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Transcripts and MicroRNAs Responding to Salt Stress in Musa acuminata Colla (AAA Group) cv. Berangan Roots

机译:响应于盐胁迫的Musa acuminata Colla(AAA Group)的转录本和MicroRNA。槟榔根

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摘要

Physiological responses to stress are controlled by expression of a large number of genes, many of which are regulated by microRNAs. Since most banana cultivars are salt-sensitive, improved understanding of genetic regulation of salt induced stress responses in banana can support future crop management and improvement in the face of increasing soil salinity related to irrigation and climate change. In this study we focused on determining miRNA and their targets that respond to NaCl exposure and used transcriptome sequencing of RNA and small RNA from control and NaCl-treated banana roots to assemble a cultivar-specific reference transcriptome and identify orthologous and Musa-specific miRNA responding to salinity. We observed that, banana roots responded to salinity stress with changes in expression for a large number of genes (9.5% of 31,390 expressed unigenes) and reduction in levels of many miRNA, including several novel miRNA and banana-specific miRNA-target pairs. Banana roots expressed a unique set of orthologous and Musa-specific miRNAs of which 59 respond to salt stress in a dose-dependent manner. Gene expression patterns of miRNA compared with those of their predicted mRNA targets indicated that a majority of the differentially expressed miRNAs were down-regulated in response to increased salinity, allowing increased expression of targets involved in diverse biological processes including stress signaling, stress defence, transport, cellular homeostasis, metabolism and other stress-related functions. This study may contribute to the understanding of gene regulation and abiotic stress response of roots and the high-throughput sequencing data sets generated may serve as important resources related to salt tolerance traits for functional genomic studies and genetic improvement in banana.
机译:对应激的生理反应受大量基因表达的控制,其中许多受microRNA调控。由于大多数香蕉品种对盐敏感,因此,面对与灌溉和气候变化有关的土壤盐分不断提高的情况,对香蕉盐诱导的胁迫响应的遗传调控的更好理解可以支持未来的作物管理和改良。在这项研究中,我们专注于确定对NaCl暴露有反应的miRNA及其靶标,并使用来自对照和NaCl处理的香蕉根的RNA和小RNA的转录组测序来组装一个品种特定的参考转录组,并鉴定直系同源和Musa特异性的miRNA响应盐度。我们观察到,香蕉根对盐分胁迫有反应,其中大量基因(31,390个表达的单基因的表达中有9.5%)的表达发生了变化,并且许多miRNA的水平降低,包括几个新颖的miRNA和香蕉特异性miRNA-靶对。香蕉根表达了一套独特的直系同源和Musa特异的miRNA,其中59种以剂量依赖的方式响应盐胁迫。 miRNA的基因表达模式与其预期的mRNA靶标相比,表明大多数差异表达的miRNA因盐度增加而被下调,从而使涉及多种生物过程(包括应激信号,应激防御,转运)的靶标表达增加,细胞稳态,新陈代谢和其他与压力有关的功能。这项研究可能有助于了解根的基因调控和非生物胁迫响应,并且所产生的高通量测序数据集可以作为与香蕉的功能基因组研究和遗传改良有关的耐盐性状的重要资源。

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