Colletotrichum gloeosporioides alkalinizes its surroundings during colonization of host tissue. The transcription factor pacC is a regulator of pH-controlled genes and is essential for successful colonization. We present here the sequence assembly of the Colletotrichum fruit pathogen and use it to explore the global regulation of pathogenicity by ambient pH. The assembled genome size was 54 Mb, encoding 18,456 genes. Transcriptomes of the wild type and ΔpacC mutant were established by RNA-seq and explored for their global pH-dependent gene regulation. The analysis showed that pacC upregulates 478 genes and downregulates 483 genes, comprising 5% of the fungal genome, including transporters, antioxidants, and cell-wall-degrading enzymes. Interestingly, gene families with similar functionality are both up- and downregulated by pacC. Global analysis of secreted genes showed significant pacC activation of degradative enzymes at alkaline pH and during fruit infection. Select genes from alkalizing-type pathogen C. gloeosporioides and from acidifying-type pathogen Sclerotinia sclerotiorum were verified by quantitative reverse-transcription polymerase chain reaction analysis at different pH values. Knock out of several pacC-activated genes confirmed their involvement in pathogenic colonization of alkalinized surroundings. The results suggest a global regulation by pacC of key pathogenicity genes during pH change in alkalinizing and acidifying pathogens.

译文

在宿主组织定植过程中,炭疽菌将其周围环境碱化。转录因子pacC是pH控制基因的调节剂,对于成功定植至关重要。我们在这里介绍了炭疽菌果实病原体的序列组装,并使用它来探索环境pH对致病性的整体调节。组装的基因组大小为54 Mb,编码18,456个基因。通过RNA-seq建立了野生型和 Δ pacc突变体的转录组,并探索了其整体pH依赖性基因调控。分析表明,pacC上调478基因并下调483基因,包括真菌基因组的5%,包括转运蛋白,抗氧化剂和细胞壁降解酶。有趣的是,具有相似功能的基因家族都被pacC上调和下调。分泌基因的整体分析显示,在碱性pH下和水果感染期间,降解酶的pacC活化显着。通过定量逆转录聚合酶链反应分析在不同ph值下验证了碱化型病原体C. gloeosporioides和酸化型病原体菌核盘菌的选择基因。敲除几个pacC激活的基因证实了它们参与了碱化环境的致病性定植。结果表明,在碱化和酸化病原体的pH变化过程中,pacC对关键致病性基因进行了整体调节。

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