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Uninterrupted Expression of in a Sclerotial Parasite Leads to Reduced Growth and Enhanced Antifungal Ability. | LitMetric

Uninterrupted Expression of in a Sclerotial Parasite Leads to Reduced Growth and Enhanced Antifungal Ability.

Front Microbiol

The Provincial Key Lab of Plant Pathology of Hubei Province, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, China.

Published: November 2017

is an important mycoparasite of . In addition, it also produces small amounts of antifungal substances. ZS-1TN1812, an abnormal mutant, was originally screened from a T-DNA insertional library. This mutant showed abnormal growth phenotype and could significantly inhibit the growth of when dual-cultured on a PDA plate. When spraying the filtrate of ZS-1TN1812 on the leaves of rapeseed, infection was significantly inhibited, suggesting that the antifungal substances produced by this mutant were effective on rapeseed leaves. The thermo-tolerant antifungal substances could specifically suppress the growth of , but could not significantly suppress the growth of another fungus, . However, was more sensitive to proteinous antibiotics than . The T-DNA insertion in ZS-1TN1812 activated the expression of , a gene involved in siderophore-mediated iron transport. It was also determined that mutant ZS-1TN1812 produced hypha with high iron levels. In the wild-type strain ZS-1, was expressed only when in contact with , and consistent overexpression of showed similar phenotypes as ZS-1TN1812. Therefore, activated expression of leads to the enhanced antifungal ability, and is a potential gene for improving the control ability of .

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5686095PMC
http://dx.doi.org/10.3389/fmicb.2017.02208DOI Listing

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