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发现并全基因组鉴定新型微型反向重复转座元件揭示了 Glycine 中的基因组特异性分布。

Discovery and genome-wide characterization of a novel miniature inverted repeat transposable element reveal genome-specific distribution in Glycine.

机构信息

Department of Agricultural Genetic Engineering, Ayhan Şahenk Faculty of Agricultural Sciences and Technologies, Niğde Ömer Halisdemir University, 51240, Niğde, Turkey.

出版信息

Genes Genomics. 2024 Nov;46(11):1271-1280. doi: 10.1007/s13258-024-01519-5. Epub 2024 Apr 27.

Abstract

BACKGROUND

Miniature inverted repeat transposable elements (MITEs) are a dynamic component responsible for genome evolution. Tourist MITEs are derived from and mobilized by elements from the harbinger superfamily.

OBJECTIVE

In this study, a novel family of Tourist-like MITE was characterized in wild soybean species Glycine falcata. The new GftoMITE1 was initially discovered as an insertional polymorphism of the centromere-specific histone H3 (CenH3) gene in G. falcata.

METHODS

Using polymerase chain reaction, cloning and sequencing approaches, we showed a high number of copies of the GftoMITE1 family. Extensive bioinformatic analyses revealed the genome-level distribution and locus-specific mapping of GftoMITE1 members in Glycine species.

RESULTS

Our results provide the first extensive characterization of the GftoMITE1 family and contribute to the understanding of the evolution of MITEs in the Glycine genus. Genome-specific GftoMITE1 was prominent in perennial wild soybean species, but not in annual cultivated soybean (Glycine max) or its progenitor (Glycine soja).

CONCLUSIONS

We discuss that the GftoMITE1 family reveals a single rapid amplification in G. falcata and could have potential implications for gene regulation and soybean breeding as an efficient genetic marker for germplasm utilization in the future.

摘要

背景

微型反向重复转座元件(MITEs)是负责基因组进化的动态组成部分。旅行者 MITEs 源自并由先驱超家族的元件移动。

目的

本研究在野生大豆 Glycine falcata 中表征了一种新型旅行者样 MITE 家族。新的 GftoMITE1 最初是作为 G. falcata 着丝粒特异性组蛋白 H3(CenH3)基因的插入多态性而发现的。

方法

通过聚合酶链反应、克隆和测序方法,我们展示了 GftoMITE1 家族的大量副本。广泛的生物信息学分析揭示了 Glycine 物种中 GftoMITE1 成员的基因组水平分布和位点特异性映射。

结果

我们的结果首次对 GftoMITE1 家族进行了广泛的表征,并有助于了解 MITE 在大豆属中的进化。在多年生野生大豆物种中,基因组特异性 GftoMITE1 很突出,但在一年生栽培大豆(Glycine max)或其祖先是不存在的。

结论

我们讨论了 GftoMITE1 家族揭示了 G. falcata 中的单一快速扩增,并且作为未来种质利用的有效遗传标记,可能对基因调控和大豆育种具有潜在意义。

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