首页> 外文期刊>BMC Genomics >Characterization of the watercress ( Nasturtium officinale R. Br.; Brassicaceae) transcriptome using RNASeq and identification of candidate genes for important phytonutrient traits linked to human health
【24h】

Characterization of the watercress ( Nasturtium officinale R. Br.; Brassicaceae) transcriptome using RNASeq and identification of candidate genes for important phytonutrient traits linked to human health

机译:使用RNASeq表征豆瓣转录组(金莲花(Nasturtium officinale R.Br .;十字花科))并鉴定与人类健康相关的重要植物营养素性状的候选基因

获取原文
           

摘要

Background Consuming watercress is thought to provide health benefits as a consequence of its phytonutrient composition. However, for watercress there are currently limited genetic resources underpinning breeding efforts for either yield or phytonutritional traits. In this paper, we use RNASeq data from twelve watercress accessions to characterize the transcriptome, perform candidate gene mining and conduct differential expression analysis for two key phytonutritional traits: antioxidant (AO) capacity and glucosinolate (GLS) content. Results The watercress transcriptome was assembled to 80,800 transcripts (48,732 unigenes); 71?% of which were annotated based on orthology to Arabidopsis . Differential expression analysis comparing watercress accessions with ‘high’ and ‘low’ AO and GLS resulted in 145 and 94 differentially expressed loci for AO capacity and GLS respectively. Differentially expressed loci between high and low AO watercress were significantly enriched for genes involved in plant defence and response to stimuli, in line with the observation that AO are involved in plant stress-response. Differential expression between the high and low GLS watercress identified links to GLS regulation and also novel transcripts warranting further investigation. Additionally, we successfully identified watercress orthologs for Arabidopsis phenylpropanoid, GLS and shikimate biosynthesis pathway genes, and compiled a catalogue of polymorphic markers for future applications. Conclusions Our work describes the first transcriptome of watercress and establishes the foundation for further molecular study by providing valuable resources, including sequence data, annotated transcripts, candidate genes and markers.
机译:背景技术认为豆瓣菜由于其植物营养成分而对健康有益。然而,对于豆瓣菜,目前仅有有限的遗传资源支持了产量或植物营养性状的育种工作。在本文中,我们使用来自十二个西洋豆种的RNASeq数据来表征转录组,进行候选基因挖掘并针对两个主要植物营养特征进行差异表达分析:抗氧化剂(AO)含量和芥子油苷(GLS)含量。结果豆瓣转录组被组装成80,800个转录本(48,732个单基因)。其中有71%是根据拟南芥的正字法注释的。差异表达分析比较了西洋菜品种与“高”和“低”的AO和GLS,分别得到了145个和94个AO和GLS差异表达基因座。与AO参与植物胁迫反应的观察结果一致,高和低AO豆瓣之间差异表达的基因座显着富集了与植物防御和对刺激的反应有关的基因。高和低GLS西洋菜之间的差异表达确定了与GLS调控的联系,还有需要进一步研究的新颖转录本。此外,我们成功鉴定了拟南芥苯基丙烷,GLS和sh草酸酯生物合成途径基因的豆瓣直向同源物,并编制了多态性标记物目录以备将来应用。结论我们的工作描述了豆瓣的第一个转录组,并通过提供有价值的资源,包括序列数据,带注释的转录本,候选基因和标记,为进一步的分子研究奠定了基础。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号