Department of Bioscience and Biotechnology, Konkuk University, Seoul, 05029, Korea.
Sci Rep. 2020 Jul 6;10(1):11116. doi: 10.1038/s41598-020-68096-x.
In fungi, contactless interactions are mediated via the exchange of volatile organic compounds (VOCs). As these pair-wise interactions are fundamental to complex ecosystem, we examined the effects of inter-species VOCs trade-offs in Aspergillus flavus development. First, we exposed A. flavus to the A. oryzae volatilome (Treatment-1) with highest relative abundance of 1-Octen-3-ol (~ 4.53 folds) among the C-8 VOCs. Further, we examined the effects of gradient titers of 1-Octen-3-ol (Treatment-2: 100-400 ppm/day) in a range that elicits natural interactions. On 7-day, VOC-treated A. flavus displayed significantly reduced growth and sclerotial counts (p < 0.01) coupled with higher conidial density (T2, p < 0.01) and α-amylase secretion (T2, p < 0.01), compared to the untreated sets. Similar phenotypic trends except for α-amylases were evident for 9-day incubated A. flavus in T2. The corresponding metabolomics data displayed a clustered pattern of secondary metabolite profiles for VOC-treated A. flavus (PC1-18.03%; PC2-10.67%). Notably, a higher relative abundance of aflatoxin B1 with lower levels of most anthraquinones, indole-terpenoids, and oxylipins was evident in VOC-treated A. flavus. The observed correlations among the VOC-treatments, phenotypes, and altered metabolomes altogether suggest that the distant exposure to the gradient titers of 1-Octen-3-ol elicits an attenuated developmental response in A. flavus characterized by heightened virulence.
在真菌中,非接触式相互作用是通过挥发性有机化合物(VOCs)的交换介导的。由于这些成对的相互作用是复杂生态系统的基础,我们研究了曲霉属黄青霉发育过程中种间 VOCs 权衡的影响。首先,我们将 A. flavus 暴露于 A. oryzae 挥发组(处理 1)中,其中 C-8 VOCs 中 1-辛烯-3-醇的相对丰度最高(~4.53 倍)。此外,我们研究了在引发自然相互作用的范围内,1-辛烯-3-醇浓度梯度(处理 2:100-400 ppm/天)对其的影响。在第 7 天,与未处理组相比,经 VOC 处理的 A. flavus 的生长和产菌核数量显著减少(p<0.01),同时产分生孢子的密度增加(T2,p<0.01),α-淀粉酶分泌量增加(T2,p<0.01)。对于在 T2 中孵育 9 天的 A. flavus,除了α-淀粉酶之外,还出现了类似的表型趋势。相应的代谢组学数据显示,经 VOC 处理的 A. flavus 的次级代谢产物图谱呈聚类模式(PC1-18.03%;PC2-10.67%)。值得注意的是,经 VOC 处理的 A. flavus 中,黄曲霉毒素 B1 的相对丰度较高,而大多数蒽醌类、吲哚萜类和氧化脂类的水平较低。观察到的 VOC 处理、表型和改变的代谢组学之间的相关性表明,远距离暴露于 1-辛烯-3-醇的浓度梯度会引起 A. flavus 发育反应减弱,表现为毒力增强。