Yawen Wu, Markus Müller, Tian Bai, S. Yao, O. Gailing, Zhen Liu
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引用次数: 4
Abstract
Camellia japonica var. decumbens is a naturally occurring highly cold resistant variety of Camellia japonica which is suitable for snowy and cold regions. However, the underlying cold-adaptive mechanisms associated with gene regulation have been poorly investigated. We analyzed the transcriptomic changes caused by cold stress in a cold-tolerant accession. Samples were collected at the end of each temperature treatment (T1, T3, T5, T7 and T9 represent the temperatures 25°C, 0°C, -4°C, -8°C and -12°C, respectively). Sample T1 at 25°C was used as control. Based on transcriptome analysis, 2828, 2384, 3099 and 3075 differentially expressed genes (DEGs) were up-regulated, and 3184, 2592, 2373 and 2615 DEGs were down-regulated by analyzing T3/T1, T5/T1, T7/T1 and T9/T1, respectively. A gene ontology (GO) analysis revealed an enrichment of GO terms such as response to stimulus, metabolic process, catalytic activity or binding. Out of the larger number of DEGs, 67 functional and regulatory DEGs stood out, since they were functionally characterized in other models. These genes are cold-responsive transcription factors (26) or involved in cold sensor or signal transduction (17) and in the stabilization of the plasma membrane and osmosensing response (24). These results suggest rapid and multiple molecular mechanisms of perception, transduction and responses to cold stress in cold acclimation of Camellia japonica var. decumbens. They could also serve as a valuable resource for relevant research on cold-tolerance and help to explore cold-related genes to foster the understanding of low-temperature tolerance and plant-environment interactions.
日本茶花(Camellia japonica var. decumbens)是一种自然产生的高度耐寒的日本茶花品种,适用于多雪和寒冷地区。然而,与基因调控相关的潜在冷适应机制尚未得到充分研究。我们分析了一个耐寒品种在冷胁迫下的转录组变化。在每个温度处理结束时采集样品(T1、T3、T5、T7和T9分别代表温度25℃、0℃、-4℃、-8℃和-12℃)。样品T1在25°C时作为对照。转录组分析结果显示,T3/T1、T5/T1、T7/T1和T9/T1的差异表达基因(deg)分别上调2828、2384、3099和3075个,下调3184、2592、2373和2615个。基因本体论(GO)分析显示,对刺激的反应、代谢过程、催化活性或结合等GO术语丰富。在大量的deg中,67个功能性和调节性deg脱颖而出,因为它们在其他模型中具有功能特征。这些基因是冷响应转录因子(26)或参与冷传感器或信号转导(17),并参与质膜和渗透感应反应的稳定(24)。这些结果提示,在茶树冷驯化过程中,对冷胁迫的感知、转导和响应具有快速而多样的分子机制。它们也可以为相关的耐寒性研究提供宝贵的资源,并有助于探索与冷相关的基因,以促进对低温耐受性和植物与环境相互作用的认识。
期刊介绍:
Annals of Forest Research is a semestrial open access journal, which publishes research articles, research notes and critical review papers, exclusively in English, on topics dealing with forestry and environmental sciences. The journal promotes high scientific level articles, by following international editorial conventions and by applying a peer-review selection process.