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Comparative transcriptome sequencing and de novo analysis of Vaccinium corymbosum during fruit and color development

机译:越橘果实和颜色发育过程中的转录组测序和从头分析

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Background Blueberry is an economically important fruit crop in Ericaceae family. The substantial quantities of flavonoids in blueberry have been implicated in a broad range of health benefits. However, the information regarding fruit development and flavonoid metabolites based on the transcriptome level is still limited. In the present study, the transcriptome and gene expression profiling over berry development, especially during color development were initiated. Results A total of approximately 13.67 Gbp of data were obtained and assembled into 186,962 transcripts and 80,836 unigenes from three stages of blueberry fruit and color development. A large number of simple sequence repeats (SSRs) and candidate genes, which are potentially involved in plant development, metabolic and hormone pathways, were identified. A total of 6429 sequences containing 8796 SSRs were characterized from 15,457 unigenes and 1763 unigenes contained more than one SSR. The expression profiles of key genes involved in anthocyanin biosynthesis were also studied. In addition, a comparison between our dataset and other published results was carried out. Conclusions Our high quality reads produced in this study are an important advancement and provide a new resource for the interpretation of high-throughput data for blueberry species whether regarding sequencing data depth or species extension. The use of this transcriptome data will serve as a valuable public information database for the studies of blueberry genome and would greatly boost the research of fruit and color development, flavonoid metabolisms and regulation and breeding of more healthful blueberries.
机译:背景技术蓝莓是菊苣科中一种重要的经济作物。蓝莓中大量的类黄酮与多种健康益处有关。但是,基于转录组水平的有关果实发育和类黄酮代谢物的信息仍然有限。在本研究中,转录组和基因表达谱在浆果发育过程中,特别是在颜色发育过程中被启动。结果总共获得了大约13.67 Gbp的数据,并将其分为蓝莓果实和显色三个阶段的186,962个转录本和80,836个单基因。鉴定了可能与植物发育,代谢和激素途径有关的大量简单序列重复(SSR)和候选基因。从15457个单基因中鉴定出总共6429个包含8796个SSR的序列,而1763个单基因包含一个以上的SSR。还研究了涉及花色苷生物合成的关键基因的表达谱。此外,我们对数据集和其他已发布的结果进行了比较。结论我们在本研究中获得的高质量读物是一项重要的进步,并为解释蓝莓物种的高通量数据提供了新的资源,无论是关于测序数据深度还是物种扩展。该转录组数据的使用将为蓝莓基因组研究提供有价值的公共信息数据库,并将大大促进水果和颜色开发,类黄酮代谢以及更健康的蓝莓的调控和育种的研究。

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