Centro de Biotecnología y Genómica de Plantas, Universidad Politécnica de Madrid (UPM)-Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria (INIA), Campus de Montegancedo UPM, Pozuelo de Alarcón, 28223, Madrid, Spain.
School of Forest Resources and Conservation, University of Florida, Gainesville, FL, 32611, USA.
Plant Cell Environ. 2017 Nov;40(11):2806-2819. doi: 10.1111/pce.13056. Epub 2017 Oct 12.
The transition from active growth to dormancy is critical for the survival of perennial plants. We identified a DEMETER-like (CsDML) cDNA from a winter-enriched cDNA subtractive library in chestnut (Castanea sativa Mill.), an economically and ecologically important species. Next, we characterized this DNA demethylase and its putative ortholog in the more experimentally tractable hybrid poplar (Populus tremula × alba), under the signals that trigger bud dormancy in trees. We performed phylogenetic and protein sequence analysis, gene expression profiling, and 5-methyl-cytosine methylation immunodetection studies to evaluate the role of CsDML and its homolog in poplar, PtaDML6. Transgenic hybrid poplars overexpressing CsDML were produced and analysed. Short days and cold temperatures induced CsDML and PtaDML6. Overexpression of CsDML accelerated short-day-induced bud formation, specifically from Stages 1 to 0. Buds acquired a red-brown coloration earlier than wild-type plants, alongside with the up-regulation of flavonoid biosynthesis enzymes and accumulation of flavonoids in the shoot apical meristem and bud scales. Our data show that the CsDML gene induces bud formation needed for the survival of the apical meristem under the harsh conditions of winter.
从活跃生长到休眠的转变对多年生植物的生存至关重要。我们从板栗(Castanea sativa Mill.)冬季富集 cDNA 消减文库中鉴定出一个 DEMETER 样(CsDML)cDNA,板栗是一种具有重要经济和生态意义的物种。接下来,我们在触发树木芽休眠的信号下,对这种 DNA 去甲基酶及其在更具实验可操作性的杂种杨树(Populus tremula × alba)中的假定同源物进行了特征描述。我们进行了系统发育和蛋白质序列分析、基因表达谱分析和 5-甲基胞嘧啶免疫检测研究,以评估 CsDML 及其在杨树 PtaDML6 中的作用。我们生产并分析了过表达 CsDML 的转基因杂种杨树。短日照和低温诱导 CsDML 和 PtaDML6 的表达。CsDML 的过表达加速了短日照诱导的芽形成,特别是从第 1 阶段到第 0 阶段。与野生型植物相比,芽更早地呈现出红棕色,同时黄酮类生物合成酶的表达上调,以及在茎尖分生组织和芽鳞片中积累黄酮类化合物。我们的数据表明,CsDML 基因在冬季恶劣条件下诱导顶芽分生组织形成所需的芽形成。