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水稻基因组注释计划:一个用于挖掘水稻基因组的更新数据库。

The rice genome annotation project: an updated database for mining the rice genome.

作者信息

Hamilton John P, Li Chenxin, Buell C Robin

机构信息

Department of Crop & Soil Sciences, University of Georgia, Athens, GA 30602, USA.

Center for Applied Genetic Technologies, University of Georgia, Athens, GA 30602, USA.

出版信息

Nucleic Acids Res. 2025 Jan 6;53(D1):D1614-D1622. doi: 10.1093/nar/gkae1061.

Abstract

Rice (Oryza sativa L.) is a major cereal crop that provides calories across the world. With a small genome, rice has been used extensively as a model for genetic and genomic studies in the Poaceae. Since the release of the first rice genome sequence in 2002, an improved reference genome assembly, multiple whole genome assemblies, extensive gene expression profiles, and resequencing data from over 3000 rice accessions have been generated. To facilitate access to the rice genome for plant biologists, we updated the Rice Genome Annotation Project database (RGAP; https://rice.uga.edu) with new datasets including 16 whole genome rice assemblies and sequence variants generated from multiple rice pan-genome projects including the 3000 Rice Genomes Project. We updated gene expression abundance data with 80 RNA-sequencing datasets and to facilitate gene function discovery, performed gene coexpression resulting in 39 coexpression modules that capture highly connected sets of co-regulated genes. To facilitate comparative genome analyses, 32 335 syntelogs were identified between the Nipponbare reference genome and other rice genomes and 19 371 syntelogs were identified between Nipponbare and four other Poaceae genomes. Infrastructure improvements to the RGAP database include an upgraded genome browser and data access portals, enhanced website security and increased performance of the website.

摘要

水稻(Oryza sativa L.)是一种重要的谷类作物,为全球提供热量。由于基因组较小,水稻已被广泛用作禾本科遗传和基因组研究的模型。自2002年首次发布水稻基因组序列以来,已产生了改进的参考基因组组装、多个全基因组组装、广泛的基因表达谱以及来自3000多个水稻品种的重测序数据。为了便于植物生物学家获取水稻基因组,我们用新数据集更新了水稻基因组注释项目数据库(RGAP;https://rice.uga.edu),这些新数据集包括16个水稻全基因组组装以及从多个水稻泛基因组项目(包括3000份水稻基因组项目)产生的序列变异。我们用80个RNA测序数据集更新了基因表达丰度数据,为促进基因功能发现,进行了基因共表达分析,得到了39个共表达模块,这些模块捕获了高度关联的共调控基因集。为便于进行比较基因组分析,在日本晴参考基因组与其他水稻基因组之间鉴定出32335个同线基因,在日本晴与其他四个禾本科基因组之间鉴定出19371个同线基因。RGAP数据库的基础设施改进包括升级的基因组浏览器和数据访问门户、增强的网站安全性以及提高的网站性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/876c/11701632/be8c2b4fc392/gkae1061figgra1.jpg

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