首页> 外文期刊>Applied Microbiology >Deletion of the Aspergillus flavus Orthologue of A. nidulans fluG Reduces Conidiation and Promotes Production of Sclerotia but Does Not Abolish Aflatoxin Biosynthesis
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Deletion of the Aspergillus flavus Orthologue of A. nidulans fluG Reduces Conidiation and Promotes Production of Sclerotia but Does Not Abolish Aflatoxin Biosynthesis

机译:删除构巢曲霉fluG的黄曲霉直向同源物减少分生并促进菌核的产生,但不消除黄曲霉毒素的生物合成

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The fluG gene is a member of a family of genes required for conidiation and sterigmatocystin production in Aspergillus nidulans . We examined the role of the Aspergillus flavus fluG orthologue in asexual development and aflatoxin biosynthesis. Deletion of fluG in A. flavus yielded strains with an approximately 3-fold reduction in conidiation but a 30-fold increase in sclerotial formation when grown on potato dextrose agar in the dark. The concurrent developmental changes suggest that A. flavus FluG exerts opposite effects on a mutual signaling pathway for both processes. The altered conidial development was in part attributable to delayed expression of brlA , a gene controlling conidiophore formation. Unlike the loss of sterigmatocystin production by A. nidulans fluG deletion strains, aflatoxin biosynthesis was not affected by the fluG deletion in A. flavus . In A. nidulans , FluG was recently found to be involved in the formation of dehydroaustinol, a component of a diffusible signal of conidiation. Coculturing experiments did not show a similar diffusible meroterpenoid secondary metabolite produced by A. flavus . These results suggest that the function of fluG and the signaling pathways related to conidiation are different in the two related aspergilli.
机译:fluG基因是构巢曲霉孢子形成和壳藻毒素产生所需基因家族的成员。我们检查了黄曲霉fluG直向同源物在无性发育和黄曲霉毒素生物合成中的作用。当在黑暗中于马铃薯葡萄糖琼脂上生长时,黄曲霉中fluG的缺失产生的菌株的分生孢子减少约3倍,但菌核形成增加了30倍。同时发生的发育变化表明,黄曲霉FluG在两个过程的相互信号传导途径上发挥相反的作用。分生孢子发育的改变部分归因于brlA的延迟表达,brlA是控制分生孢子形成的基因。与构巢曲霉(A.nidulans)fluG缺失菌株导致的损失sterigmatocystin不同,黄曲霉中fluG缺失不会影响黄曲霉毒素的生物合成。在构巢曲霉中,最近发现FluG参与了脱氢奥斯汀醇的形成,脱氢奥斯汀醇是弥散的分生信号的一部分。共培养实验没有显示黄曲霉(A. flavus)产生的类似的可扩散的甲萜类次生代谢产物。这些结果表明,在两个相关的曲霉中,fluG的功能和与分娩有关的信号传导途径是不同的。

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