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基于 Pacbio 全长转录组测序的盐胁迫下榧属转录组分析。

Transcriptome Analysis of Salt Stress in Sieb. et Zucc Based on Pacbio Full-Length Transcriptome Sequencing.

机构信息

Institute of Botany, Jiangsu Province and Chinese Academy of Sciences, Nanjing 210014, China.

College of Forest Sciences, Nanjing Forestry University, Nanjing 210037, China.

出版信息

Int J Mol Sci. 2021 Dec 23;23(1):138. doi: 10.3390/ijms23010138.

Abstract

Sieb. et Zucc is an important semi-mangrove plant with great morphological features and strong salt resistance. In this study, by combining single molecule real time and next-generation sequencing technologies, we explored the transcriptomic changes in the roots of salt stressed . A total of 94,562 unigenes were obtained by clustering the same isoforms using the PacBio RSII platform, and 2269 differentially expressed genes were obtained under salt stress using the Illumina platform. There were 519 differentially expressed genes co-expressed at each treatment time point under salt stress, and these genes were found to be enriched in ion signal transduction and plant hormone signal transduction. We used (L.) Heynh. transformation to confirm the function of the gene and discovered that overexpression enhanced salt tolerance. The full-length transcripts generated in this study provide a full characterization of the transcriptome of and may be useful in mining new salt stress-related genes specific to this species, while facilitating the understanding of the salt tolerance mechanisms.

摘要

水黄皮是一种重要的半红树林植物,具有显著的形态特征和较强的耐盐性。本研究结合单分子实时测序和新一代测序技术,探索了盐胁迫下水黄皮根系的转录组变化。利用 PacBio RSII 平台对相同的异构体进行聚类,共获得 94562 条 unigenes,利用 Illumina 平台获得 2269 个在盐胁迫下差异表达的基因。在盐胁迫下的每个处理时间点,有 519 个差异表达基因共表达,这些基因富集在离子信号转导和植物激素信号转导途径中。我们利用(L.)Heynh.转化来验证 基因的功能,发现过表达增强了盐耐受性。本研究中生成的全长转录本全面描述了 的转录组,可能有助于挖掘该物种特有的新的盐胁迫相关基因,并促进对其耐盐机制的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82fa/8745204/0bb0df142e84/ijms-23-00138-g001.jpg

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