Literature DB >> 34333513

MiR156 regulates anthocyanin biosynthesis through SPL targets and other microRNAs in poplar.

Yamei Wang1,2, Wenwen Liu1, Xinwei Wang3, Ruijuan Yang1,2, Zhenying Wu1, Han Wang1,2, Lei Wang4, Zhubing Hu4, Siyi Guo4, Hailing Zhang5, Jinxing Lin3, Chunxiang Fu6.   

Abstract

Anthocyanins biosynthesized from the flavonoid pathway are types of pigments that are involved in the protection of poplar from biotic and abiotic stresses. Previous researchers studying anthocyanin-related transcription factors and structural genes in poplar have made significant discoveries. However, little is known about the regulatory role of microRNAs in anthocyanin biosynthesis in poplar. Here, we overexpressed miR156 in poplar to study the comprehensive effects of the miR156-SPL module on the biosynthesis of anthocyanins. Small RNA sequencing analysis revealed 228 microRNAs differentially expressed in transgenic poplar plants with dramatically increased miR156 levels. Furthermore, integrated microRNAomic and transcriptomic analysis suggested that two microRNAs, miR160h, and miR858, have the potential to affect anthocyanin accumulation in poplar by regulating auxin response factors and MYB transcription factors, respectively. Additionally, the accumulation of miR160h and miR858 displayed a positive correlation with miR156 levels, suggesting a possible interaction between the miR156-SPL module and these microRNAs in poplar. Last, metabolomics analysis revealed that the levels of anthocyanins, flavones, and flavonols were substantially elevated in transgenic poplar plants overexpressing miR156 compared with the wild type, whereas the total lignin content was reduced in the transgenic plants. Taken together, our results indicate that miR156 can fine tune the anthocyanin biosynthetic pathway via multiple factors, including microRNAs, transcription factors, and the levels of structural genes, in poplar. This provides additional clues for understanding the complex regulatory network of anthocyanin biosynthesis in woody plants.
© 2020. The Author(s).

Entities:  

Year:  2020        PMID: 34333513     DOI: 10.1038/s41438-020-00341-w

Source DB:  PubMed          Journal:  Hortic Res        ISSN: 2052-7276            Impact factor:   6.793


  1 in total

1.  miR172 Regulates both Vegetative and Reproductive Development in the Perennial Woody Plant Jatropha curcas.

Authors:  Mingyong Tang; Xue Bai; Long-Jian Niu; Xia Chai; Mao-Sheng Chen; Zeng-Fu Xu
Journal:  Plant Cell Physiol       Date:  2018-12-01       Impact factor: 4.927

  1 in total
  1 in total

1.  Identification of microRNAs and their target genes related to needle discoloration of evergreen tree Chinese cedar (Cryptomeria fortunei) in cold winters.

Authors:  Yingting Zhang; Junjie Yang; Lijuan Zhu; Jinyu Xue; Hailiang Hu; Jiebing Cui; Jin Xu
Journal:  Planta       Date:  2021-07-20       Impact factor: 4.116

  1 in total

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