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对烟粉虱(半翅目:粉虱科)中的 Mariner 样转座子及其衍生的 MITEs 进行全基因组特征分析。

Genome-wide characterization of Mariner-like transposons and their derived MITEs in the Whitefly Bemisia tabaci (Hemiptera: Aleyrodidae).

机构信息

Laboratory of Biochemistry and Biotechnology (LR01ES05), Faculty of Sciences of Tunis, University of Tunis El Manar, 2092 Tunis, Tunisia.

Biologie des Organismes, Stress, Santé, Environnement, Le Mans Université, F-72085 Le Mans, France.

出版信息

G3 (Bethesda). 2021 Dec 8;11(12). doi: 10.1093/g3journal/jkab287.

Abstract

The whitefly, Bemisia tabaci is a hemipteran pest of vegetable crops vectoring a broad category of viruses. Currently, this insect pest showed a high adaptability and resistance to almost all the chemical compounds commonly used for its control. In many cases, transposable elements (TEs) contributed to the evolution of host genomic plasticity. This study focuses on the annotation of Mariner-like elements (MLEs) and their derived Miniature Inverted repeat Transposable Elements (MITEs) in the genome of B. tabaci. Two full-length MLEs belonging to mauritiana and irritans subfamilies were detected and named Btmar1.1 and Btmar2.1, respectively. Additionally, 548 defective MLE sequences clustering mainly into 19 different Mariner lineages of mauritiana and irritans subfamilies were identified. Each subfamily showed a significant variation in MLE copy number and size. Furthermore, 71 MITEs were identified as MLEs derivatives that could be mobilized via the potentially active transposases encoded by Btmar 1.1 and Btmar2.1. The vast majority of sequences detected in the whitefly genome present unusual terminal inverted repeats (TIRs) of up to 400 bp in length. However, some exceptions are sequences without TIRs. This feature of the MLEs and their derived MITEs in B. tabaci genome that distinguishes them from all the other MLEs so far described in insects, which have TIRs size ranging from 20 to 40 bp. Overall, our study provides an overview of MLEs, especially those with large TIRs, and their related MITEs, as well as diversity of their families, which will provide a better understanding of the evolution and adaptation of the whitefly genome.

摘要

烟粉虱是一种半翅目害虫,它会传播广泛的病毒类别。目前,这种昆虫对几乎所有常用的化学化合物都表现出了高度的适应性和抗性。在许多情况下,转座元件(TEs)促进了宿主基因组可塑性的进化。本研究专注于烟粉虱基因组中 Mariner 样元件(MLEs)及其衍生的微型反转录转座元件(MITEs)的注释。检测到并分别命名了两个属于 Mauritiana 和 Irritans 亚科的全长 MLE,即 Btmar1.1 和 Btmar2.1。此外,鉴定出了 548 个主要聚类为 Mauritiana 和 Irritans 亚科 19 个不同 Mariner 谱系的缺陷 MLE 序列。每个亚科的 MLE 拷贝数和大小都有显著差异。此外,鉴定出了 71 个作为 MLE 衍生物的 MITEs,这些 MITEs可以通过 Btmar1.1 和 Btmar2.1 编码的潜在活性转座酶进行移动。在白虱基因组中检测到的绝大多数序列具有长达 400bp 的异常末端反向重复(TIRs)。然而,有些序列没有 TIRs。这一特征将 MLEs 及其衍生的 MITEs 与迄今为止在昆虫中描述的所有其他 MLEs 区分开来,后者的 TIRs 大小在 20 到 40bp 之间。总的来说,我们的研究提供了一个关于 MLEs 的概述,特别是那些具有大 TIRs 的 MLEs,以及它们相关的 MITEs,以及它们家族的多样性,这将有助于更好地理解白虱基因组的进化和适应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/154b/8664452/0215e7a9b057/jkab287f1.jpg

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