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真菌玉米黑粉菌对渗透胁迫和温度的响应。

Response to osmotic stress and temperature of the fungus Ustilago maydis.

机构信息

Departamento de Microbiología, Escuela Nacional de Ciencias Biológicas, IPN, Prolong. de Carpio y Plan de Ayala S/N, 11340, México, D.F., Mexico.

出版信息

Arch Microbiol. 2011 Oct;193(10):701-9. doi: 10.1007/s00203-011-0706-9. Epub 2011 May 7.

Abstract

Ustilago maydis is a fungal pathogen which is exposed during its life cycle to both abiotic and biotic stresses before and after the infection of maize. To cope with extreme environmental changes, microorganisms usually accumulate the disaccharide trehalose. We have investigated both the accumulation of trehalose and the activity of trehalase during the adaptation of U. maydis haploid cells to thermal, sorbitol, and NaCl stresses. Sorbitol and sodium chloride induced sustained accumulation of trehalose, while a transient increase was observed under heat stress. Sorbitol stressed cells showed higher trehalase activity compared with control cells and to those stressed by NaCl and high temperature. Addition of cycloheximide, a protein synthesis inhibitor, did not affect the trehalose accumulation during the first 15 min, but basal levels of trehalose were reached after the second period of 15 min. The proteomic analysis of the response of U. maydis to temperature, sorbitol, and salt stresses indicated a complex pattern which highlights the change of 18 proteins involved in carbohydrate and amino acid metabolism, protein folding, redox regulation, ion homeostasis, and stress response. We hypothesize that trehalose accumulation during sorbitol stress in U. maydis might be related to the adaptation of this organism during plant infection.

摘要

玉米黑粉菌是一种真菌病原体,在感染玉米之前和之后的生命周期中,会暴露于生物和非生物胁迫下。为了应对极端环境变化,微生物通常会积累二糖海藻糖。我们研究了玉米黑粉菌单倍体细胞适应热、山梨醇和 NaCl 胁迫时海藻糖的积累和海藻糖酶的活性。山梨醇和氯化钠诱导海藻糖持续积累,而在热胁迫下观察到短暂增加。与对照细胞和受 NaCl 和高温胁迫的细胞相比,山梨醇胁迫的细胞表现出更高的海藻糖酶活性。添加环己酰亚胺,一种蛋白质合成抑制剂,在最初的 15 分钟内不会影响海藻糖的积累,但在第二个 15 分钟后达到基础水平。玉米黑粉菌对温度、山梨醇和盐胁迫的蛋白质组分析表明,这是一种复杂的模式,突出了与碳水化合物和氨基酸代谢、蛋白质折叠、氧化还原调节、离子稳态和应激反应相关的 18 种蛋白质的变化。我们假设玉米黑粉菌中山梨醇胁迫时海藻糖的积累可能与该生物在植物感染期间的适应有关。

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