Turgut Büşra Albayrak, Örtücü Serkan, Bezirganoğlu İsmail
Department of Molecular Biology and Genetics, Erzurum Technical University, 25100, Erzurum, Turkey.
Department of Molecular Biology and Genetics, Erzurum Technical University, 25100, Erzurum, Turkey.
Biochem Biophys Res Commun. 2025 Apr 9;757:151617. doi: 10.1016/j.bbrc.2025.151617. Epub 2025 Mar 11.
In recent years, the discovery of new antimicrobial agents has become necessary because of the increase in antibiotic resistance, the development of herbicides and fungicides resistance. Among the antimicrobial agents, antimicrobial peptides (AMPs) stand out due to their stable structure. In this study, the aim was to identify a thermostable AMP from the seeds of M. sativa "Sazova" cultivar and to analyze gene expression during germination. Antimicrobial tests were performed for the seed peptides after heat treatment (85 °C for 10 min), revealing antimicrobial effects against S. aureus, E. coli, and C. albicans. Subsequently, the peptide band corresponding to the inhibition zone was identified as M. sativa Defensin 2.1 (MsDef2.1, MW: 5.2048 kDa). The gene expression analysis of MsDef2.1 in Sazova cultivar showed that the gene was expressed different plant organs, and the expression was decreased over time. As a result of the gene analysis of two cultivars (Sazova and LegenDairy) it was found that there are 5 base differences in the coding sequence and 3 amino acid differences between the sequences of MsDef2.1 isoforms from the LegenDairy and Sazova cultivars. The physiochemical properties, secondary, and tertiary structure of the Sazova Defensin 2.1 were predicted by using bioinformatic tools. Due to the amino acid substitutions in γ-core structures, the antimicrobial activity of the isoforms is expected to differ from each other. These findings demonstrated that the defensin MsDef2.1 can differ in M. sativa cultivars in respect of the gene and amino acid sequences and has a potential for future applications.
近年来,由于抗生素耐药性增加、除草剂和杀菌剂抗性的发展,发现新的抗菌剂变得很有必要。在抗菌剂中,抗菌肽(AMPs)因其稳定的结构而脱颖而出。在本研究中,目的是从紫花苜蓿“Sazova”品种的种子中鉴定一种耐热抗菌肽,并分析其在萌发过程中的基因表达。对热处理(85°C,10分钟)后的种子肽进行了抗菌测试,结果显示其对金黄色葡萄球菌、大肠杆菌和白色念珠菌具有抗菌作用。随后,将与抑菌圈对应的肽带鉴定为紫花苜蓿防御素2.1(MsDef2.1,分子量:5.2048 kDa)。对Sazova品种中MsDef2.1的基因表达分析表明,该基因在不同植物器官中表达,且表达量随时间下降。对两个品种(Sazova和LegenDairy)进行基因分析的结果发现,LegenDairy和Sazova品种的MsDef2.1同工型序列在编码序列上有5个碱基差异,氨基酸序列上有3个氨基酸差异。利用生物信息学工具预测了Sazova防御素2.1的理化性质、二级和三级结构。由于γ-核心结构中的氨基酸替换,预计同工型的抗菌活性会有所不同。这些发现表明,防御素MsDef2.1在紫花苜蓿品种的基因和氨基酸序列方面可能存在差异,具有未来应用的潜力。