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高通量测序揭示甘蔗中与高温胁迫耐受性相关的基因。

High-throughput sequencing reveals genes associated with high-temperature stress tolerance in sugarcane.

作者信息

Raju Gomathi, Shanmugam Kohila, Kasirajan Lakshmi

机构信息

Division of Crop Production, ICAR-Sugarcane Breeding Institute, Coimbatore, India.

3Department of biotechnology, Jamal Mohamed College, Tirchy, 620020 India.

出版信息

3 Biotech. 2020 May;10(5):198. doi: 10.1007/s13205-020-02170-z. Epub 2020 Apr 10.

Abstract

Sugarcane ( spp.) is a major sugar crop grown in tropical and sub-tropical areas throughout the world which is vulnerable to high temperature stress due to climate change. In this present study, we have generated a transcriptome profile of sugarcane variety Co 99004 exposed to high-temperature stress (47 C). The Illumina Nexseq2500 platform yielded a total of 39.28 and 13.44 million reads, corresponding to 3.9 and 1.3 gigabase pair (Gb) of the processed reads for control and high-temperature-stressed samples, respectively. Initially, the reads were de novo assembled into 118,017 unigenes with an average length of 780 bp. The longest sequence in the assembly was 21 kb. Further, these transcripts were BLASTed against GO, KEGG and COG databases to identify the novel genes/transcripts expressed due to elevated temperature conditions. The different expression analysis showed 1137 transcripts which were up-regulated during heat temperature stress when compared to control conditions. Analysis of relative gene expression showed phytepsin, ferredoxin-dependent glutamate synthase, and stress protein DDR-48 threefold increased expression during heat stress. These findings reveal novel targets for subsequent research on the genomics genetic manipulation and molecular mechanism of elevated stress tolerance in sugarcane.

摘要

甘蔗(甘蔗属)是一种主要的糖料作物,生长在世界各地的热带和亚热带地区,由于气候变化,它易受高温胁迫影响。在本研究中,我们生成了甘蔗品种Co 99004在高温胁迫(47℃)下的转录组图谱。Illumina Nexseq2500平台分别为对照样品和高温胁迫样品产生了总共3928万和1344万条读数,分别对应于3.9吉碱基对(Gb)和1.3吉碱基对的处理后读数。最初,这些读数被从头组装成118017个单基因,平均长度为780bp。组装中最长的序列为21kb。此外,将这些转录本与GO、KEGG和COG数据库进行比对,以鉴定由于温度升高条件而表达的新基因/转录本。差异表达分析显示,与对照条件相比,有1137个转录本在热胁迫期间上调。相对基因表达分析表明,在热胁迫期间,植物蛋白酶、铁氧还蛋白依赖性谷氨酸合酶和应激蛋白DDR-48的表达增加了三倍。这些发现揭示了后续关于甘蔗基因组学、遗传操作和提高胁迫耐受性分子机制研究的新靶点。

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