首页> 外文期刊>BMC Plant Biology >Comprehensive transcriptional analysis reveals salt stress-regulated key pathways, hub genes and time-specific responsive gene categories in common bermudagrass (Cynodon dactylon (L.) Pers.) roots
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Comprehensive transcriptional analysis reveals salt stress-regulated key pathways, hub genes and time-specific responsive gene categories in common bermudagrass (Cynodon dactylon (L.) Pers.) roots

机译:综合转录分析揭示了含盐胁迫调节的关键途径,集线基因和时间特异性敏感基因类别(Cynodon Dactelton(L.)Pers。)根

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Despite its good salt-tolerance level, key genes and pathways involved with temporal salt response of common bermudagrass (Cynodon dactylon (L.) Pers.) have not been explored. Therefore, in this study, to understand the underlying regulatory mechanism following the different period of salt exposure, a comprehensive transcriptome analysis of the bermudagrass roots was conducted. The transcripts regulated after 1?h, 6?h, or 24?h of hydroponic exposure to 200?mM NaCl in the roots of bermudagrass were investigated. Dataset series analysis revealed 16 distinct temporal salt-responsive expression profiles. Enrichment analysis identified potentially important salt responsive genes belonging to specific categories, such as hormonal metabolism, secondary metabolism, misc., cell wall, transcription factors and genes encoded a series of transporters. Weighted gene co-expression network analysis (WGCNA) revealed that lavenderblush2 and brown4 modules were significantly positively correlated with the proline content and peroxidase activity and hub genes within these two modules were further determined. Besides, after 1?h of salt treatment, genes belonging to categories such as signalling receptor kinase, transcription factors, tetrapyrrole synthesis and lipid metabolism were immediately and exclusively up-enriched compared to the subsequent time points, which indicated fast-acting and immediate physiological responses. Genes involved in secondary metabolite biosynthesis such as simple phenols, glucosinolates, isoflavones and tocopherol biosynthesis were exclusively up-regulated after 24?h of salt treatment, suggesting a slightly slower reaction of metabolic adjustment. Here, we revealed salt-responsive genes belonging to categories that were commonly or differentially expressed in short-term salt stress, suggesting possible adaptive salt response mechanisms in roots. Also, the distinctive salt-response pathways and potential salt-tolerant hub genes investigated can provide useful future references to explore the molecular mechanisms of bermudagrass.
机译:尽管其良好的耐盐性级别,涉及普通狗牙根的时间响应盐(狗牙根(L.)个人)的关键基因和途径尚未探索。因此,在本研究中,要了解不同时期盐暴露后的潜在调节机制,对百慕大根的综合转录组分析进行了。水耕暴露于200的1 H,6 H,或24?小时后转录调控?毫NaCl的狗牙根的根进行了调查。 DataSet系列分析显示16个不同的颞盐响应表达式谱。富集分析鉴定了属于特定类别的潜在重要的盐响应基因,例如激素代谢,次生代谢,MISC。,细胞壁,转录因子和基因编码了一系列的运输扣。加权基因共同表达网络分析(WGCNA)显示,与脯氨酸含量和过氧化物酶活性和过氧化物酶活性显着呈正相关,并进一步测定该两种模块的枢烷酶活性和熔点基因。此外,在盐处理1℃后,与随后的时间点相比,立即和专门富集,属于诸如信号受体激酶,转录因子,转录因子,四吡咯合成和脂质代谢等类别的基因。回复。涉及次级代谢物生物合成的基因如简单的酚,葡萄糖苷,异黄酮和生育酚生物合成,在24μl盐处理后完全上调,表明代谢调整略微较慢。在这里,我们揭示了属于在短期盐胁迫下通常或差异表达的类别的盐响应基因,表明根部中可能的自适应盐响应机制。此外,研究的独特盐响应途径和潜在的耐盐枢纽基因可以提供有用的未来参考,以探讨百慕大的分子机制。

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