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Article

Identification of Small RNAs Associated with Salt Stress in Chrysanthemums through High-Throughput Sequencing and Bioinformatics Analysis

1
College of Forestry and Grassland Science, Jilin Agricultural University, No. 2888, Xincheng Street, Changchun 130118, China
2
College of Landscape Architecture, Northeast Forestry University, No. 26, Hexing Road, Harbin 150006, China
*
Author to whom correspondence should be addressed.
Genes 2023, 14(3), 561; https://doi.org/10.3390/genes14030561
Submission received: 2 January 2023 / Revised: 12 February 2023 / Accepted: 20 February 2023 / Published: 23 February 2023
(This article belongs to the Special Issue Abiotic Stress in Land Plants: Molecular Genetics and Genomics)

Abstract

The Chrysanthemum variety “Niu 9717” exhibits excellent characteristics as an ornamental plant and has good salt resistance. In this study, this plant was treated with 200 mM NaCl for 12 h followed by high-throughput sequencing of miRNA and degradome. Subsequently, the regulatory patterns of potential miRNAs and their target genes were searched to elucidate how Chrysanthemum miRNAs respond to salt. From the root and leaf samples, we identified a total of 201 known miRNAs belonging to 40 families; furthermore, we identified 79 new miRNAs, of which 18 were significantly differentially expressed (p < 0.05). The expressed miRNAs, which targeted a total of 144 mRNAs in the leaf and 215 mRNAs in the root, formed 144 and 226 miRNA–target pairs in roots and leaves, respectively. Combined with the miRNA expression profile, degradome and transcriptome data were then analyzed to understand the possible effects of the miRNA target genes and their pathways on salt stress. The identified genes were mostly located in pathways related to hormone signaling during plant growth and development. Overall, these findings suggest that conserved and novel miRNAs may improve salt tolerance through the regulation of hormone signal synthesis or expression of genes involved in hormone synthesis.
Keywords: Chrysanthemum; salt stress; miRNA; high-throughput sequencing Chrysanthemum; salt stress; miRNA; high-throughput sequencing

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MDPI and ACS Style

Nai, J.; Ma, T.; Liu, Y.; Zhou, Y. Identification of Small RNAs Associated with Salt Stress in Chrysanthemums through High-Throughput Sequencing and Bioinformatics Analysis. Genes 2023, 14, 561. https://doi.org/10.3390/genes14030561

AMA Style

Nai J, Ma T, Liu Y, Zhou Y. Identification of Small RNAs Associated with Salt Stress in Chrysanthemums through High-Throughput Sequencing and Bioinformatics Analysis. Genes. 2023; 14(3):561. https://doi.org/10.3390/genes14030561

Chicago/Turabian Style

Nai, Jiefei, Tieming Ma, Yingjie Liu, and Yunwei Zhou. 2023. "Identification of Small RNAs Associated with Salt Stress in Chrysanthemums through High-Throughput Sequencing and Bioinformatics Analysis" Genes 14, no. 3: 561. https://doi.org/10.3390/genes14030561

APA Style

Nai, J., Ma, T., Liu, Y., & Zhou, Y. (2023). Identification of Small RNAs Associated with Salt Stress in Chrysanthemums through High-Throughput Sequencing and Bioinformatics Analysis. Genes, 14(3), 561. https://doi.org/10.3390/genes14030561

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