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Differential expression of beta-1,3-glucanase in susceptible and resistant melon cultivars in response to infection by Sphaerotheca fusca

机译:β-1,3-葡聚糖酶在敏感和抗性甜瓜品种对圆球白粉病感染的响应中的差异表达

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摘要

Here we describe the induction patterns of beta-1,3-glucanase (betaGlu; EC 3.2.1.39) in leaves of susceptible and resistant melon cultivars in response to infection by the cucurbit powdery mildew fungus Sphaerotheca fusca. Upon inoculation, betaGlu activity increased more rapidly in the resistant cv. "PMR-6" than in the susceptible cv. "Rochet" by either spectrophotometric or gel assays. A single betaGlu polypeptide of 33 kDa was detected by Western blot analysis in both cultivars, that was first detected in the resistant cultivar. Two-dimensional analysis of the 33 kDa betaGlu polypeptides revealed that in both cultivars such bands were composed of two acidic polypeptides; one being common to both cultivars and the other specific to each cultivar. Furthermore, Northern blot analysis using an homologous betaGlu cDNA probe isolated by RT-PCR from powdery mildew-infected leaves of the resistant cultivar, showed an earlier induction of betaGlu transcripts in this cultivar than in the susceptible one. The role of this hydrolytic enzyme in melon plant defence against powdery mildew is discussed.
机译:在这里,我们描述了对葫芦类白粉病真菌Sphaerotheca fusca感染的敏感和抗性瓜品种叶片中β-1,3-葡聚糖酶(betaGlu; EC 3.2.1.39)的诱导模式。接种后,抗性cv中的betaGlu活性增加更快。 “ PMR-6”比易感的简历要多。通过分光光度法或凝胶法测定“ Rochet”。通过蛋白质印迹分析在两个品种中检测到一个33 kDa的单一betaGlu多肽,该多肽首先在抗性品种中检测到。对33 kDa betaGlu多肽的二维分析表明,在两个品种中,此类条带均由两个酸性多肽组成;一个是两个品种共同的,另一个特定于每个品种。此外,使用通过RT-PCR从抗性栽培品种的白粉病感染的叶片中分离的同源βGlucDNA探针进行Northern印迹分析,显示该品种中的βGlu转录物比易感品种早诱导。讨论了这种水解酶在瓜类植物抗白粉病中的作用。

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