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Research paper | Open Access

OGRP: A comprehensive bioinformatics platform for the efficient empowerment of Oleaceae genomics research

Zijian Yua,1Yu Lia,1Tengfei Songa,1Lixia Goua,1Jiaqi WangaYue DingaZejia XiaoaJingyue QinaHui JiangaYan ZhangaYishan FengaXiangming KongaShoutong BaoaShouliang Yina( )Tianyu Leia,b,c( )Jinpeng Wanga( )
Department of Bioinformatics, School of Life Sciences, North China University of Science and Technology, Tangshan, Hebei 063000, China
State Key Laboratory of Plant Diversity and Specialty Crops, Institute of Botany, The Chinese Academy of Sciences, Beijing 100093, China
University of Chinese Academy of Sciences, Beijing 100049, China

1 These authors contributed equally to this work.

Peer review under responsibility of Chinese Society of Horticultural Science (CSHS) and Institute of Vegetables and Flowers (IVF), Chinese Academy of Agricultural Sciences (CAAS).

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Abstract

As a high-value eudicot family, many famous horticultural crop genomes have been deciphered in Oleaceae. However, there are currently no bioinformatics platforms focused on empowering genome research in Oleaceae. Herein, we developed the first comprehensive Oleaceae Genome Research Platform (OGRP, https://oleaceae.cgrpoee.top/). In OGRP, 70 genomes of 10 Oleaceae species and 46 eudicots and 366 transcriptomes involving 18 Oleaceae plant tissues can be obtained. We built 34 window-operated bioinformatics tools, collected 38 professional practical software programs, and proposed 3 new pipelines, namely ancient polyploidization identification, ancestral karyotype reconstruction, and gene family evolution. Employing these pipelines to reanalyze the Oleaceae genomes, we clarified the polyploidization, reconstructed the ancestral karyotypes, and explored the effects of paleogenome evolution on genes with specific biological regulatory roles. Significantly, we generated a series of comparative genomic resources focusing on the Oleaceae, comprising 108 genomic synteny dot plots, 1952225 collinear gene pairs, multiple genome alignments, and imprints of paleochromosome rearrangements. Moreover, in Oleaceae genomes, researchers can efficiently search for 1785987 functional annotations, 22584 orthogroups, 29582 important trait genes from 74 gene families, 12664 transcription factor-related genes, 9178872 transposable elements, and all involved regulatory pathways. In addition, we provided downloads and usage instructions for the tools, a species encyclopedia, ecological resources, relevant literatures, and external database links. In short, ORGP integrates rich data resources and powerful analytical tools with the characteristic of continuous updating, which can efficiently empower genome research and agricultural breeding in Oleaceae and other plants.

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Horticultural Plant Journal
Pages 1308-1325

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Cite this article:
Yu Z, Li Y, Song T, et al. OGRP: A comprehensive bioinformatics platform for the efficient empowerment of Oleaceae genomics research. Horticultural Plant Journal, 2025, 11(3): 1308-1325. https://doi.org/10.1016/j.hpj.2024.09.006

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Received: 26 March 2024
Accepted: 13 October 2024
Published: 11 January 2025
© 2025 Chinese Society for Horticultural Science (CSHS) and Institute of Vegetables and Flowers (IVF), Chinese Academy of Agricultural Sciences (CAAS).

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).