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首页> 外文期刊>Plant Growth Regulation: An International Journal on Natural and Synthetic Regulators >Genome-wide identification, characterization and expression analysis of novel long non-coding RNAs that mediate IBA-induced adventitious root formation in apple rootstocks
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Genome-wide identification, characterization and expression analysis of novel long non-coding RNAs that mediate IBA-induced adventitious root formation in apple rootstocks

机译:新型长期非编码RNA的基因组鉴定,表征及表达分析,其在苹果砧木中介导IBA诱导的不定根形成

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摘要

Adventitious roots (ARs) induced are essential for apple rootstock vegetative propagation, however, a transcriptomic analysis of long non-coding RNAs (lncRNAs) that mediate AR formation under exogenous indole-3-butyric acid (IBA) treated in the apple dwarf rootstock M26' (Malus pumila Mill.) rarely been explored. To explore this, we examined M26' stem cuttings treated with IBA (1mg L-1) and control (without IBA treatment), where anatomical analysis showed IBA-treated stems began to develop AR primordia within third day and ARs occurred after 16 days, while the control had no ARs developed. An assessment of hormone content levels in basal stem cuttings showed that, after IBA treatment, indole-3-acetic acid, zeatin riboside, and jasmonic acid were increased at third day but subsequently decreased later, however gibberellin-3 was decreased at third day. The control and IBA-treated third day basal stem cuttings were sent for whole-genome, high-throughput RNA sequencing. The results showed a total of 855 reliable lncRNAs were identified as novel lncRNAs and 63 novel lncRNAs were defined as IBA-responsive lncRNAs. Fifteen IBA-responsive lncRNAs were predicted to be putative targets for 94 miRNAs and three IBA-responsive lncRNA (CUFF.16781, CUFF.2143 and CUFF.41325) was predicted to be the target mimic of mdm-miR156 and mdm-miR396. Functional annotations of these potential target genes suggest that they are involved in many different biological processes, including plant hormone and sucrose signaling, which suggests that IBA-responsive lncRNAs may participate in AR formation in apple rootstocks. This study sheds light on IBA-mediated AR formation in apple rootstock cuttings and provides a foundation for further research.
机译:诱导的不定根(ARS)对于苹果砧木植物繁殖是必不可少的,然而,在苹果矮刀砧木M26处理的外源吲哚-3-丁酸(IBA)下介导AR形成的长非编码RNA(LNCRNA)的转录组分析'(Malus Pumila Mill。)很少被探索。为了探索这一点,我们检查了用IBA(1mg L-1)和对照(没有IBA治疗)治疗的M26'茎切屑,其中解剖学分析显示IBA处理的茎开始在第三天中发育AR原族,16天后发生ARS,虽然该控制没有开发的ARS。基底茎切割中激素含量水平的评估表明,在第三天在IBA治疗中,吲哚-3-乙酸,氮素核糖苷和茉莉酸,但随后在后期减少,但在第三天下降胃肠杆菌蛋白-3。对整个基因组,高通量RNA测序的控制和IBA治疗的第三天基础茎切割。结果表明,总共855个可靠的LNCRNA被鉴定为新型LNCRNA和63个新型LNCRNA被定义为IBA响应性LNCRNA。预计将预测94 miRNA和三个IBA响应LNCRNA(袖口0.1678和袖口41325)的推定靶标预测靶标被预测为MDM-MIR156和MDM-MIR396的目标模拟。这些潜在靶基因的功能注释表明它们涉及许多不同的生物过程,包括植物激素和蔗糖信号传导,这表明IBA响应性LNCRNA可以参与苹果砧木中的AR形成。本研究揭示了苹果砧木切割中的IBA介导的AR形成,为进一步研究提供了基础。

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