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一种植物病毒差异性地改变了半翅目传毒介体两个隐秘物种的DNA甲基化。

A plant virus differentially alters DNA methylation in two cryptic species of a hemipteran vector.

作者信息

Catto Michael A, Ghosh Saptarshi, Pandey Sudeep, Mondal Banani, Simmons Alvin, Hunt Brendan G, Srinivasan Rajagopalbabu

机构信息

Department of Entomology, University of Georgia, Griffin, GA, USA.

U.S. Department of Agriculture, Charleston, SC, USA.

出版信息

Npj Viruses. 2024 Aug 12;2(1):35. doi: 10.1038/s44298-024-00044-2.

Abstract

Epigenetic patterns including DNA methylation are known to vary between distantly related species, but it is not clear how these patterns differ at an intraspecific level. The sweetpotato whitefly, Bemisia tabaci (Gennadius) (Aleyrodidae; Hemiptera), encompasses several cryptic species. These cryptic species possess highly similar genomes but exhibit substantial biological and physiological differences. B. tabaci cryptic species are invasive, highly polyphagous, and transmit an array of plant infecting single stranded DNA viruses (ssDNA) -begomoviruses. In this study, DNA methylation patterns around genes and genomic features of two prominent B. tabaci cryptic species were investigated following acquisition of a monopartite ssDNA virus -tomato yellow curl virus. The cryptic species investigated included: B (also known as Middle East Asia Minor 1) and Q (also known as Mediterranean). Genomic features, such as promoters, gene bodies, and transposable elements were assessed for methylation levels in both B and Q cryptic species. Despite overall similar trends, both cryptic species showed differences in methylation levels between these genomic features. Virus induced differentially methylated regions were associated with predominantly distinct genes in B and Q cryptic species. All differentially methylated regions were assessed for differential gene expression and alternative splicing events with and without virus acquisition. DNA methylation levels were found to have a negative correlation with differential gene expression in both B and Q cryptic species. The differentially expressed genes were further grouped into hyper- and hypomethylated clusters. These clusters included genes with implications for virus-vector interactions including immune functions and xenobiotics' detoxification. The observed DNA methylation pattern differences within each cryptic species could, in part, explain some of the biological and physiological differences between them.

摘要

已知包括DNA甲基化在内的表观遗传模式在亲缘关系较远的物种之间存在差异,但尚不清楚这些模式在种内水平上是如何不同的。烟粉虱,Bemisia tabaci(Gennadius)(粉虱科;半翅目),包含几个隐存种。这些隐存种拥有高度相似的基因组,但表现出显著的生物学和生理学差异。烟粉虱隐存种具有入侵性、高度多食性,并传播一系列感染植物的单链DNA病毒(ssDNA)——双生病毒。在本研究中,在获取一种单组分ssDNA病毒——番茄黄化曲叶病毒后,研究了两种主要的烟粉虱隐存种基因周围的DNA甲基化模式和基因组特征。所研究的隐存种包括:B(也称为中东-小亚细亚1)和Q(也称为地中海)。评估了B和Q隐存种中启动子、基因体和转座元件等基因组特征的甲基化水平。尽管总体趋势相似,但两种隐存种在这些基因组特征之间的甲基化水平存在差异。病毒诱导的差异甲基化区域在B和Q隐存种中主要与不同的基因相关。评估了所有差异甲基化区域在有无病毒获取情况下的差异基因表达和可变剪接事件。发现DNA甲基化水平与B和Q隐存种中的差异基因表达呈负相关。差异表达基因进一步分为高甲基化和低甲基化簇。这些簇包括对病毒-载体相互作用有影响的基因,包括免疫功能和异生物质解毒。在每个隐存种中观察到的DNA甲基化模式差异,在一定程度上可以解释它们之间的一些生物学和生理学差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f426/11721087/75a9ac783753/44298_2024_44_Fig1_HTML.jpg

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