首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Comparative Transcriptome Analysis Combining SMRT- and Illumina-Based RNA-Seq Identifies Potential Candidate Genes Involved in Betalain Biosynthesis in Pitaya Fruit
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Comparative Transcriptome Analysis Combining SMRT- and Illumina-Based RNA-Seq Identifies Potential Candidate Genes Involved in Betalain Biosynthesis in Pitaya Fruit

机译:结合SMRT和基于Illumina的RNA-Seq的比较转录组分析确定了火龙果中甜菜碱生物合成的潜在候选基因。

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摘要

To gain more valuable genomic information about betalain biosynthesis, the full-length transcriptome of pitaya pulp from ‘Zihonglong’ (red pulp) and ‘Jinghonglong’ (white pulp) in four fruit developmental stages was analyzed using Single-Molecule Real-Time (SMRT) sequencing corrected by Illumina RNA-sequence (Illumina RNA-Seq). A total of 65,317 and 91,638 genes were identified in ‘Zihonglong’ and ‘Jinghonglong’, respectively. A total of 11,377 and 15,551 genes with more than two isoforms were investigated from ‘Zihonglong’ and ‘Jinghonglong’, respectively. In total, 156,955 genes were acquired after elimination of redundancy, of which, 120,604 genes (79.63%) were annotated, and 30,875 (20.37%) sequences without hits to reference database were probably novel genes in pitaya. A total of 31,169 and 53,024 simple sequence repeats (SSRs) were uncovered from the genes of ‘Zihonglong’ and ‘Jinghonglong’, and 11,650 long non-coding RNAs (lncRNAs) in ‘Zihonglong’ and 11,113 lncRNAs in ‘Jinghonglong’ were obtained herein. qRT-PCR was conducted on ten candidate genes, the expression level of six novel genes were consistent with the Fragments Per Kilobase of transcript per Million mapped reads (FPKM) values. In conclusion, we firstly undertook SMRT sequencing of the full-length transcriptome of pitaya, and the valuable resource that was acquired through this sequencing facilitated the identification of additional betalain-related genes. Notably, a list of novel putative genes related to the synthesis of betalain in pitaya fruits was assembled. This may provide new insights into betalain synthesis in pitaya.
机译:为了获得有关甜菜碱生物合成的更有价值的基因组信息,使用单分子实时(SMRT)技术分析了“子红龙”(红果肉)和“金红龙”(白果肉)在四个果实发育阶段中的火龙果果肉的全长转录组。 )通过Illumina RNA序列(Illumina RNA-Seq)校正的测序。在“紫红龙”和“京红龙”中分别鉴定出65,317和91,638个基因。分别对“子红龙”和“景红龙”中的11,377和15,551个具有两个以上同工型的基因进行了研究。消除冗余后,共获得156,955个基因,其中注释了120,604个基因(占79.63%),而未见参考数据库的30,875个(20.37%)序列可能是火龙果中的新基因。从“紫红龙”和“京红龙”的基因中总共发现了31,169和53,024个简单序列重复序列(SSR),并在“紫红龙”中获得了11,650个长的非编码RNA(lncRNA),在“京红龙”中获得了11,113个lncRNA。 。在十个候选基因上进行了qRT-PCR,六个新基因的表达水平与每百万个图谱读值(FPKM)的转录每千碱基片段一致。总之,我们首先对火龙果的全长转录组进行了SMRT测序,通过该测序获得的宝贵资源有助于鉴定其他甜菜碱相关基因。值得注意的是,组装了一系列与火龙果中甜菜碱合成有关的新推定基因。这可能为火龙果中甜菜碱合成提供新的见解。

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