Key Laboratory of Biology and Genetic Improvement of Horticultural Crops (North China), Ministry of Agriculture and Rural Affairs, Beijing Vegetable Research Center, Beijing Academy of Agriculture and Forestry Sciences, Beijing, 100097, China.
Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.
Theor Appl Genet. 2022 Aug;135(8):2875-2890. doi: 10.1007/s00122-022-04156-2. Epub 2022 Jul 8.
A melon gene MSO1 located on chromosome 10 by map-based cloning strategy, which encodes an ARGONAUTE 7 protein, is responsible for the development of shoot organization. Plant endogenous small RNAs (sRNAs) are involved in various plant developmental processes. In Arabidopsis, sRNAs combined with ARGONAUTE (AGO) proteins are incorporated into the RNA-induced silencing complex (RISC), which functions in RNA silencing or biogenesis of trans-acting siRNAs (ta-siRNAs). However, their roles in melon (Cucumis melo L.) are still unclear. Here, the melon shoot organization 1 (mso1) mutant was identified and shown to exhibit pleiotropic phenotypes in leaf morphology and plant architecture. Positional cloning of MSO1 revealed that it encodes a homologue of Arabidopsis AGO7/ZIPPY, which is required for the production of ta-siRNAs. The AG-to-C mutation in the second exon of MSO1 caused a frameshift mutation and significantly reduced its expression. Ectopic expression of MSO1 rescued the Arabidopsis ago7 phenotype. RNA-seq analysis showed that several genes involved in transcriptional regulation and plant hormones were significantly altered in mso1 compared to WT. A total of 304 and 231 miRNAs were identified in mso1 and WT by sRNA sequencing, respectively, and among them, 42 known and ten novel miRNAs were differentially expressed. cme-miR390a significantly accumulated, and the expression levels of the two ta-siRNAs were almost completely abolished in mso1. Correspondingly, their targets, the ARF3 and ARF4 genes, showed dramatically upregulated expression, indicating that the miR390-TAS3-ARF pathway has conserved roles in melon. These findings will help us better understand the molecular mechanisms of MSO1 in plant development in melon.
MSO1 基因位于 10 号染色体上,通过图谱克隆策略定位,该基因编码一个 ARGONAUTE 7 蛋白,负责芽组织的发育。植物内源性小 RNA(sRNA)参与各种植物发育过程。在拟南芥中,sRNA 与 ARGONAUTE(AGO)蛋白结合,被整合到 RNA 诱导沉默复合物(RISC)中,在 RNA 沉默或反式作用 siRNA(ta-siRNA)的生物发生中发挥作用。然而,它们在甜瓜(Cucumis melo L.)中的作用仍不清楚。在这里,鉴定出甜瓜芽组织 1(mso1)突变体,表现出叶片形态和植物结构的多效表型。MSO1 的定位克隆表明,它编码拟南芥 AGO7/ZIPPY 的同源物,该同源物是 ta-siRNA 产生所必需的。MSO1 第二外显子的 AG 到 C 突变导致移码突变,并显著降低其表达。MSO1 的异位表达挽救了拟南芥 ago7 表型。RNA-seq 分析表明,mso1 与 WT 相比,几个参与转录调控和植物激素的基因发生了显著改变。通过 sRNA 测序分别在 mso1 和 WT 中鉴定出 304 个和 231 个 miRNA,其中 42 个已知和 10 个新的 miRNA 表达差异。cme-miR390a 显著积累,mso1 中两种 ta-siRNA 的表达水平几乎完全被废除。相应地,它们的靶基因,ARF3 和 ARF4 基因,表现出明显的上调表达,表明 miR390-TAS3-ARF 途径在甜瓜中具有保守作用。这些发现将有助于我们更好地理解 MSO1 在甜瓜植物发育中的分子机制。