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长期实验室培养后食线虫真菌致病性增强

Increased Pathogenicity of the Nematophagous Fungus Following Long-Term Laboratory Culture.

作者信息

Courtine Damien, Zhang Xing, Ewbank Jonathan J

机构信息

Aix Marseille Univ, CNRS, INSERM, CIML, Turing Centre for Living Systems, Marseille, France.

出版信息

Front Fungal Biol. 2021 Dec 16;2:778882. doi: 10.3389/ffunb.2021.778882. eCollection 2021.

Abstract

Domestication provides a window into adaptive change. Over the course of 2 decades of laboratory culture, a strain of the nematode-specific fungus became more virulent during its infection of . Through a close comparative examination of the genome sequences of the original strain and its more pathogenic derivative, we identified a small number of non-synonymous mutations in protein-coding genes. In one case, the mutation was predicted to affect a gene involved in hypoxia resistance and we provide direct corroborative evidence for such an effect. The mutated genes with functional annotation were all predicted to impact the general physiology of the fungus and this was reflected in an increased growth, even in the absence of . While most cases involved single nucleotide substitutions predicted to lead to a loss of function, we also observed a predicted restoration of gene function through deletion of an extraneous tandem repeat. This latter change affected the regulatory subunit of a cAMP-dependent protein kinase. Remarkably, we also found a mutation in a gene for a second protein of the same, protein kinase A, pathway. Together, we predict that they result in a stronger repression of the pathway for given levels of ATP and adenylate cyclase activity. Finally, we also identified mutations in a few lineage-specific genes of unknown function that are candidates for factors that influence virulence in a more direct manner.

摘要

驯化提供了一个了解适应性变化的窗口。在20年的实验室培养过程中,一种线虫特异性真菌菌株在感染过程中变得更具毒性。通过对原始菌株及其更具致病性的衍生物的基因组序列进行仔细的比较分析,我们在蛋白质编码基因中鉴定出少量非同义突变。在一个案例中,该突变预计会影响一个与抗缺氧相关的基因,并且我们为这种影响提供了直接的确证证据。具有功能注释的突变基因均预计会影响真菌的一般生理学,这甚至在没有[具体条件未提及]的情况下也反映在其生长增加上。虽然大多数情况涉及预计会导致功能丧失的单核苷酸替换,但我们也观察到通过删除一个无关的串联重复序列使基因功能得到了预测性的恢复。后一种变化影响了一种环磷酸腺苷依赖性蛋白激酶的调节亚基。值得注意的是,我们还在同一条蛋白激酶A途径的另一种蛋白质基因中发现了一个突变。我们共同预测,对于给定水平的ATP和腺苷酸环化酶活性,它们会导致该途径受到更强的抑制。最后,我们还在一些功能未知的谱系特异性基因中鉴定出突变,这些基因是更直接影响毒力的因素的候选者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4cd8/10512298/567ed2084dc7/ffunb-02-778882-g0001.jpg

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