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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >De novo transcriptome assembly and co-expression network analysis of Cynanchum thesioides: Identification of genes involved in resistance to drought stress
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De novo transcriptome assembly and co-expression network analysis of Cynanchum thesioides: Identification of genes involved in resistance to drought stress

机译:Cynanchum Cynanchum Thesioides的De Novo转录组组装和共表达网络分析:鉴定参与抗旱胁迫的基因

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Cynanchum thesioides are upright, xerophytic shrubs that are widely distributed in arid and semi-arid areas of China, North Korea, Mongolia and Siberia. To date, little is known about the molecular mechanisms of drought resistance in C. thesioides. To better understand drought resistance, we used transcriptome analysis and Illumina sequencing technology on C. thesioides, to identify drought-responsive genes. Using de novo assembly 55,268 unigenes were identified from 207.58 Gb of clean data. Amongst these, 36,265 were annotated with gene descriptions, conserved domains, gene ontology terms and metabolic pathways. The sequencing results showed that genes that were differentially expressed (DEGs) under drought stress were enriched in pathways such as carbon metabolism, starch and sucrose metabolism, amino acid biosynthesis, phenylpropanoid biosynthesis and plant hormone signal transduction. Moreover, many functional genes were up-regulated under severe drought stress to enhance tolerance. Weighted gene co-expression network analysis showed that there were key hub genes related to drought stress. Hundreds of candidate genes were identified under severe drought stress, including transcriptional factors such as MYB, G2-like, ERF, C2H2, NAC, NF-X1, GRF, HD-ZIP, HB-other, HSF, C3H, GRAS, WRKY, bHLH and Trihelix. These data are a valuable resource for further investigation into the molecular mechanism for drought stress in C. thesioides and will facilitate exploration of drought resistance genes.
机译:Cynanchum Thesioides是直立的,杂草灌木,广泛分布在中国,朝鲜,蒙古和西伯利亚的干旱和半干旱地区。迄今为止,关于C. TheSioides的抗旱的分子机制很少。为了更好地了解抗旱性,我们使用转录组分析和illumina测序技术对C. thesioides,以鉴定干旱响应基因。使用De Novo组件55,268 unigenes从207.58 GB的清洁数据中确定。其中,36,265名用基因描述,保守的结构域,基因本体论术语和代谢途径注释。测序结果表明,在干旱胁迫下在干旱胁迫下进行差异表达(可表达)的基因,例如碳代谢,淀粉和蔗糖代谢,氨基酸生物合成,苯基丙醇生物合成和植物激素信号转导。此外,许多官能基因在严重的干旱胁迫下上调,以增强耐受性。加权基因共表达网络分析表明,有与干旱胁迫有关的关键轮毂基因。在严重的干旱胁迫下鉴定了数百种候选基因,包括转录因子,如MYB,G2样,ERF,C2H2,NAC,NF-X1,GRF,HD-ZIP,HB-其他,HSF,C3H,GRAS,WRKY, bhlh和trihelix。这些数据是一种有价值的资源,用于进一步调查C. TheSioDE中的干旱胁迫的分子机制,并促进抗旱基因的探索。

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