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使用单分子直接RNA测序方法进行转录组分析以深入了解[具体对象]次生代谢途径中的基因

Transcriptome Profiling Using Single-Molecule Direct RNA Sequencing Approach for In-depth Understanding of Genes in Secondary Metabolism Pathways of .

作者信息

Xu Qingshan, Zhu Junyan, Zhao Shiqi, Hou Yan, Li Fangdong, Tai Yuling, Wan Xiaochun, Wei ChaoLing

机构信息

State Key Laboratory of Tea Plant Biology and Utilization, Anhui Agricultural UniversityHefei, China.

出版信息

Front Plant Sci. 2017 Jul 11;8:1205. doi: 10.3389/fpls.2017.01205. eCollection 2017.

Abstract

Characteristic secondary metabolites, including flavonoids, theanine and caffeine, are important components of , and their biosynthesis has attracted widespread interest. Previous studies on the biosynthesis of these major secondary metabolites using next-generation sequencing technologies limited the accurately prediction of full-length (FL) splice isoforms. Herein, we applied single-molecule sequencing to pooled tea plant tissues, to provide a more complete transcriptome of . Moreover, we identified 94 FL transcripts and four alternative splicing events for enzyme-coding genes involved in the biosynthesis of flavonoids, theanine and caffeine. According to the comparison between long-read isoforms and assemble transcripts, we improved the quality and accuracy of genes sequenced by short-read next-generation sequencing technology. The resulting FL transcripts, together with the improved assembled transcripts and identified alternative splicing events, enhance our understanding of genes involved in the biosynthesis of characteristic secondary metabolites in .

摘要

包括黄酮类化合物、茶氨酸和咖啡因在内的特征性次生代谢产物是茶叶的重要组成部分,其生物合成引起了广泛关注。此前利用下一代测序技术对这些主要次生代谢产物生物合成的研究限制了对全长(FL)剪接异构体的准确预测。在此,我们将单分子测序应用于混合的茶树组织,以提供更完整的茶叶转录组。此外,我们鉴定了94个FL转录本以及参与黄酮类化合物、茶氨酸和咖啡因生物合成的酶编码基因的四个可变剪接事件。根据长读长异构体与组装转录本之间的比较,我们提高了通过短读长下一代测序技术测序的基因的质量和准确性。所得的FL转录本,连同改进的组装转录本和鉴定出的可变剪接事件,增强了我们对茶叶中特征性次生代谢产物生物合成相关基因的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e0d/5504172/e21df854a7ad/fpls-08-01205-g001.jpg

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