转座子家族的Dfam群落资源、序列模型和基因组注释

IF 4.7 2区 生物学 Q1 GENETICS & HEREDITY Mobile DNA Pub Date : 2020-09-17 DOI:10.21203/rs.3.rs-76062/v1
Jessica M. Storer, R. Hubley, Jeb Rosen, T. Wheeler, A. Smit
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引用次数: 187

摘要

Dfam是一个包含重复DNA家族、序列模型和基因组注释的开放式数据库。Dfam(https://dfam.org)代表了从模式生物中转座元件家族的原理验证集合到广泛物种的群落资源的进化,以及策划和未策划的数据集。此外,自Dfam 3.0以来的发布提供了辅助的一致序列模型、转座元件-蛋白质比对和正式的分类系统,以支持资源中代表的生物体的日益多样性。最新发布的包括EBI贡献的336个物种中的266740个新的从头产生的转座元件家族。这一扩展展示了Dfam的许多新功能的实用性,并为改进从头生成的转座元件数据集提供了长期挑战。
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The Dfam community resource of transposable element families, sequence models, and genome annotations
Dfam is an open access database of repetitive DNA families, sequence models, and genome annotations. The 3.0–3.3 releases of Dfam ( https://dfam.org ) represent an evolution from a proof-of-principle collection of transposable element families in model organisms into a community resource for a broad range of species, and for both curated and uncurated datasets. In addition, releases since Dfam 3.0 provide auxiliary consensus sequence models, transposable element protein alignments, and a formalized classification system to support the growing diversity of organisms represented in the resource. The latest release includes 266,740 new de novo generated transposable element families from 336 species contributed by the EBI. This expansion demonstrates the utility of many of Dfam’s new features and provides insight into the long term challenges ahead for improving de novo generated transposable element datasets.
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来源期刊
Mobile DNA
Mobile DNA GENETICS & HEREDITY-
CiteScore
8.20
自引率
6.10%
发文量
26
审稿时长
11 weeks
期刊介绍: Mobile DNA is an online, peer-reviewed, open access journal that publishes articles providing novel insights into DNA rearrangements in all organisms, ranging from transposition and other types of recombination mechanisms to patterns and processes of mobile element and host genome evolution. In addition, the journal will consider articles on the utility of mobile genetic elements in biotechnological methods and protocols.
期刊最新文献
Analysis of pericentromere composition and structure elucidated the history of the Hieracium alpinum L. genome, revealing waves of transposable elements insertions. International congress on transposable elements (ICTE 2024) in Saint Malo: breaking down transposon waves and their impact. Accelerating de novo SINE annotation in plant and animal genomes. Association of hyperactivated transposon expression with exacerbated immune activation in systemic lupus erythematosus. Widespread HCD-tRNA derived SINEs in bivalves rely on multiple LINE partners and accumulate in genic regions.
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