State Key Laboratory of North China Crop Improvement and Regulation, College of Agronomy, Hebei Agricultural University, Baoding, 071000, Hebei, China.
College of Life Sciences, Hebei Agricultural University, Baoding, 071000, Hebei, China.
Sci Rep. 2020 Sep 25;10(1):15812. doi: 10.1038/s41598-020-72642-y.
Potassium (K) is essential for plant growth and stress responses. MicroRNAs (miRNAs) are involved in adaptation to nutrient deprivation through modulating gene expression. Here, we identified the miRNAs responsive to K deficiency in Triticum aestivum based on high-throughput small RNA sequencing analyses. Eighty-nine miRNAs, including 68 previously reported ones and 21 novel ones, displayed differential expression under K deficiency. In Gene Ontology and Kyoto Encyclopedia and Genome analyses, the putative target genes of the differentially expressed miRNAs were categorized into functional groups associated with ADP-binding activity, secondary metabolic pathways, and biosynthesis and metabolism. Functional characterization of tae-miR408, an miRNA significantly down-regulated under K deficiency, revealed its important role in mediating low-K tolerance. Compared with wild type, transgenic tobacco lines overexpressing tae-miR408 showed significantly improved K uptake, biomass, photosynthesis, and reactive oxygen species scavenging under K deficiency. These results show that distinct miRNAs function in the plant response to K deficiency through regulating target genes involved in energy metabolism and various secondary metabolic pathways. Our findings shed light on the plant response to K deficiency mediated by miRNAs in T. aestivum. Distinct miRNAs, such as tae-miR408, are valuable targets for generating crop varieties with improved K-use efficiency.
钾(K)是植物生长和应激反应所必需的。microRNAs(miRNAs)通过调节基因表达参与适应营养缺乏。在这里,我们基于高通量小 RNA 测序分析,鉴定了小麦对 K 缺乏响应的 miRNAs。89 个 miRNAs,包括 68 个先前报道的和 21 个新的,在 K 缺乏下表现出差异表达。在基因本体论和京都基因与基因组百科全书分析中,差异表达 miRNAs 的假定靶基因被归类为与 ADP 结合活性、次生代谢途径以及生物合成和代谢相关的功能组。对 tae-miR408 的功能表征,一种在 K 缺乏下显著下调的 miRNA,揭示了它在介导低 K 耐受性中的重要作用。与野生型相比,过表达 tae-miR408 的转基因烟草品系在 K 缺乏下表现出明显改善的 K 吸收、生物量、光合作用和活性氧清除。这些结果表明,不同的 miRNAs 通过调节参与能量代谢和各种次生代谢途径的靶基因,在植物对 K 缺乏的反应中发挥作用。我们的研究结果揭示了 miRNA 在小麦对 K 缺乏的反应中的作用。不同的 miRNAs,如 tae-miR408,是生成具有提高 K 利用效率的作物品种的有价值的靶标。