Centro de Excelencia en Productos y Procesos de Córdoba (CEPROCOR), Pabellón CEPROCOR (X5164), Santa María de Punilla, Córdoba, Argentina.
Cátedra de Biotecnología, Facultad de Ciencias Químicas, Universidad Católica de Córdoba, Av. Armada Argentina 3555 (X5016DHK), Córdoba, Argentina.
Rev Argent Microbiol. 2024 Apr-Jun;56(2):175-186. doi: 10.1016/j.ram.2023.10.002. Epub 2024 Feb 8.
Peanuts (Arachis hypogaea L.) are among the most important leguminous crops in Argentina. During the growing season, they are frequently attacked by fungal diseases, including Thecaphora frezii. The spores of T. frezii are structures that confer resistance to this phytopathogen. The transition from teliospore to hypha is a characteristic process of some fungi, which is essential for completing their life cycle. Using the transcriptomes of teliospores and hyphae of T. frezii, we aimed to identify genes that were differentially expressed during this transition, and we found 134 up-regulated and 66 down-regulated genes, which would participate in different cellular processes such as: (a) cell cycle and DNA processing; (b) cell fate; (c) rescue, defense and cellular virulence; (d) detoxification by CYP450; (e) energy; (f) nutrient interaction and nutritional adaptation; (g) metabolism; (g) proteins with binding functions or cofactor requirements; (h) stress, cell differentiation and biogenesis of cell components; and (i) transport, cell communication and transcription. The identification of genes in T. frezii and their expression levels during different stages of differentiation could contribute to our understanding of the biological mechanisms in this fungus.
花生(Arachis hypogaea L.)是阿根廷最重要的豆科作物之一。在生长季节,它们经常受到真菌病的攻击,包括 Thecaphora frezii。T. frezii 的孢子是赋予该植物病原菌抗性的结构。从厚垣孢子到菌丝的转变是一些真菌的特征过程,这对于完成其生命周期至关重要。使用 T. frezii 的厚垣孢子和菌丝的转录组,我们旨在鉴定在此转变过程中差异表达的基因,我们发现了 134 个上调和 66 个下调基因,它们将参与不同的细胞过程,例如:(a)细胞周期和 DNA 处理;(b)细胞命运;(c)挽救、防御和细胞毒力;(d)CYP450 解毒;(e)能量;(f)营养相互作用和营养适应;(g)代谢;(g)具有结合功能或辅因子需求的蛋白质;(h)应激、细胞分化和细胞成分的生物发生;和(i)运输、细胞通讯和转录。鉴定 T. frezii 中的基因及其在不同分化阶段的表达水平可能有助于我们理解该真菌中的生物学机制。