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破碎、沉默且隐匿:驯化的内源性副逆转录病毒逃脱了甜菜(Beta vulgaris)基因组的清除。

Broken, silent, and in hiding: tamed endogenous pararetroviruses escape elimination from the genome of sugar beet (Beta vulgaris).

作者信息

Schmidt Nicola, Seibt Kathrin M, Weber Beatrice, Schwarzacher Trude, Schmidt Thomas, Heitkam Tony

机构信息

Faculty of Biology, Institute of Botany, Technische Universität Dresden, Dresden, Germany.

Department of Genetics and Genome Biology, University of Leicester, Leicester, UK.

出版信息

Ann Bot. 2021 Aug 26;128(3):281-299. doi: 10.1093/aob/mcab042.

Abstract

BACKGROUND AND AIMS

Endogenous pararetroviruses (EPRVs) are widespread components of plant genomes that originated from episomal DNA viruses of the Caulimoviridae family. Due to fragmentation and rearrangements, most EPRVs have lost their ability to replicate through reverse transcription and to initiate viral infection. Similar to the closely related retrotransposons, extant EPRVs were retained and often amplified in plant genomes for several million years. Here, we characterize the complete genomic EPRV fraction of the crop sugar beet (Beta vulgaris, Amaranthaceae) to understand how they shaped the beet genome and to suggest explanations for their absent virulence.

METHODS

Using next- and third-generation sequencing data and genome assembly, we reconstructed full-length in silico representatives for the three host-specific EPRVs (beetEPRVs) in the B. vulgaris genome. Focusing on the endogenous caulimovirid beetEPRV3, we investigated its chromosomal localization, abundance and distribution by fluorescent in situ and Southern hybridization.

KEY RESULTS

Full-length beetEPRVs range between 7.5 and 10.7 kb in size, are heterogeneous in structure and sequence, and occupy about 0.3 % of the beet genome. Although all three beetEPRVs were assigned to the florendoviruses, they showed variably arranged protein-coding domains, different fragmentation, and preferences for diverse sequence contexts. We observed small RNAs that specifically target the individual beetEPRVs, indicating stringent epigenetic suppression. BeetEPRV3 sequences occur along all sugar beet chromosomes, preferentially in the vicinity of each other and are associated with heterochromatic, centromeric and intercalary satellite DNAs. BeetEPRV3 members also exist in genomes of related wild species, indicating an initial beetEPRV3 integration 13.4-7.2 million years ago.

CONCLUSIONS

Our study in beet illustrates the variability of EPRV structure and sequence in a single host genome. Evidence of sequence fragmentation and epigenetic silencing implies possible plant strategies to cope with long-term persistence of EPRVs, including amplification, fixation in the heterochromatin, and containment of EPRV virulence.

摘要

背景与目的

内源性副逆转录病毒(EPRV)是植物基因组中广泛存在的组成部分,其起源于花椰菜花叶病毒科的游离DNA病毒。由于片段化和重排,大多数EPRV已丧失通过逆转录进行复制并引发病毒感染的能力。与密切相关的逆转座子类似,现存的EPRV在植物基因组中得以保留并常常扩增了数百万年。在此,我们对作物甜菜(Beta vulgaris,苋科)完整的基因组EPRV组分进行表征,以了解它们如何塑造甜菜基因组,并为其缺乏毒力提供解释。

方法

利用二代和三代测序数据以及基因组组装,我们在甜菜基因组中重建了三种宿主特异性EPRV(甜菜EPRV)的全长计算机模拟代表序列。聚焦于内源性花椰菜花叶病毒科的甜菜EPRV3,我们通过荧光原位杂交和Southern杂交研究了其染色体定位、丰度和分布。

主要结果

全长甜菜EPRV的大小在7.5至10.7 kb之间,结构和序列具有异质性,约占甜菜基因组的0.3%。尽管所有三种甜菜EPRV都被归类为花椰菜花叶病毒属,但它们显示出可变排列的蛋白质编码结构域、不同的片段化以及对不同序列背景的偏好。我们观察到特异性靶向各个甜菜EPRV的小RNA,表明存在严格的表观遗传抑制。甜菜EPRV3序列分布于所有甜菜染色体上,彼此之间优先相邻,并且与异染色质、着丝粒和居间卫星DNA相关。甜菜EPRV3成员也存在于相关野生种的基因组中,表明其最初整合时间为1340万至720万年前。

结论

我们对甜菜的研究阐明了单个宿主基因组中EPRV结构和序列的变异性。序列片段化和表观遗传沉默的证据意味着植物可能采用多种策略来应对EPRV的长期存在,包括扩增、固定于异染色质以及抑制EPRV毒力。

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