HSP104 and HSP20‐L Are Required by Aspergillus nidulans in Response to Attack by Fungivorous Springtail Sinella curviseta

巢状曲霉 过氧化氢酶 热休克蛋白 生物 超氧化物歧化酶 甲壳素 海藻糖 生物化学 未折叠蛋白反应 细胞生物学 微生物学 氧化应激 内质网 突变体 基因 壳聚糖
作者
Xiaomeng Wang,Juan Xi,Pengxu Chen,Yingying Chen,Keyu Chen,Weifa Zheng,Yanxia Zhao
出处
期刊:Environmental Microbiology Reports [Wiley]
卷期号:17 (4)
标识
DOI:10.1111/1758-2229.70147
摘要

ABSTRACT Heat shock proteins (HSPs) are conserved biomolecules that are consistently expressed and upregulated in response to stress. However, whether fungi activate HSPs in response to fungivorous arthropods' attack remains unclear. In this study, we investigated the function of HSP104 and HSP20‐L in Aspergillus nidulans upon Sinella curviseta stress. The results revealed that hsp 104 and hsp 20‐L were upregulated upon the stress. Knockout of hsp 104 and/or hsp 20‐L inhibited conidia and cleistothecia formation. Additionally, S. curviseta stress inhibited conidia and cleistothecia formation in the wild‐type strain. hsp 104 positively regulated conidia formation in response to stress, while hsp 20‐L negatively regulated it. Notably, hsp 104 and hsp 20‐L exhibited opposing functions on ascospore formation upon biotic stress. The absence of hsp 104 and/or hsp 20‐L and S. curviseta stress resulted in increased cellular damage. During asexual development, both hsp 104 and hsp 20‐L promoted chitin and β‐glucan synthesis and catalase activity. During sexual development, only chitin synthesis was enhanced in Δ hsp 104 and Δ hsp 20‐L. Under S. curviseta stress, HSP104 promoted chitin synthesis and catalase activity during asexual development, whereas HSP20‐L promoted chitin and trehalose synthesis and superoxide dismutase activity during sexual development. Collectively, our results suggest that hsp 104 and hsp 20‐L play a role in response to S. curviseta stress to maintain homeostasis.
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