首页> 美国卫生研究院文献>Scientific Reports >The leaf transcriptome of fennel (Foeniculum vulgare Mill.) enables characterization of the t-anethole pathway and the discovery of microsatellites and single-nucleotide variants
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The leaf transcriptome of fennel (Foeniculum vulgare Mill.) enables characterization of the t-anethole pathway and the discovery of microsatellites and single-nucleotide variants

机译:茴香的叶片转录组(Foeniculum vulgare Mill。)能够表征t-茴香脑途径并发现微卫星和单核苷酸变体

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摘要

Fennel is a plant species of both agronomic and pharmaceutical interest that is characterized by a shortage of genetic and molecular data. Taking advantage of NGS technology, we sequenced and annotated the first fennel leaf transcriptome using material from four different lines and two different bioinformatic approaches: de novo and genome-guided transcriptome assembly. A reference transcriptome for assembly was produced by combining these two approaches. Among the 79,263 transcripts obtained, 47,775 were annotated using BLASTX analysis performed against the NR protein database subset with 11,853 transcripts representing putative full-length CDS. Bioinformatic analyses revealed 1,011 transcripts encoding transcription factors, mainly from the BHLH, MYB-related, C2H2, MYB, and ERF families, and 6,411 EST-SSR regions. Single-nucleotide variants of SNPs and indels were identified among the 8 samples at a frequency of 0.5 and 0.04 variants per Kb, respectively. Finally, the assembled transcripts were screened to identify genes related to the biosynthesis of t-anethole, a compound well-known for its nutraceutical and medical properties. For each of the 11 genes encoding structural enzymes in the t-anethole biosynthetic pathway, we identified at least one transcript showing a significant match. Overall, our work represents a treasure trove of information exploitable both for marker-assisted breeding and for in-depth studies on thousands of genes, including those involved in t-anethole biosynthesis.
机译:茴香是具有农学和制药学意义的植物,其特征在于缺乏遗传和分子数据。利用NGS技术,我们使用来自四种不同品系和两种不同生物信息学方法(从头和基因组指导的转录组组装)的材料对第一个茴香叶转录组进行了测序和注释。通过组合这两种方法产生了用于组装的参考转录组。在对NR蛋白数据库子集进行的BLASTX分析中,获得的79,263个转录物中有47,775个被注释,其中11853个转录物代表了假定的全长CDS。生物信息学分析显示,编码转录因子的1,011个转录本主要来自BHLH,MYB相关,C2H2,MYB和ERF家族,以及6,411个EST-SSR区域。在8个样品中分别以每Kb 0.5和0.04个变体的频率鉴定了SNP和indel的单核苷酸变体。最后,对组装的转录本进行筛选,以鉴定与t-茴香脑的生物合成有关的基因,该化合物以其营养保健和医学特性而闻名。对于t-茴香脑生物合成途径中编码结构酶的11个基因中的每一个,我们鉴定出至少一个显示显着匹配的转录本。总体而言,我们的工作代表了宝贵的信息宝库,可用于标记辅助育种以及对数千种基因(包括涉及t-茴香脑生物合成的基因)进行深入研究。

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