Zhang Jingyu, Mao Zhiwei, Chong Kang
Genome Biol. 2013 Aug 30;14(8):R92. doi: 10.1186/gb-2013-14-8-r92.
mRNA degradation is a critical factor in determining mRNA abundance and enables rapid adjustment of gene expression in response to environmental stress. The involvement of processing bodies in stress response suggests a role for decapping-mediated mRNA degradation. However, little is known about the role of mRNA degradation under stressful environmental conditions.
Here, we perform a global study of uncapped mRNAs, via parallel analysis of RNA ends (PARE), under cold stress in Brachypodium distachyon. Enrichment analysis indicates that degradation products detected by PARE are mainly generated by the decapping pathway. Endonucleolytic cleavages are detected, uncovering another way of modulating gene expression. PARE and RNA-Seq analyses identify four types of mRNA decay patterns. Type II genes, for which light-harvesting processes are over-represented in gene ontology analyses, show unchanged transcript abundance and altered uncapped transcript abundance. Uncapping-mediated transcript stability of light harvesting-related genes changes significantly in response to cold stress, which may allow rapid adjustments in photosynthetic activity in response to cold stress. Transcript abundance and uncapped transcript abundance for type III genes changes in opposite directions in response to cold stress, indicating that uncapping-mediated mRNA degradation plays a role in regulating gene expression.
To our knowledge, this is the first global analysis of mRNA degradation under environmental stress conditions in Brachypodium distachyon. We uncover specific degradation and endonucleolytic cleavage patterns under cold stress, which will deepen our understanding of mRNA degradation under stressful environmental conditions, as well as the cold stress response mechanism in monocots.
mRNA 降解是决定 mRNA 丰度的关键因素,能够使基因表达快速响应环境胁迫而进行调整。加工小体参与胁迫响应表明脱帽介导的 mRNA 降解发挥了作用。然而,在胁迫环境条件下 mRNA 降解的作用却鲜为人知。
在此,我们通过对二穗短柄草在冷胁迫下的 RNA 末端进行平行分析(PARE),对无帽 mRNA 进行了全面研究。富集分析表明,PARE 检测到的降解产物主要由脱帽途径产生。检测到了内切核酸酶切割,揭示了另一种调节基因表达的方式。PARE 和 RNA 测序分析确定了四种类型的 mRNA 衰变模式。在基因本体分析中,光捕获过程在 II 型基因中过度富集,其转录本丰度不变,但无帽转录本丰度发生改变。光捕获相关基因的脱帽介导的转录本稳定性在冷胁迫下发生显著变化,这可能使光合作用活性能够快速响应冷胁迫进行调整。III 型基因的转录本丰度和无帽转录本丰度在冷胁迫下呈相反方向变化,表明脱帽介导的 mRNA 降解在调节基因表达中发挥作用。
据我们所知,这是首次对二穗短柄草在环境胁迫条件下的 mRNA 降解进行全面分析。我们揭示了冷胁迫下特定的降解和内切核酸酶切割模式,这将加深我们对胁迫环境条件下 mRNA 降解以及单子叶植物冷胁迫响应机制的理解。