Quesada Tania, Li Zhen, Dervinis Christopher, Li Yao, Bocock Philip N, Tuskan Gerald A, Casella George, Davis John M, Kirst Matias
Plant Molecular and Cellular Biology Graduate Program, University of Florida, PO Box 110690, Gainesville, FL 32611, USA.
School of Forest Resources and Conservation, University of Florida, PO Box 110410, Gainesville, FL 32611, USA.
New Phytol. 2008;180(2):408-420. doi: 10.1111/j.1469-8137.2008.02586.x. Epub 2008 Aug 5.
Sequencing of the Populus trichocarpa genome creates an opportunity to describe the transcriptome of a woody perennial species and establish an atlas of gene expression. A comparison with the transcriptomes of other species can also define genes that are conserved or diverging in plant species. Here, the transcriptome in vegetative organs of the P. trichocarpa reference genotype Nisqually-1 was characterized. A comparison with Arabidopsis thaliana orthologs was used to distinguish gene functional categories that may be evolving differently in a woody perennial and an annual herbaceous species. A core set of genes expressed in common among vegetative organs was detected, as well as organ-specific genes. Statistical tests identified chromatin domains, where adjacent genes were expressed more frequently than expected by chance. Extensive divergence was detected in the expression patterns of A. thaliana and P. trichocarpa orthologs, but transcription of a small number of genes appeared to have remained conserved in the two species. Despite separation of lineages for over 100 million yr, these results suggest that selection has limited transcriptional divergence of genes associated with some essential functions in A. thaliana and P. trichocarpa. However, extensive remodeling of transcriptional networks indicates that expression regulation may be a key determinant of plant diversity.
毛果杨基因组测序为描述一种多年生木本植物的转录组并建立基因表达图谱创造了机会。与其他物种的转录组进行比较还可以确定在植物物种中保守或分化的基因。在此,对毛果杨参考基因型尼斯阔利-1营养器官中的转录组进行了表征。通过与拟南芥直系同源基因进行比较,以区分在多年生木本植物和一年生草本植物中可能以不同方式进化的基因功能类别。检测到了在营养器官中共同表达的一组核心基因以及器官特异性基因。统计测试确定了染色质结构域,其中相邻基因的表达频率高于随机预期。在拟南芥和毛果杨直系同源基因的表达模式中检测到了广泛的差异,但少数基因的转录在这两个物种中似乎保持保守。尽管两个谱系已经分离了超过1亿年,但这些结果表明,选择限制了拟南芥和毛果杨中与某些基本功能相关的基因的转录差异。然而,转录网络的广泛重塑表明,表达调控可能是植物多样性的关键决定因素。