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Differential Regulation of Orthologous Chitinase Genes in Mycoparasitic Trichoderma Species

机译:支原体木霉属物种中直系几丁质酶基因的差异调节。

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Mycoparasitic Trichoderma species have expanded numbers of fungal subgroup C chitinases that contain multiple carbohydrate binding modules and could thus be important for fungal cell wall degradation during the mycoparasitic attack. In this study, we analyzed the gene regulation of subgroup C chitinases in the mycoparasite Trichoderma virens. In addition to regulation by nutritional stimuli, we found complex expression patterns in different parts of the fungal colony, and also, the mode of cultivation strongly influenced subgroup C chitinase transcript levels. Thus, the regulation of these genes is governed by a combination of colony-internal and -external signals. Our results showed completely different expression profiles of subgroup C chitinase genes in T. virens than in a previous study with T. atroviride, although both fungi are potent mycoparasites. Only a few subgroup C chitinase orthologues were found in T. atroviride and T. virens, and even those showed substantially divergent gene expression patterns. Microscopic analysis revealed morphogenetic differences between T. atroviride and T. virens, which could be connected to differential subgroup C chitinase gene expression. The biological function of fungal subgroup C chitinases therefore might not be as clear-cut as previously anticipated. They could have pleiotropic roles and might be involved in both degradation of exogenous chitinous carbon sources, including other fungal cell walls, and recycling of their own cell walls during hyphal development and colony formation.
机译:真菌寄生木霉菌属种类已扩大了包含多个碳水化合物结合模块的真菌C亚基几丁质酶的数量,因此对于真菌寄生虫发作期间真菌细胞壁的降解可能很重要。在这项研究中,我们分析了真菌寄生木霉菌中C亚基几丁质酶的基因调控。除了通过营养刺激进行调节外,我们还在真菌菌落的不同部位发现了复杂的表达模式,而且,培养方式也强烈影响了C组几丁质酶转录水平。因此,这些基因的调节受集落内部和外部信号的组合控制。我们的研究结果表明,与以前的阿托维韦研究相比,尽管在这两种真菌中都存在强力的真菌寄生虫,但是在C.几丁质酶亚组C几丁质酶基因的表达谱与以前的Atroviride研究完全不同。在A.trotroide和T.virens中仅发现了几亚类C几丁质酶直向同源物,甚至那些也显示出基本不同的基因表达模式。显微镜分析揭示了阿特罗韦德氏菌和毒梭菌之间的形态发生差异,这可能与C亚基几丁质酶基因表达差异有关。因此,真菌C亚基几丁质酶的生物学功能可能不像以前预期的那么清晰。它们可能具有多效作用,并且可能参与外源几丁质碳源(包括其他真菌细胞壁)的降解,以及在菌丝发育和菌落形成过程中自身细胞壁的再循环。

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