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Host Physiology and Pathogenic Variation of Cochliobolus heterostrophus Strains with Mutations in the G Protein Alpha Subunit CGA1

机译:G蛋白质α亚基CGA1突变的异种耳蜗菌的宿主生理和致病性变异。

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摘要

Conserved eukaryotic signaling proteins participate in development and disease in plant-pathogenic fungi. Strains with mutations in CGA1, a heterotrimeric G protein G alpha subunit gene of the maize pathogen Cochliobolus heterostrophus, are defective in several developmental pathways. Conidia from CGA1 mutants germinate as abnormal, straight-growing germ tubes that form few appressoria, and the mutants are female sterile. Nevertheless, these mutants can cause normal lesions on plants, unlike other filamentous fungal plant pathogens in which functional homologues of CGA1 are required for full virulence. Δcga1 mutants of C. heterostrophus were less infective of several maize varieties under most conditions, but not all, as virulence was nearly normal on detached leaves. This difference could be related to the rapid senescence of detached leaves, since delaying senescence with cytokinin also had differential effects on the virulence of the wild type and the Δcga1 mutant. In particular, detached leaves may provide a more readily available nutrient source than attached leaves. Decreased fitness of Δcga1 as a pathogen may reflect conditions under which full virulence requires signal transduction through CGA1-mediated pathways. The virulence of these signal transduction mutants is thus affected differentially by the physiological state of the host.
机译:保守的真核信号蛋白参与植物致病真菌的发育和疾病。玉米病原体Cochliobolus heterostrophus的异源三聚体G蛋白G alpha亚基基因CGA1中具有突变的菌株在某些发育途径中存在缺陷。来自CGA1突变体的分生孢子发芽为异常,直生的胚芽管,几乎没有形成压感,并且该突变体是雌性不育的。但是,这些突变体可以对植物造成正常损害,这与其他丝状真菌植物病原体不同,在其他病原体中,CGA1的功能同系物需要完全的毒力。在大多数条件下,异养梭菌的Δcga1突变体对几种玉米品种的感染力较小,但并非全部,因为离体叶片的毒力几乎是正常的。这种差异可能与离体叶片的快速衰老有关,因为细胞分裂素延缓衰老对野生型和Δcga1突变体的毒力也有不同的影响。特别是,离叶比附着叶可提供更容易获得的营养源。 Δcga1作为病原体的适应性下降可能反映了完全毒力需要通过CGA1介导的途径进行信号转导的条件。这些信号转导突变体的毒力因此受到宿主生理状态的差异影响。

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