首页> 外文期刊>Molecular Microbiology >A Galpha subunit controls zoospore motility and virulence in the potato late blight pathogen Phytophthora infestans.
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A Galpha subunit controls zoospore motility and virulence in the potato late blight pathogen Phytophthora infestans.

机译:Galpha亚基控制马铃薯晚疫病病原菌疫霉疫中的游动孢子运动性和毒力。

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The heterotrimeric G-protein pathway is a ubiquitous eukaryotic signalling module that is known to regulate growth and differentiation in many plant pathogens. We previously identified Pigpa1, a gene encoding a G-protein alpha subunit from the potato late blight pathogen Phytophthora infestans. P. infestans belongs to the class oomycetes, a group of organisms in which signal transduction processes have not yet been studied at the molecular level. To elucidate the function of Pigpa1, PiGPA1-deficient mutants were obtained by homology-dependent gene silencing. The Pigpa1-silenced mutants produced zoospores that turned six to eight times more frequently, causing them to swim only short distances compared with wild type. Attraction to the surface, a phenomenon known as negative geotaxis, was impaired in the mutant zoospores, as well as autoaggregation and chemotaxis towards glutamic and aspartic acid. Zoospore production was reduced by 20-45% in different Pigpa1-silenced mutants. Transformants expressing constitutively active forms of PiGPA1, containing amino acid substitutions (R177H and Q203L), showed no obvious phenotypic differences from the wild-type strain. Infection efficiencies on potato leaves ranged from 3% to 14% in the Pigpa1-silenced mutants, compared with 77% in wild type, showing that virulence is severely impaired. The results prove that PiGPA1 is crucial for zoospore motility and for pathogenicity in an important oomycete plant pathogen.
机译:异源三聚体G蛋白途径是一种普遍存在的真核信号传导模块,已知其可调节许多植物病原体的生长和分化。我们先前确定了Pigpa1,一种编码马铃薯晚疫病病原菌疫霉菌G蛋白α亚基的基因。 P. infestans属于卵菌纲,这是一组尚未在分子水平上研究信号转导过程的生物。为了阐明Pigpa1的功能,通过同源性依赖性基因沉默获得了PiGPA1缺陷型突变体。 Pigpa1沉默的突变体产生的游动孢子的发生频率是野生型的6到8倍,使它们游动的距离很短。突变的游动孢子削弱了对表面的吸引力,这种现象被称为负地轴性,并且对谷氨酸和天冬氨酸的自动聚集和趋化性也减弱了。在不同的Pigpa1沉默的突变体中,游动孢子的产量降低了20-45%。表达含有氨基酸取代(R177H和Q203L)的PiGPA1的组成型活性形式的转化子,与野生型菌株没有明显的表型差异。 Pigpa1沉默的突变体对马铃薯叶片的感染效率范围为3%至14%,而野生型突变体的感染效率为77%,表明毒力严重受损。结果证明,PiGPA1对于游动孢子运动和重要的卵菌植物病原体的致病性至关重要。

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