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Small RNA transcriptomes of mangroves evolve adaptively in extreme environments

机译:红树林的小RNA转录组在极端环境中适应性进化

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摘要

MicroRNAs (miRNAs) and endogenous small interfering RNAs (siRNAs) are key players in plant stress responses. Here, we present the sRNA transcriptomes of mangroves Bruguiera gymnorrhiza and Kandelia candel. Comparative computational analyses and target predictions revealed that mangroves exhibit distinct sRNA regulatory networks that differ from those of glycophytes. A total of 32 known and three novel miRNA families were identified. Conserved and mangrove-specific miRNA targets were predicted; the latter were widely involved in stress responses. The known miRNAs showed differential expression between the mangroves and glycophytes, reminiscent of the adaptive stress-responsive changes in Arabidopsis. B. gymnorrhiza possessed highly abundant but less conserved TAS3 trans-acting siRNAs (tasiRNAs) in addition to tasiR-ARFs, with expanded potential targets. Our results indicate that the evolutionary alteration of sRNA expression levels and the rewiring of sRNA-regulatory networks are important mechanisms underlying stress adaptation. We also identified sRNAs that are involved in salt and/or drought tolerance and nutrient homeostasis as possible contributors to mangrove success in stressful environments.
机译:MicroRNA(miRNA)和内源性小干扰RNA(siRNA)是植物胁迫反应的关键因素。在这里,我们介绍了红树林和裸露甘蓝的红树林的sRNA转录组。比较的计算分析和目标预测表明,红树林展现出与糖类植物不同的独特的sRNA调控网络。总共鉴定出32个已知的miRNA家族和3个新颖的miRNA家族。保守的和红树林特异的miRNA靶被预测;后者广泛参与了压力反应。已知的miRNA显示出在红树林和糖植物之间的差异表达,让人联想到拟南芥的适应性应激反应性变化。除tasiR-ARF外,裸子叶杆菌还具有高度丰富但保守性较低的TAS3反式作用siRNA(tasiRNA),具有潜在的靶标。我们的结果表明,sRNA表达水平的进化改变和sRNA调控网络的重新布线是应激适应的重要机制。我们还鉴定出与耐盐和/或干旱耐受性以及养分稳态有关的sRNAs可能是在压力环境下红树林成功的原因。

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