首页> 外文OA文献 >Genome-wide transcriptome analysis reveals small RNA profiles involved in early stages of stolon-to-tuber transitions in potato under photoperiodic conditions
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Genome-wide transcriptome analysis reveals small RNA profiles involved in early stages of stolon-to-tuber transitions in potato under photoperiodic conditions

机译:基因组的转录组分析显示,在光周期条件下,在马铃薯中涉及的小RNA曲线涉及斯托隆对块茎转变的早期阶段

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摘要

Abstract Background Small RNAs (sRNAs), especially miRNAs, act as crucial regulators of plant growth and development. Two other sRNA groups, trans-acting short-interfering RNAs (tasiRNAs) or phased siRNAs (phasiRNAs), are also emerging as potential regulators of plant development. Stolon-to-tuber transition in potato is an important developmental phase governed by many environmental, biochemical and hormonal cues. Among different environmental factors, photoperiod has a major influence on tuberization. Several mobile signals, mRNAs, proteins and transcription factors have been widely studied for their role in tuber formation in potato, however, no information is yet available that describes the molecular signals governing the early stages of stolon transitions or cell-fate changes at the stolon tip before it matures to potato. Stolon could be an interesting model for studying below ground organ development and we hypothesize that small RNAs might be involved in regulation of stolon-to-tuber transition process in potato. Also, there is no literature that describes the phased siRNAs in potato development. Results We performed sRNA profiling of early stolon stages (4, 7 and 10 d) under long-day (LD; 16 h light, 8 h dark) and short-day (SD; 8 h light, 16 h dark) photoperiodic conditions. Altogether, 7 (out of 324) conserved and 12 (out of 311) novel miRNAs showed differential expression in early stolon stages under SD vs LD photoperiodic conditions. Key target genes (StGRAS, StTCP2/4 and StPTB6) exhibited differential expression in early stolon stages under SD vs LD photoperiodic conditions, indicative of their potential role in tuberization. Out of 830 TAS-like loci identified, 24 were cleaved by miRNAs to generate 190 phased siRNAs. Some of them targeted crucial tuberization genes such as StPTB1, POTH1 and StCDPKs. Two conserved TAS loci, referred as StTAS3 and StTAS5, which share close conservation with members of the Solanaceae family, were identified in our analysis. One TAS-like locus (StTm2) was validated for phased siRNA generation and one of its siRNA was predicted to cleave an important tuber marker gene StGA2ox1. Conclusion Our study suggests that sRNAs and their selective target genes could be associated with the regulation of early stages of stolon-to-tuber transitions in a photoperiod-dependent manner in potato.
机译:摘要背景小RNA(SRNA),特别是MiRNA,充当植物生长和发展的关键调节因素。另外两种SRNA基团,反式作用短干扰RNA(TASIRNA)或分阶段SIRNA(PHASIRNA),也是植物发育的潜在调节因子。马铃薯的斯托隆对块茎过渡是由许多环境,生化和激素线索控制的重要发展阶段。在不同的环境因素中,光周期对结节产生了重大影响。已经广泛研究了几种流动信号,MRNA,蛋白质和转录因子在土豆中的块茎形成中的作用,然而,没有任何信息,描述了斯托隆在斯托伦转型或细胞排气变化的早期阶段的分子信号提示在它到马铃薯之前。 Stolon可能是一个有趣的研究,用于研究地面的地面风琴发展,我们假设小RNA可能参与马铃薯的托尔顿对块茎过渡过程的调节。此外,没有描述马铃薯发育中相位的siRNA的文献。结果我们在长期(LD; 16 H光,8小时黑暗)和短日(SD; 8 H光,16小时暗)光周期条件下对早期匍匐茎阶段(4,7和10d)进行SRNA分析(4,7和10d)。共有7(324个)保守和12(311个)新的miRNA在SD VS LD光周期条件下在早期的匍匐茎阶段显示出差异。关键靶基因(STGRAS,STTCP2 / 4和STPTB6)在SD VS LD光周期条件下表现出早期匍匐茎阶段的差异表达,表明它们在结节化中的潜在作用。在830个中鉴定出830个类似的基因座,MiRNA裂解24以产生190个相位的siRNA。其中一些靶向关键的结节基因,如stptb1,poth1和stcdpks。在我们的分析中确定了两个保守的TAS基因座,称为STTAS3和STTAS5,它与Solanaceae家族的成员一起欣赏。验证了一种静脉曲位(STTM2),用于序列SiRNA生成,预计其一个siRNA将切割重要的块茎标记基因STGA2Ox1。结论我们的研究表明,SRNA及其选择性靶基因可能与在马铃薯的光周期依赖性依赖性依赖性依赖于光周期依赖性的依赖性依赖性的调节。

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