Changes in Cytochrome b Gene Expression in Cochliobolus sativus Induced by Triadimefon, a Triazole Fungicide

Q3 Biochemistry, Genetics and Molecular Biology Journal of Applied Biotechnology Reports Pub Date : 2020-12-01 DOI:10.30491/JABR.2020.230682.1223
M. Arabi, H. Alek, E. Al-shehadah, M. Jawhar
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Abstract

Introduction: Spot blotch, caused by Cochliobolus sativus, is most effectively managed using fungicide applications, including triadimefon (TDM) a triazole compound. C. sativus posses a great concern as it might develop resistance against fungicides like TDM due to its high genetic variability, short life cycle, and abundant inoculum production. Therefore, to better understand the mechanisms of TDM resistance initiated by C. sativus, changes in cytochrome b (cytb) gene in virulent and avirulent pathotypes were evaluated at early time points of TDM treatments. Materials and Methods: C. sativus sensitivity to TDM was determined by measuring the radial growth of each pathotype on PDA plates. Additionally, RNA was isolated from mycelia of each pathotype at 24, 48, 72 and 96 hours post fungicide treatments and used for cDNA synthesis. Cytb was verified using quantitative reverse transcriptase PCR (qRT-PCR). Results: Data showed that the maximum mycelial growth inhibition by 50% (EC50) for both pathotypes was recorded 48h at 0.25 µg/ml TDM treatment. The qRT-PCR revealed that cytb expression increased in both virulent and avirulent pathotypes at 24h post TDM treatments in comparison with non-treated controls. The most outstanding differences in cytb expression were7.69 and 2.88-fold in the virulent and avirulent pathotypes, respectively, 48h of 0.25 µg/ml TDM treatment. Conclusions: According to findings, it is possible to propose that cytb gene might play a role in signaling events during C. sativus exposure to commercial triazole fungicide.
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三唑类杀菌剂三唑酮诱导大白菜细胞色素b基因表达的变化
简介:由胭脂虫引起的斑点病最有效的治疗方法是使用杀菌剂,包括三唑化合物三唑酮(TDM)。C.sativus由于其遗传变异性高、生命周期短和接种量丰富,可能对TDM等杀菌剂产生耐药性,因此备受关注。因此,为了更好地了解C.sativus引发TDM抗性的机制,在TDM处理的早期时间点评估了细胞色素b(cytb)基因在毒力和无毒性病理类型中的变化。材料和方法:通过在PDA平板上测量每种病理类型的径向生长来测定C.sativus对TDM的敏感性。此外,在杀菌剂处理后24、48、72和96小时,从每种病理类型的菌丝体中分离RNA,并用于cDNA合成。使用定量逆转录聚合酶链式反应(qRT-PCR)验证Cytb。结果:数据显示,在0.25µg/ml TDM处理48小时后,两种病理类型的菌丝生长抑制率均达到50%(EC50)。qRT-PCR显示,与未处理的对照组相比,在TDM处理后24小时,cytb在强毒和弱毒病理类型中的表达均增加。在0.25µg/ml TDM处理48小时后,毒性和无毒性病理类型中,cytb表达的最显著差异分别为7.69倍和2.88倍。结论:根据研究结果,cytb基因可能在C.sativus暴露于市售三唑类杀菌剂期间的信号事件中发挥作用。
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来源期刊
Journal of Applied Biotechnology Reports
Journal of Applied Biotechnology Reports Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
1.90
自引率
0.00%
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0
期刊介绍: The Journal of Applied Biotechnology Reports (JABR) publishes papers describing experimental work relating to all fundamental issues of biotechnology including: Cell Biology, Genetics, Microbiology, Immunology, Molecular Biology, Biochemistry, Embryology, Immunogenetics, Cell and Tissue Culture, Molecular Ecology, Genetic Engineering and Biological Engineering, Bioremediation and Biodegradation, Bioinformatics, Biotechnology Regulations, Pharmacogenomics, Gene Therapy, Plant, Animal, Microbial and Environmental Biotechnology, Nanobiotechnology, Medical Biotechnology, Biosafety, Biosecurity, Bioenergy, Biomass, Biomaterials and Biobased Chemicals and Enzymes. Journal of Applied Biotechnology Reports promotes a special emphasis on: -Improvement methods in biotechnology -Optimization process for high production in fermentor systems -Protein and enzyme engineering -Antibody engineering and monoclonal antibody -Molecular farming -Bioremediation -Immobilizing methods -biocatalysis
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