Department of Chemical and Biomolecular Engineering, National University of Singapore, 4 Engineering Drive 4, 117585 Singapore.
School of Biology and Ecology, University of Maine, Orono, ME 04469 USA.
Plant Sci. 2016 Jan;242:224-239. doi: 10.1016/j.plantsci.2015.09.018. Epub 2015 Sep 28.
In this study, we have integrated a rice genome-scale metabolic network and the transcriptome of a drought-tolerant rice line, DK151, to identify the major transcriptional regulators involved in metabolic adjustments necessary for adaptation to drought. This was achieved by examining the differential expressions of transcription factors and metabolic genes in leaf, root and young panicle of rice plants subjected to drought stress during tillering, booting and panicle elongation stages. Critical transcription factors such as AP2/ERF, bZIP, MYB and NAC that control the important nodes in the gene regulatory pathway were identified through correlative analysis of the patterns of spatio-temporal expression and cis-element enrichment. We showed that many of the candidate transcription factors involved in metabolic adjustments were previously linked to phenotypic variation for drought tolerance. This approach represents the first attempt to integrate models of transcriptional regulation and metabolic pathways for the identification of candidate regulatory genes for targeted selection in rice breeding.
在这项研究中,我们整合了一个水稻全基因组代谢网络和耐旱水稻系 DK151 的转录组,以鉴定参与适应干旱所需代谢调整的主要转录调控因子。这是通过检查在分蘖、孕穗和穗伸长阶段干旱胁迫下水稻植株的叶片、根和幼穗中差异表达的转录因子和代谢基因来实现的。通过对时空表达模式和顺式元件富集的相关性分析,鉴定了控制基因调控途径重要节点的关键转录因子,如 AP2/ERF、bZIP、MYB 和 NAC。我们表明,许多参与代谢调整的候选转录因子先前与耐旱性的表型变异有关。这种方法代表了首次尝试整合转录调控模型和代谢途径,以鉴定水稻育种中靶向选择的候选调控基因。