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首页> 外文期刊>GigaScience >RNA-Seq analysis and annotation of a draft blueberry genome assembly identifies candidate genes involved in fruit ripening, biosynthesis of bioactive compounds, and stage-specific alternative splicing
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RNA-Seq analysis and annotation of a draft blueberry genome assembly identifies candidate genes involved in fruit ripening, biosynthesis of bioactive compounds, and stage-specific alternative splicing

机译:蓝莓基因组装配的RNA-Seq分析和注释可识别涉及果实成熟,生物活性化合物的生物合成以及阶段特定的可变剪接的候选基因

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Background Blueberries are a rich source of antioxidants and other beneficial compounds that can protect against disease. Identifying genes involved in synthesis of bioactive compounds could enable the breeding of berry varieties with enhanced health benefits. Results Toward this end, we annotated a previously sequenced draft blueberry genome assembly using RNA-Seq data from five stages of berry fruit development and ripening. Genome-guided assembly of RNA-Seq read alignments combined with output from ab initio gene finders produced around 60,000 gene models, of which more than half were similar to proteins from other species, typically the grape Vitis vinifera. Comparison of gene models to the PlantCyc database of metabolic pathway enzymes identified candidate genes involved in synthesis of bioactive compounds, including bixin, an apocarotenoid with potential disease-fighting properties, and defense-related cyanogenic glycosides, which are toxic. Cyanogenic glycoside (CG) biosynthetic enzymes were highly expressed in green fruit, and a candidate CG detoxification enzyme was up-regulated during fruit ripening. Candidate genes for ethylene, anthocyanin, and 400 other biosynthetic pathways were also identified. Homology-based annotation using Blast2GO and InterPro assigned Gene Ontology terms to around 15,000 genes. RNA-Seq expression profiling showed that blueberry growth, maturation, and ripening involve dynamic gene expression changes, including coordinated up- and down-regulation of metabolic pathway enzymes and transcriptional regulators. Analysis of RNA-seq alignments identified developmentally regulated alternative splicing, promoter use, and 3′ end formation. Conclusions We report genome sequence, gene models, functional annotations, and RNA-Seq expression data that provide an important new resource enabling high throughput studies in blueberry.
机译:背景技术蓝莓是抗氧化剂和其他可以预防疾病的有益化合物的丰富来源。鉴定涉及生物活性化合物合成的基因可以使浆果品种的育种具有增强的健康益处。结果为此,我们使用来自浆果果实发育和成熟五个阶段的RNA-Seq数据注释了先前测序的蓝莓基因组组装草图。 RNA-Seq读取比对的基因组引导组装与从头算基因发现者的输出相结合,产生了约60,000个基因模型,其中一半以上与其他物种(通常是葡萄)的蛋白质相似。将基因模型与代谢途径酶的PlantCyc数据库进行比较后,确定了与生物活性化合物合成有关的候选基因,其中包括比辛(一种具有潜在抗病特性的类胡萝卜素)和与防御有关的氰基有毒苷,它们具有毒性。氰化物苷(CG)生物合成酶在绿色水果中高度表达,并且候选CG排毒酶在水果成熟过程中上调。还确定了乙烯,花色苷和400种其他生物合成途径的候选基因。使用Blast2GO和InterPro的基于同源性的注释将Gene Ontology术语分配给了大约15,000个基因。 RNA-Seq表达图谱显示蓝莓的生长,成熟和成熟涉及动态基因表达变化,包括代谢途径酶和转录调节因子的协同上调和下调。 RNA-seq比对分析确定了发育调控的可变剪接,启动子使用和3'末端形成。结论我们报告了基因组序列,基因模型,功能注释和RNA-Seq表达数据,这些数据提供了重要的新资源,可用于蓝莓的高通量研究。

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