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芽枝霉属真菌艾美球囊霉萌发过程中的全基因组表达分析

Global gene expression analysis during germination in the chytridiomycete Blastocladiella emersonii.

作者信息

Salem-Izacc Silvia M, Koide Tie, Vêncio Ricardo Z N, Gomes Suely L

机构信息

Departamento de Bioquímica, Instituto de Química, Universidade de São Paulo, Av. Prof. Lineu Prestes 748, 05508-000, São Paulo, SP, Brazil.

出版信息

Eukaryot Cell. 2009 Feb;8(2):170-80. doi: 10.1128/EC.00330-08. Epub 2008 Dec 19.

Abstract

Blastocladiella emersonii is an aquatic fungus of the Chytridiomycete class. During germination, the zoospore, a motile nongrowing cell, goes through a cascade of morphological changes that culminates with its differentiation into the germling cell, capable of coenocytic vegetative growth. Transcriptome analyses of B. emersonii cells were carried out during germination induced under various environmental conditions. Microarray data analyzing 3,563 distinct B. emersonii genes revealed that 26% of them are differentially expressed during germination in nutrient medium at at least one of the time points investigated. Over 500 genes are upregulated during the time course of germination under those conditions, most being related to cell growth, including genes involved in protein biosynthesis, DNA transcription, energetic metabolism, carbohydrate and oligopeptide transport, and cell cycle control. On the other hand, several transcripts stored in the zoospores are downregulated during germination in nutrient medium, such as genes involved in signal transduction, amino acid transport, and chromosome organization. In addition, germination induced in the presence of nutrients was compared with that triggered either by adenine or potassium ions in inorganic salt solution. Several genes involved in cell growth, induced during germination in nutrient medium, do not show increased expression when B. emersonii zoospores germinate in inorganic solution, suggesting that nutrients exert a positive effect on gene transcription. The transcriptome data also revealed that most genes involved in cell signaling show the same expression pattern irrespective of the initial germination stimulus.

摘要

艾美球囊霉是一种壶菌纲的水生真菌。在萌发过程中,游动孢子,即一种不生长的运动细胞,会经历一系列形态变化,最终分化为能够进行多核体营养生长的幼芽细胞。在各种环境条件诱导的萌发过程中,对艾美球囊霉细胞进行了转录组分析。对3563个不同的艾美球囊霉基因进行微阵列数据分析发现,其中26%的基因在营养培养基中萌发的至少一个时间点上差异表达。在这些条件下,超过500个基因在萌发过程中上调,大多数与细胞生长相关,包括参与蛋白质生物合成、DNA转录、能量代谢、碳水化合物和寡肽运输以及细胞周期控制的基因。另一方面,一些储存在游动孢子中的转录本在营养培养基中萌发时下调,例如参与信号转导、氨基酸运输和染色体组织的基因。此外,将在营养物质存在下诱导的萌发与在无机盐溶液中由腺嘌呤或钾离子触发的萌发进行了比较。在营养培养基中萌发时诱导的几个参与细胞生长的基因,当艾美球囊霉游动孢子在无机溶液中萌发时,其表达并未增加,这表明营养物质对基因转录有积极影响。转录组数据还显示,无论初始萌发刺激如何,大多数参与细胞信号传导的基因都表现出相同的表达模式。

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