Department of Pathology, Cancer Center Amsterdam, Amsterdam UMC, Vrije Universiteit Amsterdam, 1081 HV Amsterdam, The Netherlands.
School of Agriculture, Food and Wine, University of Adelaide, Urrbrae, SA 5064, Australia.
Biomolecules. 2023 Feb 26;13(3):440. doi: 10.3390/biom13030440.
Wheat is one of the most important food sources on Earth. MicroRNAs (miRNAs) play important roles in wheat productivity. To identify wheat miRNAs as well as their expression profiles under drought condition, we constructed and sequenced small RNA (sRNA) libraries from the leaves and roots of three wheat cultivars (Kukri, RAC875 and Excalibur) under water and drought conditions. A total of 636 known miRNAs and 294 novel miRNAs were identified, of which 34 miRNAs were tissue- or cultivar-specific. Among these, 314 were significantly regulated under drought conditions. miRNAs that were drought-regulated in all cultivars displayed notably higher expression than those that responded in a cultivar-specific manner. Cultivar-specific drought response miRNAs were mainly detected in roots and showed significantly different drought regulations between cultivars. By using wheat degradome library, 6619 target genes were identified. Many target genes were strongly enriched for protein domains, such as MEKHLA, that play roles in drought response. Targeting analysis showed that drought-downregulated miRNAs targeted more genes than drought-upregulated miRNAs. Furthermore, such genes had more important functions. Additionally, the genes targeted by drought-downregulated miRNAs had multiple interactions with each other, while the genes targeted by drought-upregulated miRNAs had no interactions. Our data provide valuable information on wheat miRNA expression profiles and potential functions in different tissues, cultivars and drought conditions.
小麦是地球上最重要的食物来源之一。MicroRNAs(miRNAs)在小麦生产力中发挥着重要作用。为了鉴定小麦 miRNAs 及其在干旱条件下的表达谱,我们构建并测序了来自三个小麦品种(Kukri、RAC875 和 Excalibur)的叶片和根系在水和干旱条件下的小 RNA(sRNA)文库。共鉴定出 636 个已知 miRNAs 和 294 个新的 miRNAs,其中 34 个 miRNAs 是组织或品种特异性的。在这些 miRNA 中,有 314 个在干旱条件下显著调节。在所有品种中均受干旱调节的 miRNAs 的表达水平明显高于以品种特异性方式响应的 miRNAs。品种特异性干旱响应 miRNAs 主要在根部检测到,并且在品种之间表现出明显不同的干旱调节。通过使用小麦降解组文库,鉴定了 6619 个靶基因。许多靶基因强烈富集了在干旱反应中发挥作用的蛋白结构域,如 MEKHLA。靶向分析表明,干旱下调的 miRNAs 靶向的基因多于干旱上调的 miRNAs。此外,这些基因具有更重要的功能。此外,干旱下调的 miRNAs 靶向的基因之间存在多个相互作用,而干旱上调的 miRNAs 靶向的基因之间没有相互作用。我们的数据提供了有关不同组织、品种和干旱条件下小麦 miRNA 表达谱和潜在功能的有价值信息。