一个单基因组装。这组246,182个序列产生了46,345个单基因,这些单基因被用于设计一个44K 60聚体寡核苷酸阵列(马铃薯寡核苷酸芯片计划:POCI)。在本研究中,我们试图通过使用新开发的POCI阵列实施大规模转录变化,来鉴定控制和驱动块茎起始和生长过程的基因。可以识别出主要的基因表达谱,这些表达谱在关键发育阶段表现出差异表达。这些表达谱与细胞分裂和生长中的功能作用相关。根据基因本体分类,参与细胞周期调控的一组基因在块茎开始时表现出明显的瞬时上调,表明在这些阶段细胞分裂增加。POCI阵列使得对马铃薯基因表达的研究比以前在更广泛的水平上进行,并且将极大地增强在广泛的马铃薯研究领域中对转录控制机制的分析。POCI序列和注释数据可通过POCI数据库(http://pgrc.ipk-gatersleben.de/poci)公开获取。

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