Suppr超能文献

兰花数据库6.0:增加兰科植物基因组数量及用于兰花基因组分析的新生物信息学工具

OrchidBase 6.0: increasing the number of Cymbidium (Orchidaceae) genomes and new bioinformatic tools for orchid genome analysis.

作者信息

Chen You-Yi, Sun Ye, Li Chung-I, Lin Shao-Ting, Zheng Hao-Chen, Zhang Zhe-Bin, Lee Bing-Ru, Hsieh Chun-Lin, Hsiao Yu-Yun, Chow Chi-Nga, Yang Chien-Wen, Chang Wen-Chi, Chen Heming, Yang Feng-Xi, Zhu Gen-Fa, Zheng Qinyao, Zhou Cheng-Yuan, Zhao Zhuang, Ai Ye, Wang Lin-Ying, Chen Deqiang, He Xin, Huang Ming-Zhong, Peng Dong-Hui, Yu Hao, Lan Siren, Liu Zhong-Jian, Wu Wei-Sheng, Tsai Wen-Chieh

机构信息

Department of Agronomy, National Chiayi University, Chaiyi, 600, Taiwan.

Jiangsu Lixiahe District Institute of Agricultural Sciences, Yangzhou, 225007, China.

出版信息

BMC Plant Biol. 2025 Jan 2;25(1):1. doi: 10.1186/s12870-024-06024-1.

Abstract

BACKGROUND

Orchids are well-known for their rich diversity of species as well as wide range habitats. Their floral structures are so unique in angiosperms that many of orchids are economically and culturally important in human society. Orchids pollination strategy and evolutionary trajectory are also fantastic human for centuries. Previously, OrchidBase was created not only for storage and management of orchid genomic and transcriptomic information including Apostasia shenzhenica, Dendrobium catenatum, Phalaenopsis equestris, and two species of Platanthera that belong to three different subfamilies of Orchidaceae, but explored orchid genetic sequences for their function. The OrchidBase offers an opportunity for the plant science community to compare orchid genomes and transcriptomes, and retrieve orchid sequences for further study.

DESCRIPTION

Recently, three whole-genome sequences of the Epidendroideae species, Cymbidium sinense, C. ensifolium and C. goeringii, were sequenced de novo, assembled, and analyzed. In addition, the systemic transcriptomes of these three species have been established. We included these datasets to develop a new version of OrchidBase 6.0. Furthermore, four new analytical methods, namely regulation, updated transcriptome, advanced BLAST, and domain search, were developed for orchid genome analyses.

CONCLUSION

OrchidBase 6.0 extended genetic information to that of eight orchid species and created new tools for an expanded community curation in response to the ever-increasing volume and complexity of data.

摘要

背景

兰花以其丰富的物种多样性和广泛的栖息地而闻名。它们的花结构在被子植物中非常独特,以至于许多兰花在人类社会中具有重要的经济和文化价值。几个世纪以来,兰花的授粉策略和进化轨迹也一直是人类着迷的对象。此前创建的兰花数据库(OrchidBase)不仅用于存储和管理兰花的基因组和转录组信息,包括深圳拟兰、铁皮石斛、蝴蝶兰以及隶属于兰科三个不同亚科的两种舌唇兰,还对兰花基因序列的功能进行了探索。兰花数据库为植物科学界提供了一个比较兰花基因组和转录组以及检索兰花序列以供进一步研究的机会。

描述

最近,对附生兰亚族的建兰、春兰和蕙兰三个物种的全基因组序列进行了从头测序、组装和分析。此外,还建立了这三个物种的系统转录组。我们将这些数据集纳入以开发新版本的兰花数据库6.0。此外,还开发了四种新的分析方法,即调控分析、更新转录组分析、高级BLAST和结构域搜索,用于兰花基因组分析。

结论

兰花数据库6.0将遗传信息扩展到了八个兰花物种,并针对不断增长的数据量和复杂性为扩大的社区管理创建了新工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b93/11697506/bb448a412215/12870_2024_6024_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验