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首页> 外文期刊>BMC Genomics >Transcriptome profiling and validation of gene based single nucleotide polymorphisms (SNPs) in sorghum genotypes with contrasting responses to cold stress
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Transcriptome profiling and validation of gene based single nucleotide polymorphisms (SNPs) in sorghum genotypes with contrasting responses to cold stress

机译:转录组分析和高冷基因型对冷胁迫反应的基于基因的单核苷酸多态性(SNPs)验证

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Sorghum is a versatile cereal crop, with excellent heat and drought tolerance. However, it is susceptible to early-season cold stress (12–15?°C) which limits stand-establishment and seedling growth. To gain further insights on the molecular mechanism of cold tolerance in sorghum we performed transcriptome profiling between known cold sensitive and tolerant sorghum lines using RNA sequencing technology under control and cold stress treatments. Here we report on the identification of differentially expressed genes (DEGs) between contrasting sorghum genotypes, HongkeZi (cold tolerant) and BTx623 (cold sensitive) under cool and control temperatures using RNAseq approach to elucidate the molecular basis of sorghum response to cold stress. Furthermore, we validated bi-allelic variants in the form of single nucleotide polymorphism (SNPs) between the cold susceptible and tolerant lines of sorghum. An analysis of transcriptome profile showed that in response to cold, a total of 1910 DEGs were detected under cold and control temperatures in both genotypes. We identified a subset of genes under cold stress for downstream analysis, including transcription factors that exhibit differential abundance between the sensitive and tolerant genotypes. We identified transcription factors including Dehydration-responsive element-binding factors, C-repeat binding factors, and Ethylene responsive transcription factors as significantly upregulated during cold stress in cold tolerant HKZ. Additionally, specific genes such as plant cytochromes, glutathione s-transferases, and heat shock proteins were found differentially regulated under cold stress between cold tolerant and susceptible genotype of sorghum. A total of 41,603 SNP were identified between the cold sensitive and tolerant genotypes with minimum read of four. Approximately 89?% of the 114 SNP sites selected for evaluation were validated using endpoint genotyping technology. A new strategy which involved an integrated analysis of differential gene expression and identification of bi-allelic single nucleotide polymorphism (SNP) was conducted to determine and analyze differentially expressed genes and variation involved in cold stress response of sorghum. The results gathered provide an insight into the complex mechanisms associated with cold response in sorghum, which involve an array of transcription factors and genes which were previously related to abiotic stress response. This study also offers resource for gene based SNP that can be applied towards targeted genomic studies of cold tolerance in sorghum and other cereal crops.
机译:高粱是一种多用途谷物作物,具有出色的耐热和耐旱性。但是,它容易受到季节初期冷胁迫(12-15°C)的限制,限制了林分建立和幼苗生长。为了进一步了解高粱中耐冷性的分子机制,我们在控制和冷胁迫处理下使用RNA测序技术在已知的冷敏和耐性高粱品系之间进行了转录组分析。在这里我们报道了在凉爽和控制温度下使用RNAseq方法阐明高粱对冷胁迫的响应的分子基础,对比了高粱基因型,耐冷性和BTx623(冷敏感)之间的差异表达基因(DEG)。此外,我们验证了在高感冒和耐寒品系之间单核苷酸多态性(SNP)形式的双等位基因变体。转录组图谱分析表明,响应冷,两种基因型在冷和控制温度下共检测到1910个DEG。我们鉴定了冷胁迫下的一部分基因用于下游分析,包括在敏感基因型和耐受基因型之间表现出差异丰度的转录因子。我们确定了转录因子,包括脱水反应性元素结合因子,C-重复结合因子和乙烯反应性转录因子,在耐寒HKZ的冷胁迫期间均显着上调。此外,发现特定基因如植物细胞色素,谷胱甘肽S-转移酶和热休克蛋白在高胁迫的耐冷基因型和易感基因型之间的冷胁迫下受到不同的调节。在感冒和耐受基因型之间共鉴定到41,603个SNP,最小读数为4。选择的114个SNP位点中约有89%是使用终点基因分型技术验证的。开展了一项涉及差异基因表达的综合分析和双等位基因单核苷酸多态性(SNP)鉴定的新策略,以确定和分析差异表达的基因和涉及高粱冷应激反应的变异。收集的结果提供了与高粱冷应答相关的复杂机制的见解,其中涉及先前与非生物胁迫应答相关的一系列转录因子和基因。这项研究还为基于基因的SNP提供了资源,可将其用于高粱和其他谷物作物的耐寒性基因组研究。

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