性/耐性真菌:分子,生化和生物技术方面
Maikel Gilberto Fernández-López1, Ramón Alberto Batista-García2, Elva Teresa Aréchiga-Carvajal1
1Unidad de Manipulación Genética, Laboratorio de Micología y Fitopatología, Facultad de Ciencias Biológicas, Universidad Autónoma de Nuevo León, San Nicolás de los Garza 66451, Mexico.
Journal of fungi (Basel, Switzerland)
|June 27, 2023
概括
性真菌通过PacC转录因子和Pal/Rim通路抵抗性pH. 了解这些机制是工业应用和生物修复的关键.
科学领域:
- 微生物学 微生物学
- 生物技术是生物技术.
- 分子生物学分子生物学
背景情况:
- 越来越多的人对极端性微生物感兴趣,特别是性和耐性真菌.
- 性环境广泛存在,无论是自然的还是人为的.
- 像阿斯伯吉卢斯尼杜兰斯和Saccharomyces cerevisiae这样的模型生物中已建立的pH调节通路涉及PacC转录因子和Pal/Rim通路.
研究的目的:
- 探索菌中的pH依赖基因调节和抗性机制.
- 为了研究PacC转录因子和Pal/Rim通路在耐药真菌中的作用.
- 了解细胞内稳态和信号通路,使真菌适应性条件.
主要方法:
- 对真菌pH依赖基因调节的现有文献的综述.
- 对PacC转录因子在Pal/Rim通路中的作用的分析.
- 检查参与PacC激活的蛋白质分解机制.
主要成果:
- 通过蛋白质分解步骤激活的PacC转录因子,在酸性和性条件下不同调节基因.
- PacC 作为酸性表达基因的抑制剂和性表达基因的激活剂.
- 其他尚未描述的机制可能有助于耐药真菌的pH适应.
结论:
- 耐菌具有复杂的机制,在高pH下维持细胞内平衡.
- 该PacC-Pal/Rim通路对于真菌适应性环境至关重要.
- 需要进一步的研究,以充分阐明这些真菌适应策略用于生物技术应用.
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