Differentially expressed genes under cold acclimation in Physcomitrella patens.

Ming-Ming Sun, Lin-Hui Li, Hua Xie, Rong-Cai Ma, Yi-Kun He
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引用次数: 23

Abstract

Cold acclimation improves freezing tolerance in plants. In higher plants, many advances have been made toward identifying the signaling and regulatory pathways that direct the low-temperature stress response; however, similar insights have not yet been gained for simple nonvascular plants, such as bryophytes. To elucidate the pathways that regulate cold acclimation in bryophytes, we used two PCR-based differential screening techniques, cDNA amplified fragment length polymorphism (cDNA-AFLP) and suppression subtractive hybridization (SSH), to isolate 510 ESTs that are differentially expressed during cold acclimation in Physcomitrella patens. We used realtime RT-PCR to further analyze expression of 29 of these transcripts during cold acclimation. Our results show that cold acclimation in the bryophyte Physcomitrella patens is not only largely similar to higher plants but also displays distinct differences, suggests significant alteration during the evolution of land plants.

小壶菌冷驯化下的差异表达基因。
冷驯化提高了植物的抗冻性。在高等植物中,在识别指导低温胁迫反应的信号传导和调控途径方面取得了许多进展;然而,对于简单的非维管植物,如苔藓植物,还没有获得类似的见解。为了阐明苔藓植物冷驯化的调控途径,我们利用cDNA扩增片段长度多态性(cDNA- aflp)和抑制减法杂交(SSH)两种基于pcr的差异筛选技术,分离了小假体(Physcomitrella patens)冷驯化过程中差异表达的510条ESTs。我们使用实时RT-PCR进一步分析了其中29个转录本在冷驯化过程中的表达。结果表明,苔藓植物小壶藻的冷适应性与高等植物基本相似,但也存在明显差异,表明在陆生植物的进化过程中发生了重大变化。
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