Transcriptome-wide Identification and Characterization of microRNAs and Their Targets in a Highly Adaptable Conifer Platycladus orientalis

IF 1.2 4区 农林科学 Q3 HORTICULTURE Journal of the American Society for Horticultural Science Pub Date : 2022-01-01 DOI:10.21273/jashs05091-21
Ying Yang, Xian-Ge Hu, Bingsong Zheng, Yue Li, Tongli Wang, Anket Sharma, Huwei Yuan, Jian-Feng Mao
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引用次数: 2

Abstract

MicroRNAs (miRNAs) are short noncoding RNAs (20–25 nucleotides) that regulate gene expression posttranscriptionally. However, identification and characterization of miRNAs remain limited for conifer species. In this study, we applied transcriptome-wide miRNAs sequencing to a conifer species Platycladus orientalis, which is highly adaptable to a wide range of environmental adversities, including drought, barren soil, and mild salinity. A total of 17,181,542 raw reads were obtained from the Illumina sequencing platform; 31 conserved and 91 novel miRNAs were identified, and their unique characteristics were further analyzed. Ten randomly selected miRNAs were validated by quantificational real-time polymerase chain reaction. Through miRNA target predictions based on psRNATarget, 2331 unique mRNAs were predicted to be targets of P. orientalis miRNAs that involved in 187 metabolic pathways in KEGG database. These targets included not only important transcription factors (e.g., class III homeodomain leucine zipper targeted by por-miR166d) but also indispensable nontranscriptional factor proteins (i.e., por-miR482a-3p regulated nucleotide-binding site leucine-rich repeat protein). Interestingly, six miRNAs (por-miR16, -miR44, -miR60-5p, -miR69–3p, -miR166b-5p, and -miR395c) were found in adaptation-related pathways (e.g., drought), indicating their possible involved in this species’ stress-tolerance characteristics. The present study provided essential information for understanding the regulatory role of miRNAs in P. orientalis and sheds light on their possible use in tree improvement for stress tolerance.
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高适应性侧柏中微小RNA及其靶标的转录组鉴定与表征
微小RNA(miRNA)是一种短的非编码RNA(20-25个核苷酸),可在转录后调节基因表达。然而,对于针叶树物种来说,miRNA的鉴定和表征仍然有限。在这项研究中,我们将转录组范围的miRNA测序应用于针叶树物种侧柏,侧柏高度适应各种环境逆境,包括干旱、贫瘠土壤和轻度盐度。从Illumina测序平台获得总共17181542个原始读数;鉴定了31个保守的和91个新的miRNA,并进一步分析了它们的独特特征。10个随机选择的miRNA通过定量实时聚合酶链反应进行验证。通过基于psRNATarget的miRNA靶点预测,在KEGG数据库中,2331个独特的mRNA被预测为东方假单胞菌miRNA的靶点,这些miRNA参与187种代谢途径。这些靶标不仅包括重要的转录因子(例如,由por-miR166d靶向的III类同源结构域亮氨酸拉链),还包括不可或缺的非转录因子蛋白(即,por-miR482a-3p调节的核苷酸结合位点富含亮氨酸的重复蛋白)。有趣的是,在适应相关途径(如干旱)中发现了六种miRNA(por-miR16、-miR44、-miR60-5p、-miR69-3p、-mmiR166b-5p和-miR395c),表明它们可能参与了该物种的应激耐受特征。本研究为理解miRNA在东方松中的调节作用提供了重要信息,并阐明了它们在改善树木抗逆性方面的可能用途。
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来源期刊
CiteScore
3.80
自引率
0.00%
发文量
31
审稿时长
2 months
期刊介绍: The Journal of the American Society for Horticultural Science publishes papers on the results of original research on horticultural plants and their products or directly related research areas. Its prime function is to communicate mission-oriented, fundamental research to other researchers. The journal includes detailed reports of original research results on various aspects of horticultural science and directly related subjects such as: - Biotechnology - Developmental Physiology - Environmental Stress Physiology - Genetics and Breeding - Photosynthesis, Sources-Sink Physiology - Postharvest Biology - Seed Physiology - Postharvest Biology - Seed Physiology - Soil-Plant-Water Relationships - Statistics
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