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Effect of photosensitisers on growth and morphology of Phytophthora citrophthora coupled with leaf bioassays in pear seedlings

机译:光囊炎对植物幼苗叶片生物测定植物生长和形态的影响

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The phytopathogenic oomycetes of the genus Phytophthora cause devastating economic losses worldwide. Naphthodianthrone compounds, present in plant extracts of buckwheat and Saint John's wort act as photosensitiser agents and exhibit antimicrobial activity against a number of pathogens. In this study, we investigated the potential inhibitory effects of fagopyrin and hypericin on Phytophthora citrophthora (R.E. Sm. & E.H. Sm.) Leonian 1906, the main causal agent of rot diseases in deciduous trees. Fagopyrin had the highest inhibitory effect in the colony growth at a concentration of 2% of a stock solution (3 mg/mL), inducing clubbed hyphae with round tips. Notably, hypericin also inhibited the radial colony growth and increased the hyphal branching at the subapical region, while also promoting the formation of enlarged cells with irregular shapes growing collectively as biofilm-like structures. In terms of the mycelial dry weight, although both photosensitisers had considerable inhibitory effects, the fagopyrin treatment was most effective. Leaf bioassays showed that under dark conditions the photosensitiser pre-treated zoospores formed a dense, but aberrant, mycelial growth with penetration defects. In contrast, when the zoospore production was performed under light conditions, the zoospores failed to cause necrotic lesions and penetration events implying that their virulence was impaired. These findings shed light on the biological effects of fagopyrin and hypericin in the regulation of the mycelial growth, morphology and pathogenicity of P. citrophthora.
机译:Phytophthora属的植物疗法oomycetes导致全世界经济损失毁灭性。纳皮科的化合物存在于荞麦和圣约翰麦芽汁的植物提取物中,充当光敏剂剂,并针对许多病原体表现出抗微生物活性。在这项研究中,我们研究了Fagopyrin和Hypericin对植物嗜酸氢醇的潜在抑制作用(R.E.&E.H. SM。)Leonian 1906,落叶树的腐败疾病的主要因果因子。 Fagopyrin在菌落生长中具有最高的抑制作用,其浓度为2%的储备溶液(3mg / ml),致圆尖端诱导杆菌菌丝。值得注意的是,金刚素还抑制了径向菌落生长并增加了在皮下区域的悬垂分支,同时还促进了具有不规则形状的扩大细胞作为生物膜状结构的不规则形状。就菌丝体干重而言,虽然光囊炎均具有相当大的抑制作用,但FagoPyrin治疗最有效。叶片生物测定表明,在黑暗条件下,光囊腺病患者预处理的动物孢子形成了致密,但异常的菌丝体,具有渗透缺陷。相比之下,当在轻条件下进行Zoospore生产时,动物孢子未导致坏死的病变和渗透事件,这意味着它们的毒力受到损害。这些发现阐明了Fagopyrin和Hyperic蛋白在调节菌丝生长,形态和致病性的植物生长和致病性中的生物学作用。

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