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首页> 外文期刊>Journal of applied microbiology >Asexual sporulation signalling regulates autolysis of Aspergillus nidulans via modulating the chitinase ChiB production
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Asexual sporulation signalling regulates autolysis of Aspergillus nidulans via modulating the chitinase ChiB production

机译:无性孢子形成信号通过调节几丁质酶ChiB产生来调节构巢曲霉的自溶

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摘要

Elucidation of the regulation of ChiB production in Aspergillus nidulans. Mutational inactivation of the A. nidulans chiB gene resulted in a nonautolytic phenotype. To better understand the mechanisms controlling both developmental progression and fungal autolysis, we examined a range of autolysis-associated parameters in A. nidulans developmental and/or autolytic mutants. Investigation of disorganization of mycelial pellets, loss of biomass, extra-/intracellular chitinase activities, ChiB production and chiB mRNA levels in various cultures revealed that, in submerged cultures, initialization of autolysis and stationary phase-induced ChiB production are intimately coupled, and that both processes are controlled by the FluG-BrlA asexual sporulation regulatory pathway. ChiB production does not affect the progression of apoptotic cell death in the aging A. nidulans cultures. The endochitinase ChiB plays an important role in autolysis of A. nidulans, and its production is initiated by FluG-BrlA signalling. Despite the fact that apoptosis is an inseparable part of fungal autolysis, its regulation is independent to FluG-initiated sporulation signalling. Deletion of chiB and fluG homologues in industrial filamentous fungal strains may stabilize the hyphal structures in the autolytic phase of growth and limit the release of autolytic hydrolases into the culture medium.
机译:阐明了构巢曲霉中ChiB产生的调控。构巢曲霉chiB基因的突变失活导致非自溶表型。为了更好地了解控制发育进程和真菌自溶的机制,我们研究了构巢曲霉发育和/或自溶突变体中一系列与自溶相关的参数。对各种培养物中菌丝体沉淀的紊乱,生物量损失,细胞外/几丁质酶活性,ChiB产生和chiB mRNA水平的研究表明,在深层培养中,自溶作用的初始化和固定相诱导的ChiB产生密切相关,并且这两个过程均由FluG-BrlA无性孢子形成调节途径控制。在衰老的构巢曲霉培养物中,ChiB的产生不影响凋亡细胞死亡的进程。内切几丁质酶ChiB在构巢曲霉的自溶中起重要作用,其产生是通过FluG-BrlA信号启动的。尽管凋亡是真菌自溶不可分割的一部分,但其调节独立于FluG引发的孢子形成信号。在工业丝状真菌菌株中删除chiB和fluG同源物可以使菌丝结构稳定在生长的自溶阶段,并限制自溶水解酶向培养基中的释放。

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