首页> 外文期刊>Journal of Bioscience and Bioengineering >AoRim15 is involved in conidial stress tolerance, conidiation and sclerotia formation in the filamentous fungus Aspergillus oryzae
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AoRim15 is involved in conidial stress tolerance, conidiation and sclerotia formation in the filamentous fungus Aspergillus oryzae

机译:AoRim15参与丝状真菌米曲霉中的分生孢子耐性,分生孢子和菌核的形成。

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The serine threonine kinase Rim15p is a master regulator of stress signaling and is required for stress tolerance and sexual sporulation in the yeast Saccharomyces cerevisiae. However, in filamentous fungi that reproduce asexually via conidiation, the physiological function of Rim15p homologs has not been extensively analyzed. Here, we functionally characterized the protein homolog of Rim15p in the filamentous fungus Aspergillus oryzae, by deleting and over expressing the corresponding Aorim15 gene and examining the role of this protein in stress tolerance and development. Deletion of Aorim15 resulted in an increase in the sensitivity of conidia to oxidative and heat stresses, whereas conidia of the Aorim15 overexpressing strain were more resistant to these stresses. These results indicated that AoRim15 functions in stress tolerance, similar to S. cerevisiae Rim15p. Phenotypic analysis revealed that conidiation was markedly reduced by overexpression of Aorim15 in A. oryzae, and was completely abolished in the deletion strain. In addition, the formation of sclerotia, which is another type of developmental structure in filamentous fungi, was decreased by the deletion of Aorim15, whereas Aorim15 overexpression increased the number of sclerotia. These results indicated that AoRim15 is a positive regulator of sclerotia formation and that overexpression of AoRim15 shifts the developmental balance from conidiation towards sclerotia formation. Collectively, we demonstrated that AoRim15 is involved in the stress tolerance of conidia and differentially regulates between the two developmental fates of conidiation and sclerotia formation. (C) 2015, The Society for Biotechnology, Japan. All rights reserved.
机译:丝氨酸苏氨酸激酶Rim15p是压力信号的主要调节因子,是酿酒酵母中压力耐受性和性孢子形成所必需的。然而,在通过分生孢子无性繁殖的丝状真菌中,Rim15p同源物的生理功能尚未得到广泛的分析。在这里,我们通过删除和过度表达相应的Aorim15基因并检查该蛋白在胁迫耐受性和发育中的作用,在功能上表征了丝状真菌米曲霉中Rim15p的蛋白同源物。 Aorim15的缺失导致分生孢子对氧化和热胁迫的敏感性增加,而Aorim15过表达菌株的分生孢子对这些胁迫更具抵抗力。这些结果表明,AoRim15在应激耐受中起作用,类似于酿酒酵母Rim15p。表型分析表明,米曲霉中Aorim15的过表达显着降低了分生孢子,而缺失菌株中的分生孢子完全消失了。另外,菌丝的形成是丝状真菌中另一种发育结构,它通过缺失Aorim15而减少,而Aorim15的过表达增加了菌丝的数量。这些结果表明AoRim15是菌核形成的正向调节器,并且AoRim15的过表达将发育平衡从分生转变为菌核形成。总的来说,我们证明了AoRim15参与分生孢子的胁迫耐受性,并在分生孢子形成和菌核形成的两个发育命运之间有差异地调节。 (C)2015年,日本生物技术学会。版权所有。

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