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甜橙红肉突变体及其野生型中 microRNAs 的发现和比较分析。

Discovery and comparative profiling of microRNAs in a sweet orange red-flesh mutant and its wild type.

机构信息

Key Laboratory of Horticultural Plant Biology of Ministry of Education, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

BMC Genomics. 2010 Apr 17;11:246. doi: 10.1186/1471-2164-11-246.

Abstract

BACKGROUND

Red-flesh fruit is absent from common sweet orange varieties, but is more preferred by consumers due to its visual attraction and nutritional properties. Our previous researches on a spontaneous red-flesh mutant revealed that the trait is caused by lycopene accumulation and is regulated by both transcriptional and post-transcriptional mechanisms. However, the knowledge on post-transcriptional regulation of lycopene accumulation in fruits is rather limited so far.

RESULTS

We used Illumina sequencing method to identify and quantitatively profile small RNAs on the red-flesh sweet orange mutant and its wild type. We identified 85 known miRNAs belonging to 48 families from sweet orange. Comparative profiling revealed that 51 known miRNAs exhibited significant expression differences between mutant (MT) and wild type (WT). We also identified 12 novel miRNAs by the presence of mature miRNAs and corresponding miRNA*s in the sRNA libraries. Comparative analysis showed that 9 novel miRNAs are differentially expressed between WT and MT. Target predictions of the 60 differential miRNAs resulted 418 target genes in sweet orange. GO and KEGG annotation revealed that high ranked miRNA-target genes are those implicated in transcription regulation, protein modification and photosynthesis. The expression profiles of target genes involved in carotenogenesis and photosynthesis were further confirmed to be complementary to the profiles of corresponding miRNAs in WT and MT.

CONCLUSION

This study comparatively characterized the miRNAomes between the red-flesh mutant and the wild type, the results lay a foundation for unraveling the miRNA-mediated molecular processes that regulate lycopene accumulation in the sweet orange red-flesh mutant.

摘要

背景

红肉品种的橙子在常见的甜橙品种中并不存在,但由于其视觉吸引力和营养价值,更受消费者的喜爱。我们之前对一个自发的红肉突变体的研究表明,该性状是由番茄红素积累引起的,受转录和转录后机制的调控。然而,迄今为止,人们对果实中番茄红素积累的转录后调控知之甚少。

结果

我们使用 Illumina 测序方法来鉴定和定量分析红肉甜橙突变体及其野生型中的小 RNA。我们从甜橙中鉴定出 48 个家族的 85 个已知 miRNA。比较分析显示,51 个已知 miRNA 在突变体(MT)和野生型(WT)之间表达差异显著。我们还通过 sRNA 文库中成熟 miRNA 和相应的 miRNA*的存在,鉴定出 12 个新的 miRNA。比较分析显示,9 个新的 miRNA 在 WT 和 MT 之间表达差异。对 60 个差异 miRNA 的靶基因预测得到了 418 个甜橙靶基因。GO 和 KEGG 注释显示,高排名的 miRNA 靶基因是那些与转录调控、蛋白质修饰和光合作用相关的基因。与 WT 和 MT 中相应 miRNA 表达谱相吻合的是,类胡萝卜素生物合成和光合作用相关靶基因的表达谱。

结论

本研究比较了红肉突变体和野生型之间的 miRNA 组,为揭示调控甜橙红肉突变体番茄红素积累的 miRNA 介导的分子过程奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/705b/2864249/57ebac497274/1471-2164-11-246-1.jpg

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