Institute of Animal Science, Ningxia Academy of Agriculture and Forestry Sciences, Yinchuan, Ningxia, China.
Institute of Horticultural Science, Ningxia Academy of Agriculture and Forestry Sciences, Yinchuan, Ningxia, China.
PeerJ. 2023 May 5;11:e15324. doi: 10.7717/peerj.15324. eCollection 2023.
Soil salinity imposes a major threat to plant growth and agricultural productivity. Despite being one of the most common fodder crops in saline locations, alfalfa is vulnerable to salt stress. Jasmonic acid (JA) is a phytohormone that influences plant response to abiotic stimuli such as salt stress. However, key genes and pathways by which JA-mediated salt tolerance of alfalfa are little known. A comprehensive transcriptome analysis was performed to elucidate the underlying molecular mechanisms of JA-mediated salt tolerance. The transcripts regulated by salt (S) compared to control (C) and JA+salt (JS) compared to C were investigated. Venn diagram and expression pattern of DEGs indicated that JS further altered a series of genes expression regulated by salt treatment, implying the roles of JA in priming salt tolerance. Enrichment analysis revealed that DEGs exclusively regulated by JS treatment belonged to primary or secondary metabolism, respiratory electron transport chain, and oxidative stress resistance. Alternatively, splicing (AS) was induced by salt alone or JA combined treatment, with skipped exon (SE) events predominately. DEGs undergo exon skipping involving some enriched items mentioned above and transcription factors. Finally, the gene expressions were validated using quantitative polymerase chain reaction (qPCR), which produced results that agreed with the sequencing results. Taken together, these findings suggest that JA modulates the expression of genes related to energy supply and antioxidant capacity at both the transcriptional and post-transcriptional levels, possibly through the involvement of transcription factors and AS events.
土壤盐度对植物生长和农业生产力构成重大威胁。尽管紫花苜蓿是盐渍地区最常见的饲料作物之一,但它易受盐胁迫的影响。茉莉酸(JA)是一种植物激素,它影响植物对非生物刺激(如盐胁迫)的反应。然而,JA 介导的紫花苜蓿耐盐性的关键基因和途径知之甚少。进行了全面的转录组分析,以阐明 JA 介导的耐盐性的潜在分子机制。研究了与对照(C)相比受盐(S)调节的转录本和与 C 相比受 JA+盐(JS)调节的转录本。Venn 图和差异表达基因(DEGs)的表达模式表明,JS 进一步改变了一系列受盐处理调节的基因表达,这表明 JA 在引发耐盐性方面的作用。富集分析表明,仅由 JS 处理调节的 DEGs 属于初级或次级代谢、呼吸电子传递链和氧化应激抗性。相反,盐单独或 JA 联合处理诱导剪接(AS),主要是外显子跳过(SE)事件。DEGs 经历外显子跳过,涉及上述一些富集项和转录因子。最后,使用定量聚合酶链反应(qPCR)验证基因表达,结果与测序结果一致。总之,这些发现表明,JA 在转录和转录后水平上调节与能量供应和抗氧化能力相关的基因的表达,可能通过转录因子和 AS 事件的参与。