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Genome-Wide Discovery of Structural Variants Reveals Distinct Variant Dynamics for Two Closely Related Monilinia Species.全基因组结构变异发现揭示了两个密切相关的长喙壳菌物种的不同变异动态。
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引用本文的文献

1
Transposable elements in genomic architecture of Monilinia fungal phytopathogens and TE-driven DMI-resistance adaptation.核盘菌属真菌植物病原体基因组结构中的转座元件及转座元件驱动的对二甲酰亚胺抗性适应
Mob DNA. 2025 Mar 7;16(1):8. doi: 10.1186/s13100-025-00343-2.

全基因组结构变异发现揭示了两个密切相关的长喙壳菌物种的不同变异动态。

Genome-Wide Discovery of Structural Variants Reveals Distinct Variant Dynamics for Two Closely Related Monilinia Species.

机构信息

School of Graduate Studies, MSc Program in Molecular Biology and Genetics, Çanakkale Onsekiz Mart University, Çanakkale, Turkey.

Department of Molecular Biology and Genetics, Faculty of Sciences, Çanakkale Onsekiz Mart University, Çanakkale, Turkey.

出版信息

Genome Biol Evol. 2023 Jun 1;15(6). doi: 10.1093/gbe/evad085.

DOI:10.1093/gbe/evad085
PMID:37217833
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10234401/
Abstract

Structural variants (SVs) are variants with sizes bigger than 50 bp and capable of changing the size, copy number, location, orientation, and sequence content of genomic DNA. Although these variants have been proven to be extensive and involved in many evolutionary processes along the tree of life, there is still insufficient information on many fungal plant pathogens. In this study, the extent of SVs, as well as single-nucleotide polymorphisms (SNPs), has been determined for two prominent species of the Monilinia genus (the causal agents of brown rot disease in pome and stone fruits): Monilinia fructicola and Monilinia laxa for the first time. The genomes of M. fructicola were found to be more variant-rich in contrast to M. laxa based on the reference-based variant calling (with a total number of 266.618 and 190.599 SNPs and 1,540 and 918 SVs, respectively). The extent, as well as distribution of SVs, presented high conservation within the species and high diversity between the species. Investigation of potential functional effects of characterized variants revealed high potential relevance of SVs. Moreover, the detailed characterization of copy number variations (CNVs) for each isolate revealed that around 0.67% of M. fructicola genomes and 2.06% of M. laxa genomes are copy number variables. The variant catalog as well as distinct variant dynamics within and between the species presented in this study opens doors for many further research questions.

摘要

结构变异(SV)是大小大于 50bp 的变体,能够改变基因组 DNA 的大小、拷贝数、位置、方向和序列内容。尽管这些变体已被证明在生命之树的许多进化过程中广泛存在并参与其中,但许多真菌植物病原体的信息仍然不足。在这项研究中,首次确定了两个突出的 Monilinia 属物种(苹果和核果褐腐病的病原体)的 SVs 以及单核苷酸多态性(SNPs)的程度:Monilinia fructicola 和 Monilinia laxa。基于基于参考的变异调用,与 M. laxa 相比,M. fructicola 的基因组变异更丰富(分别有 266618 个和 190599 个 SNPs 和 1540 个和 918 个 SVs)。SV 的程度和分布在物种内表现出高度保守性,在物种间表现出高度多样性。对特征变异潜在功能效应的研究表明,SV 具有很高的相关性。此外,对每个分离株的拷贝数变异(CNV)的详细特征表明,约 0.67%的 M. fructicola 基因组和 2.06%的 M. laxa 基因组的拷贝数是可变的。本研究中呈现的变体目录以及物种内和物种间的不同变体动态为许多进一步的研究问题开辟了道路。