School of Computing Sciences, University of East Anglia, Norwich, UK.
Plant J. 2011 Jul;67(2):232-46. doi: 10.1111/j.1365-313X.2011.04586.x. Epub 2011 May 9.
Plants feature a particularly diverse population of short (s)RNAs, the central component of all RNA silencing pathways. Next generation sequencing techniques enable deeper insights into this complex and highly conserved mechanism and allow identification and quantification of sRNAs. We employed deep sequencing to monitor the sRNAome of developing tomato fruits covering the period between closed flowers and ripened fruits by profiling sRNAs at 10 time-points. It is known that microRNAs (miRNAs) play an important role in development but very little information is available about the majority of sRNAs that are not miRNAs. Here we show distinctive patterns of sRNA expression that often coincide with stages of the developmental process such as flowering, early and late fruit maturation. Moreover, thousands of non-miRNA sRNAs are differentially expressed during fruit development and ripening. Some of these differentially expressed sRNAs derived from transposons but many derive from protein coding genes or regions that show homology to protein coding genes, several of which are known to play a role in flower and fruit development. These findings raise the possibility of a regulative role of these sRNAs during fruit onset and maturation in a crop species. We also identified six new miRNAs and experimentally validated two target mRNAs. These two mRNAs are targeted by the same miRNA but do not belong to the same gene family, which is rare for plant miRNAs. Expression pattern and putative function of these targets indicate a possible role in glutamate accumulation, which contributes to establishing the taste of the fruit.
植物具有特别多样化的短(s)RNAs 群体,它们是所有 RNA 沉默途径的核心组成部分。下一代测序技术使我们能够更深入地了解这一复杂而高度保守的机制,并允许鉴定和量化 sRNAs。我们采用深度测序技术,通过在 10 个时间点对 sRNAs 进行分析,监测从闭花到成熟果实发育过程中的番茄果实 sRNA 组。已知 microRNAs (miRNAs) 在发育过程中起着重要作用,但关于不是 miRNAs 的大多数 sRNAs 的信息非常有限。在这里,我们展示了 sRNA 表达的独特模式,这些模式通常与开花、早期和晚期果实成熟等发育阶段相吻合。此外,在果实发育和成熟过程中有数千个非 miRNA sRNAs 差异表达。这些差异表达的 sRNAs 中的一些来源于转座子,但许多来源于蛋白质编码基因或与蛋白质编码基因具有同源性的区域,其中一些已知在花和果实发育中发挥作用。这些发现提出了这些 sRNAs 在作物物种果实起始和成熟过程中可能具有调节作用的可能性。我们还鉴定了六个新的 miRNAs,并通过实验验证了两个靶 mRNAs。这两个 mRNAs 被同一个 miRNA 靶向,但不属于同一个基因家族,这在植物 miRNAs 中很少见。这些靶基因的表达模式和推测的功能表明它们可能在谷氨酸积累中发挥作用,谷氨酸积累有助于建立果实的味道。