Phytophthora capsici sterol reductase PcDHCR7 has a role in mycelium development and pathogenicity

辣椒疫霉 生物 甾醇 麦角甾醇 卵菌 转录组 还原酶 基因 菌丝体 疫霉菌 生物化学 遗传学 植物 基因表达 胆固醇
作者
Weizhen Wang,Fan Zhang,Sicong Zhang,Zhaolin Xue,Linfang Xie,Francine Govers,Xili Liu
出处
期刊:Open Biology [Royal Society]
卷期号:12 (4) 被引量:21
标识
DOI:10.1098/rsob.210282
摘要

The de novo biosynthesis of sterols is critical for the majority of eukaryotes; however, some organisms lack this pathway, including most oomycetes. Phytophthora spp. are sterol auxotrophic but, remarkably, have retained a few genes encoding enzymes in the sterol biosynthesis pathway. Here, we show that PcDHCR7, a gene in Phytophthora capsici predicted to encode Δ7-sterol reductase, displays multiple functions. When expressed in Saccharomyces cerevisiae , PcDHCR7 showed the Δ7-sterol reductase activity. Knocking out PcDHCR7 in P. capsici resulted in loss of the capacity to transform ergosterol into brassicasterol, which means PcDHCR7 has the Δ7-sterol reductase activity in P. capsici itself . This enables P. capsici to transform sterols recruited from the environment for better use. The biological characteristics of ΔPcDHCR7 transformants were compared with those of the wild-type strain and a PcDHCR7 complemented transformant, and the results showed that PcDHCR7 plays a key role in mycelium development and pathogenicity of zoospores. Further analysis of the transcriptome indicated that the expression of many genes changed in the ΔPcDHCR7 transformant, which involve in different biological processes. It is possible that P. capsici compensates for the defects caused by the loss of PcDHCR7 by remodelling its transcriptome.

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