Zhou Wei, Wang Zhen Guo, Li Yan, Wu Guo Jiang, Li Mo, Deng Zhi Lan, Cui Feng Juan, Xu Qing Quan, Li YiMeng, Zhou Ya Xing
Agricultural College of Inner Mongolia Minzu University, Tongliao, 028000, Inner Mongolia, China.
Tongliao Agriculture and Animal Husbandry Research Institute, Tongliao, 028000, Inner Mongolia, China.
Sci Rep. 2025 Jan 27;15(1):3365. doi: 10.1038/s41598-025-87100-w.
Salinity tolerance in brewing sorghum is a very important trait, especially in areas that are affected by soil salinity. In order to elucidate the mechanism underlying salt tolerance, we conducted a comparative analysis of the transcriptome and metabolome in two distinct sweet sorghum genotypes, namely the salt-tolerant line NY1298 and the salt-sensitive line MY1176, following exposure to salt treatment. Our initial findings indicate the presence of genotype-specific responses in brewing sorghum under salt stress conditions. Notably, there were variations in the expression of genes and metabolites among different genotypes in response to high-salt stress. Specifically, certain transcription factors belonging to the WRKY, MYB, and NAC families were identified as being involved in the response to increased external salinity. WGCNA analysis identified stage-specific gene expression for different salinity gradients in each cultivar, and explored the gene function by KEGG enrichment analysis. Combined analysis of DEGs and DEMs in hormone synthesis found AUX/IAA, SAUR, CRE1, A-ARR, PP2C, SNRK2 genes, and 3-indoleacetic acid and jasmonic acid were evidently differential expression among different salt concentrations. Taken together, our study carried out a comprehensive overview of two genotypes of brewing sorghum gene and metabolite expression differences in response to salt stress, and expanded the understanding of responsive mechanism of brewing sorghum to salt stress.
酿造高粱的耐盐性是一个非常重要的性状,尤其是在受土壤盐渍化影响的地区。为了阐明耐盐性的潜在机制,我们对两种不同的甜高粱基因型,即耐盐系NY1298和盐敏感系MY1176,在盐处理后进行了转录组和代谢组的比较分析。我们的初步研究结果表明,在盐胁迫条件下,酿造高粱存在基因型特异性反应。值得注意的是,不同基因型对高盐胁迫的基因和代谢物表达存在差异。具体而言,某些属于WRKY、MYB和NAC家族的转录因子被确定参与了对外部盐度增加的反应。WGCNA分析确定了每个品种在不同盐度梯度下的阶段特异性基因表达,并通过KEGG富集分析探索了基因功能。激素合成中差异表达基因(DEGs)和差异表达代谢物(DEMs)的联合分析发现,AUX/IAA、SAUR、CRE1、A-ARR、PP2C、SNRK2基因以及3-吲哚乙酸和茉莉酸在不同盐浓度下有明显的差异表达。综上所述,我们的研究全面概述了两种基因型酿造高粱在盐胁迫下基因和代谢物表达的差异,并扩展了对酿造高粱盐胁迫响应机制的理解。