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对具有不同特性的两个小麦品种不同组织中的 microRNA 表达谱进行全面、综合的基因组分析。

Comprehensive, integrative genomic analysis of microRNA expression profiles in different tissues of two wheat cultivars with different traits.

机构信息

Department of Pathology, Cancer Center Amsterdam, Amsterdam UMC, Vrije Universiteit Amsterdam, Amsterdam, The Netherlands.

School of Agriculture, Food and Wine, University of Adelaide, Urrbrae, SA, 5064, Australia.

出版信息

Funct Integr Genomics. 2022 Dec 23;23(1):15. doi: 10.1007/s10142-022-00920-1.

Abstract

Wheat is one of the most important food sources on Earth. MicroRNAs (miRNA) play important roles in wheat productivity. To identify wheat miRNAs, we constructed and sequenced sRNA libraries from leaves and roots of two wheat cultivars (RAC875 and Kukri) with many different traits. Given that available miRNA wheat complement in the plant-specific database PmiREN ( https://pmiren.com ) does not include root tissues and root-associated miRNAs might thus be missing, we performed first the prediction of novel miRNAs using the sRNAbench tool. We found a total of 150 putatively novel miRNA genes with expression of both arms from 289 unique mature sequences and nearly 30% of all miRNA reads in roots corresponded to novel miRNAs. In contrast, this figure in leaves dropped to under 3%, confirming the undersampling of roots in the complement of known miRNAs. By using 120 publicly available wheat datasets, 598 Zea mays small RNA libraries, 64 plant species genomes, wheat degradome library, and functional enrichment analysis, a subset of novel miRNAs were confirmed as bona-fide miRNAs. Of the total 605 miRNAs identified in this study inclusive of 316 known miRNAs, 528 miRNAs were shared by both cultivars, 429 miRNAs were shared by both root tissues and 329 miRNAs were shared by both leaf tissues. In addition, 32 miRNAs were specific to Kukri while 45 miRNAs were specific to RAC875. These miRNAs had diverse functions, such as regulation of gene transcription, protein translation, energy metabolism, and cell cycle progression. Our data provide a genome-wide miRNA expression profile in these two wheat cultivars and help functional studies of wheat genomics.

摘要

小麦是地球上最重要的食物来源之一。MicroRNAs(miRNA)在小麦生产力中发挥着重要作用。为了鉴定小麦 miRNA,我们从具有许多不同特性的两个小麦品种(RAC875 和 Kukri)的叶片和根部构建并测序了 sRNA 文库。鉴于植物特异性数据库 PmiREN(https://pmiren.com)中可用的 miRNA 小麦补体不包括根组织,因此可能缺少根相关 miRNA,我们首先使用 sRNAbench 工具对新的 miRNA 进行了预测。我们总共发现了 150 个具有表达的推定新 miRNA 基因,这些基因来自 289 个独特的成熟序列,并且近 30%的根 miRNA 读取对应于新的 miRNA。相比之下,这个数字在叶片中下降到 3%以下,证实了已知 miRNA 补体中根组织的采样不足。通过使用 120 个公开可用的小麦数据集、598 个 Zea mays 小 RNA 文库、64 个植物物种基因组、小麦降解组文库和功能富集分析,确认了一小部分新的 miRNA 为真正的 miRNA。在本研究中鉴定的总共 605 个 miRNA 中,包括 316 个已知 miRNA,这两个品种共享 528 个 miRNA,两个根组织共享 429 个 miRNA,两个叶组织共享 329 个 miRNA。此外,32 个 miRNA 是 Kukri 特异性的,而 45 个 miRNA 是 RAC875 特异性的。这些 miRNA 具有多种功能,如基因转录、蛋白质翻译、能量代谢和细胞周期进程的调节。我们的数据提供了这两个小麦品种的全基因组 miRNA 表达谱,有助于小麦基因组学的功能研究。

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