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Comparative Profiling of miRNAs and Target Gene Identification in Distant-Grafting between Tomato and Lycium (Goji Berry)

机译:番茄与枸杞(Goji Berry)远距离嫁接中miRNA的比较分析和靶标基因鉴定

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Local translocation of small RNAs between cells is proved. Long distance translocation between rootstock and scion is also well documented in the homo-grafting system, but the process in distant-grafting is widely unexplored where rootstock and scion belonging to different genera. Micro RNAs are a class of small, endogenous, noncoding, gene silencing RNAs that regulate target genes of a wide range of important biological pathways in plants. In this study, tomato was grafted onto goji ( Lycium chinense Mill.) to reveal the insight of miRNAs regulation and expression patterns within a distant-grafting system. Goji is an important traditional Chinese medicinal plant with enriched phytochemicals. Illumina sequencing technology has identified 68 evolutionary known miRNAs of 37 miRNA families. Moreover, 168 putative novel miRNAs were also identified. Compared with control tomato, 43 (11 known and 32 novels) and 163 (33 known and 130 novels) miRNAs were expressed significantly different in shoot and fruit of grafted tomato, respectively. The fruiting stage was identified as the most responsive in the distant-grafting approach and 123 miRNAs were found as up-regulating in the grafted fruit which is remarkably higher compare to the grafted shoot tip (28). Potential targets of differentially expressed miRNAs were found to be involved in diverse metabolic and regulatory pathways. ADP binding activities, molybdopterin synthase complex and RNA helicase activity were found as enriched terms in GO (Gene Ontology) analysis. Additionally, “metabolic pathways” was revealed as the most significant pathway in KEGG (Kyoto Encyclopedia of Genes and Genomes) analysis. The information of the small RNA transcriptomes that are obtained from this study might be the first miRNAs elucidation for a distant-grafting system, particularly between goji and tomato. The results from this study will provide the insights into the molecular aspects of miRNA-mediated regulation in the medicinal plant goji, and in grafted tomato. Noteworthy, it would provide a basis how miRNA signals could exchange between rootstock and scion, and the relevance to diverse biological processes.
机译:证明了小RNA在细胞之间的局部移位。在同质嫁接系统中,砧木与接穗之间的远距离转移也有充分的文献记载,但是远距离嫁接的过程尚未得到广泛的探讨,因为砧木与接穗属于不同属。微小RNA是一类小的,内源性,非编码性基因沉默RNA,可调节植物中多种重要生物途径的靶基因。在这项研究中,将番茄移植到枸杞(枸杞)上,以揭示远距离嫁接系统中miRNA调控和表达模式的见解。枸杞是重要的中药材,富含丰富的植物化学物质。 Illumina测序技术已鉴定出37个miRNA家族中的68个进化已知miRNA。此外,还鉴定了168种推定的新型miRNA。与对照番茄相比,嫁接番茄的芽和果实中分别表达了43种(11种已知和32种小说)和163种(33种已知和130种小说)miRNAs显着不同。在远距离嫁接方法中,结果期被认为是响应最强的,并且在嫁接的果实中发现123个miRNA上调,这比嫁接的茎尖高得多(28)。发现差异表达的miRNA的潜在靶标涉及多种代谢和调节途径。在GO(基因本体论)分析中,发现ADP结合活性,钼蝶呤合酶复合物和RNA解旋酶活性是丰富的术语。另外,“代谢途径”被揭示为KEGG(《基因与基因组京都百科全书》)分析中最重要的途径。从这项研究中获得的小RNA转录组的信息可能是首次阐明远距离移植系统的miRNA,特别是在枸杞和番茄之间。这项研究的结果将提供有关药用植物枸杞和嫁接番茄中miRNA介导的调控的分子方面的见识。值得注意的是,它将为miRNA信号如何在砧木和接穗之间交换以及与多种生物过程的相关性提供基础。

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