AaLaeA targets AaFla1 to mediate the production of antitumor compound in Alternaria alstroemeria

Author:

Feng Can12,Zheng Wen2,Han Long2,Wang Jian‐kang2,Zha Xing‐ping2,Xiao Qing2,He Zhang‐jiang12ORCID,Kang Ji‐chuan12

Affiliation:

1. College of Pharmacy Guizhou University Guiyang People's Republic of China

2. Southwest Biomedical Resources of the Ministry of Education Guizhou University Guiyang People's Republic of China

Abstract

AbstractEndophytic fungi are an important source of novel antitumor substances. Previously, we isolated an endophytic fungus, Alternaria alstroemeria, from the medicinal plant Artemisia artemisia, whose crude extracts strongly inhibited A549 tumor cells. We obtained a transformant, namely AaLaeAOE26, which completely loses its antitumor activity due to overexpression of the global regulator AaLaeA. Re‐sequencing analysis of the genome revealed that the insertion site was in the noncoding region and did not destroy any other genes. Metabolomics analysis revealed that the level of secondary antitumor metabolic substances was significantly lower in AaLaeAOE26 compared with the wild strain, in particular flavonoids were more downregulated according to the metabolomics analysis. A further comparative transcriptome analysis revealed that a gene encoding FAD‐binding domain protein (Fla1) was significantly downregulated. On the other hand, overexpression of AaFla1 led to significant enhancement of antitumor activity against A549 with a sevenfold higher inhibition ratio than the wild strain. At the same time, we also found a significant increase in the accumulation of antitumor metabolites including quercetin, gitogenin, rhodioloside, liensinine, ginsenoside Rg2 and cinobufagin. Our data suggest that the global regulator AaLaeA negatively affects the production of antitumor compounds via controlling the transcription of AaFla1 in endophytic A. alstroemeria.

Publisher

Wiley

Subject

Applied Microbiology and Biotechnology,General Medicine

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