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Epigenetic Diversity Underlying Seasonal and Annual Variations in Brown Planthopper (BPH) Populations As Revealed by Methylation- Sensitive Restriction Assay

Overview
Journal Curr Genomics
Date 2024 Feb 8
PMID 38327650
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Abstract

Background: The brown planthopper (BPH) is a monophagous sap-sucking insect pest of rice that is responsible for massive yield loss. BPH populations, even when genetically homogenous, can display a vast range of phenotypes, and the development of effective pest-management strategies requires a good understanding of what generates this phenotypic variation. One potential source could be epigenetic differences.

Methods: With this premise, we explored epigenetic diversity, structure and differentiation in field populations of BPH collected across the rice-growing seasons over a period of two consecutive years. Using a modified methylation-sensitive restriction assay (MSRA) and CpG island amplification-representational difference analysis, site-specific cytosine methylation of five stress-responsive genes () was estimated, for identifying methylation-based epiallelic markers and epigenetic variation across BPH populations.

Results: Using a cost-effective and rapid protocol, our study, for the first time, revealed the epigenetic component of phenotypic variations in the wild populations of BPH. Besides, results showed that morphologically indistinguishable populations of BPH can be epigenetically distinct.

Conclusion: Screening field-collected BPH populations revealed the presence of previously unreported epigenetic polymorphisms and provided a platform for future studies aimed at investigating their significance for BPH. Furthermore, these findings can form the basis for understanding the contribution(s) of DNA methylation in providing phenotypic plasticity to BPH.

Citing Articles

Virulence Adaptation by Rice Planthoppers and Leafhoppers to Resistance Genes and Loci: A Review.

Horgan F Insects. 2024; 15(9).

PMID: 39336620 PMC: 11432362. DOI: 10.3390/insects15090652.

References
1.
Choi J, Lee Y . Double-edged sword: The evolutionary consequences of the epigenetic silencing of transposable elements. PLoS Genet. 2020; 16(7):e1008872. PMC: 7365398. DOI: 10.1371/journal.pgen.1008872. View

2.
Bao H, Gao H, Zhang Y, Fan D, Fang J, Liu Z . The roles of CYP6AY1 and CYP6ER1 in imidacloprid resistance in the brown planthopper: Expression levels and detoxification efficiency. Pestic Biochem Physiol. 2016; 129:70-74. DOI: 10.1016/j.pestbp.2015.10.020. View

3.
Jing S, Zhang L, Ma Y, Liu B, Zhao Y, Yu H . Genome-wide mapping of virulence in brown planthopper identifies loci that break down host plant resistance. PLoS One. 2014; 9(6):e98911. PMC: 4049697. DOI: 10.1371/journal.pone.0098911. View

4.
Lo N, Simpson S, Sword G . Epigenetics and developmental plasticity in orthopteroid insects. Curr Opin Insect Sci. 2018; 25:25-34. DOI: 10.1016/j.cois.2017.11.003. View

5.
Pang R, Chen M, Liang Z, Yue X, Ge H, Zhang W . Functional analysis of CYP6ER1, a P450 gene associated with imidacloprid resistance in Nilaparvata lugens. Sci Rep. 2016; 6:34992. PMC: 5056347. DOI: 10.1038/srep34992. View