分生孢子
生物
菌丝
突变体
菌丝体
磷酸二酯酶
真菌
线虫
野生型
细胞生物学
酵母
真菌蛋白
微生物学
生物化学
基因
植物
酶
生态学
作者
Ni Ma,Kexin Jiang,Na Bai,Dongni Li,Ke‐Qin Zhang,Jinkui Yang
出处
期刊:Pathogens
[Multidisciplinary Digital Publishing Institute]
日期:2022-03-26
卷期号:11 (4): 405-405
被引量:8
标识
DOI:10.3390/pathogens11040405
摘要
Phosphodiesterases are essential regulators of cyclic nucleotide signaling with diverse physiological functions. Two phosphodiesterases, PdeH and PdeL, have been identified from yeast and filamentous fungi. Here, the orthologs of PdeH and PdeL were characterized in a typical nematode-trapping fungus Arthrobotrys oligospora by gene disruption and phenotypic comparison. Deletion of AopdeH caused serious defects in mycelial growth, conidiation, stress response, trap formation, and nematicidal efficiency compared to the wild-type strain. In contrast, these phenotypes have no significant difference in the absence of AopdeL. In addition, deletion of AopdeH and AopdeL resulted in a remarkable increase in cAMP level during vegetative growth and trap formation, and the number of autophagosomes was decreased in ΔAopdeH and ΔAopdeL mutants, whereas their volumes considerably increased. Moreover, metabolomic analyses revealed that many metabolites were downregulated in ΔAopdeH mutant compared to their expression in the wild-type strain. Our results indicate that AoPdeH plays a crucial role in mycelial growth, conidiation, stress response, secondary metabolism, and trap formation. In contrast, AoPdeL only plays a minor role in hyphal and conidial morphology, autophagy, and trap formation in A. oligospora. This work expands the roles of phosphodiesterases and deepens the understanding of the regulation of trap formation in nematode-trapping fungi.
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