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首页> 外文期刊>Journal of Applied Phycology >Extracts from green and brown seaweeds protect tomato (Solanum lycopersicum) against the necrotrophic fungus Alternaria solani
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Extracts from green and brown seaweeds protect tomato (Solanum lycopersicum) against the necrotrophic fungus Alternaria solani

机译:绿色和棕色海藻的提取物可保护番茄(Solanum lycopersicum)免受坏死性真菌Solnaria solani的侵害

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Several reports have shown that crude or purified extracts of green, brown, and red seaweeds induce protection against fungal, bacterial, and viral pathogens in plants. In this work, we report that polysaccharide-enriched seaweed extracts obtained from green, Ulva lactuca and Caulerpa sertularioides, and brown algae, Padina gymnospora and Sargassum liebmannii, induced protection against the necrotrophic fungus Alternaria solani in tomato plants (Solanum lycopersicum). Protein activity of defense-related proteins polyphenol oxidase, guaiacol peroxidase and proteinase inhibitors together with expression levels of systemic wound response (SWRP) genes were also measured in leaf samples after algal extract treatment. All extracts were shown to reduce necrotic lesions induced by A. solani, particularly those obtained from U. lactuca and P. gymnospora. U. lactuca extracts induced the expression of SWRP genes, including defense, signal pathway, and protease genes, whereas those obtained from C. sertularioides, P. gymnospora and S. liebmannii showed almost no induction of SWRP genes, suggesting that extracts from the latter, whose carbohydrate composition varied from that of U. lactuca, may act through mechanisms other than the jasmonic acid/systemin wound-response pathway.
机译:一些报告表明,绿色,棕色和红色海藻的粗提物或提纯物可诱导植物抵御真菌,细菌和病毒病原体的侵害。在这项工作中,我们报告了从绿色,乌尔瓦(Ulva lactuca)和小菜菜(Callerpa sertularioides)以及棕色藻类,Padina Gymnospora和Sargassum liebmannii中获得的富含多糖的海藻提取物,可诱导抵抗番茄植物(Solanum lycopersicum)的坏死性真菌Alternaria solani。在藻提取物处理后的叶子样品中,还测量了防御相关蛋白多酚氧化酶,愈创木酚过氧化物酶和蛋白酶抑制剂的蛋白活性以及全身性伤口反应(SWRP)基因的表达水平。已显示所有提取物均减少了由茄。曲霉诱导的坏死性病变,尤其是那些从U. lactuca和P. Gymnospora获得的坏死性病变。 U. lactuca提取物诱导SWRP基因的表达,包括防御基因,信号途径和蛋白酶基因,而从C. sertularioides,P。Gymnospora和S. liebmannii获得的提取物几乎没有诱导SWRP基因的表达,这表明后者的提取物,其碳水化合物组成不同于U. lactuca的,可能通过茉莉酸/系统伤口反应途径以外的其他机制起作用。

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