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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:全基因组转录组分析揭示了在光周期条件下马铃薯从茎到块茎转变的早期阶段中所涉及的小RNA谱

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摘要

BackgroundSmall 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.
机译:背景小RNA(sRNA),尤其是miRNA,是植物生长发育的关键调节剂。反作用的短干扰RNA(tasiRNA)或阶段性siRNA(phasiRNA)等两个其他的sRNA组也正逐渐成为植物发育的潜在调节剂。马铃薯从马铃薯到马铃薯的过渡是重要的发育阶段,受许多环境,生化和激素提示的支配。在不同的环境因素中,光周期对块茎有重要影响。人们已经对几种移动信号,mRNA,蛋白质和转录因子在马铃薯块茎形成中的作用进行了广泛研究,但是,尚无可用信息来描述控制茎转变的早期阶段或cell茎细胞命运变化的分子信号。在马铃薯成熟之前翻倒。 Stolon可能是研究地下器官发育的有趣模型,我们假设小RNA可能参与了马铃薯从sto茎到块茎过渡过程的调控。另外,也没有文献描述马铃薯发育中的分阶段siRNA。

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