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Immunofluorescent Labeling of Plant Virus and Insect Vector Proteins in Hemipteran Guts
Published on: May 14, 2021
MicroRNA-315-5p promotes rice black-streaked dwarf virus infection by targeting a melatonin receptor in the small
Jianhua Zhang1, Yan Dong1, Man Wang1
1Institute of Plant Protection, Key Laboratory of Food Quality and Safety of Jiangsu Province, Jiangsu Academy of Agricultural Sciences, Nanjing, Jiangsu Province, 210014, China.
Background:
MicroRNAs (miRNAs), a class of small non-coding endogenous RNAs, play key roles in various biological processes. Most plant viruses are transmitted by insect vectors. However, little is known about the function of miRNAs on plant virus-insect host interaction.
Results:
We investigated the role of miR-315-5p in regulation of plant viral infection in insects using a rice black-streaked dwarf virus (RBSDV) and small brown planthopper (SBPH) interaction system. Our results showed that miR-315-5p had the highest expression level in 2nd-instar nymph, and was highly expressed in the salivary gland and midgut in SBPH. miR-315-5p was in response to and regulated RBSDV infection in SBPH. Injection of miR-315-5p mimic, agomir-315, significantly increased the RBSDV accumulation, whereas injection of miR-315-5p inhibitor, antagomir-315, reduced virus accumulation in SBPH. Furthermore, a melatonin receptor was identified as a target gene of miR-315-5p by the dual luciferase reporter assay. Knockdown of the melatonin receptor significantly increased the expression of RBSDV coat protein gene S10 and replication related genes, S5-1, S6, and S9-1. Furthermore, treatment with melatonin receptor antagonist luzindole and activator agomelatine significantly increased and reduced RBSDV accumulation in SBPH, respectively. Compared to the control, miR-315-5p did not affect the efficiency of RBSDV acquisition in SBPH. However, the efficiency of RBSDV transmission was significantly reduced after injecting antagomir-315.
Conclusion:
Taken together, our data reveal that miR-315-5p is beneficial for RBSDV infection in its insect vector by directly targeting a melatonin receptor. These findings provide a new insight to the function of miRNAs in virus-insect vector interaction. © 2021 Society of Chemical Industry.
Insights
MicroRNAs (miRNAs) regulate plant virus infection in insects. miR-315-5p benefits rice black-streaked dwarf virus (RBSDV) infection by targeting a melatonin receptor in planthoppers.
Area of Science:
- Molecular Biology
- Virology
- Entomology
Background:
- MicroRNAs (miRNAs) are small non-coding RNAs involved in biological processes.
- Plant viruses rely on insect vectors for transmission.
- The role of miRNAs in plant virus-insect interactions is largely unknown.
Purpose of the Study:
- Investigate the function of miR-315-5p in rice black-streaked dwarf virus (RBSDV) infection within its insect vector, the small brown planthopper (SBPH).
- Elucidate the molecular mechanism by which miR-315-5p influences viral accumulation and transmission.
Main Methods:
- Quantified miR-315-5p expression in different SBPH life stages and tissues.
- Utilized miR-315-5p mimics and inhibitors to assess effects on RBSDV accumulation.
- Identified miR-315-5p targets using dual-luciferase reporter assays.
- Examined the impact of melatonin receptor modulation on viral gene expression and accumulation.
- Assessed effects on virus acquisition and transmission efficiency.
Main Results:
- miR-315-5p expression peaked in 2nd-instar nymphs and was high in SBPH salivary glands and midguts.
- miR-315-5p mimic (agomir-315) increased RBSDV accumulation, while inhibitor (antagomir-315) decreased it.
- A melatonin receptor was identified as a direct target of miR-315-5p.
- Knockdown of the melatonin receptor enhanced RBSDV replication-related gene expression.
- Modulating the melatonin receptor with agonists/antagonists affected RBSDV accumulation.
- miR-315-5p did not influence virus acquisition but significantly reduced transmission efficiency when inhibited.
Conclusions:
- miR-315-5p promotes RBSDV infection in SBPH by targeting a melatonin receptor.
- This study provides novel insights into miRNA functions in virus-insect vector interactions.
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MicroRNAs
Microbe-Plant Interactions

