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小麦族的比较转录组学

Comparative transcriptomics in the Triticeae.

作者信息

Schreiber Andreas W, Sutton Tim, Caldo Rico A, Kalashyan Elena, Lovell Ben, Mayo Gwenda, Muehlbauer Gary J, Druka Arnis, Waugh Robbie, Wise Roger P, Langridge Peter, Baumann Ute

机构信息

Australian Centre for Plant Functional Genomics, Univ of Adelaide, PMB 1 Glen Osmond, SA 5064, Australia.

出版信息

BMC Genomics. 2009 Jun 29;10:285. doi: 10.1186/1471-2164-10-285.

Abstract

BACKGROUND

Barley and particularly wheat are two grass species of immense agricultural importance. In spite of polyploidization events within the latter, studies have shown that genotypically and phenotypically these species are very closely related and, indeed, fertile hybrids can be created by interbreeding. The advent of two genome-scale Affymetrix GeneChips now allows studies of the comparison of their transcriptomes.

RESULTS

We have used the Wheat GeneChip to create a "gene expression atlas" for the wheat transcriptome (cv. Chinese Spring). For this, we chose mRNA from a range of tissues and developmental stages closely mirroring a comparable study carried out for barley (cv. Morex) using the Barley1 GeneChip. This, together with large-scale clustering of the probesets from the two GeneChips into "homologous groups", has allowed us to perform a genomic-scale comparative study of expression patterns in these two species. We explore the influence of the polyploidy of wheat on the results obtained with the Wheat GeneChip and quantify the correlation between conservation in gene sequence and gene expression in wheat and barley. In addition, we show how the conservation of expression patterns can be used to elucidate, probeset by probeset, the reliability of the Wheat GeneChip.

CONCLUSION

While there are many differences in expression on the level of individual genes and tissues, we demonstrate that the wheat and barley transcriptomes appear highly correlated. This finding is significant not only because given small evolutionary distance between the two species it is widely expected, but also because it demonstrates that it is possible to use the two GeneChips for comparative studies. This is the case even though their probeset composition reflects rather different design principles as well as, of course, the present incomplete knowledge of the gene content of the two species. We also show that, in general, the Wheat GeneChip is not able to distinguish contributions from individual homoeologs. Furthermore, the comparison between the two species leads us to conclude that the conservation of both gene sequence as well as gene expression is positively correlated with absolute expression levels, presumably reflecting increased selection pressure on genes coding for proteins present at high levels. In addition, the results indicate the presence of a correlation between sequence and expression conservation within the Triticeae.

摘要

背景

大麦尤其是小麦是两种具有巨大农业重要性的禾本科物种。尽管小麦经历了多倍体化事件,但研究表明,从基因型和表型上看,这些物种密切相关,实际上,通过杂交可以培育出可育杂种。两种基因组规模的Affymetrix基因芯片的出现,现在使得对它们的转录组进行比较研究成为可能。

结果

我们使用小麦基因芯片创建了一个小麦转录组(中国春品种)的“基因表达图谱”。为此,我们从一系列组织和发育阶段中选取mRNA,这些组织和发育阶段紧密反映了使用大麦1基因芯片对大麦(Morex品种)进行的类似研究。这一点,再加上将来自两种基因芯片的探针集大规模聚类为“同源组”,使我们能够对这两个物种的表达模式进行基因组规模的比较研究。我们探讨了小麦的多倍体对使用小麦基因芯片获得的结果的影响,并量化了小麦和大麦基因序列保守性与基因表达之间的相关性。此外,我们展示了如何通过逐个探针集地利用表达模式的保守性来阐明小麦基因芯片的可靠性。

结论

虽然在单个基因和组织水平上存在许多表达差异,但我们证明小麦和大麦转录组似乎高度相关。这一发现不仅因为这两个物种之间进化距离较小而在广泛预期之内,还因为它表明可以使用这两种基因芯片进行比较研究。即使它们的探针集组成反映了相当不同的设计原则,当然还有目前对这两个物种基因含量的不完全了解,情况也是如此。我们还表明,一般来说,小麦基因芯片无法区分单个同源基因的贡献。此外,这两个物种之间的比较使我们得出结论,基因序列和基因表达的保守性与绝对表达水平呈正相关,这可能反映了对编码高水平存在的蛋白质的基因的选择压力增加。此外,结果表明在小麦族内序列和表达保守性之间存在相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b2d1/2717122/ecdc498541f7/1471-2164-10-285-1.jpg

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