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首页> 外文期刊>Journal of Applied Phycology >Response of Pyropia haitanensis to agaro-oligosaccharides evidenced mainly by the activation of the eicosanoid pathway
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Response of Pyropia haitanensis to agaro-oligosaccharides evidenced mainly by the activation of the eicosanoid pathway

机译:主要通过类花生酸途径的激活来证明海坦单胞菌对琼脂寡糖的反应

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The marine red alga Pyropia haitanensis (Protoflorideophyceae, Bangiaceae) has a nonvascular and multicellular structure and emerged earlier in evolution than other cultivatable red algae. It has been reported that lipid mediators from both the eicosanoid and octadecanoid pathways are involved in the innate immunity of other marine algae. But the defense strategies of P. haitanensis are not clearly understood. Here, we investigated the lipid defense of P. haitanensis elicited by agaro-oligosaccharides. The results indicate that the resistance of P. haitanensis was elicited and hydrogen peroxide was released by agaro-oligosaccharides. In P. haitanensis, C20 fatty acids are the essential fatty acids. Phospholipase A(2) was activated, and the free fatty acids decreased 3 h after treatment with agaro-oligosaccharides. Gas chromatography-mass spectrometry analyses revealed that the contents of volatile organic compounds increased after treatment for 3 h, which indicated that these free fatty acids were metabolized to volatile organic compounds. In conclusion, the lipid metabolic defense pathway of P. haitanensis was mainly via the C20 metabolism pathway. The C20 fatty acid was rapidly metabolized to volatile organic compounds, but not oxidized to oxylipins in response to agaro-oligosaccharides.
机译:海洋红藻海棠Pyropia haitanensis(Protoflorideophyceaeae,Bangiaceae)具有非血管和多细胞结构,并且在进化中比其他可栽培红藻更早出现。据报道,来自类花生酸和十八烷类途径的脂质介体参与了其他海藻的先天免疫。但是对海坛松的防御策略还不清楚。在这里,我们调查了琼脂寡糖引起的海棠体育的脂质防御作用。结果表明,琼脂寡糖可引起海棠抗性,并释放过氧化氢。在海坛假单胞菌中,C20脂肪酸是必需脂肪酸。用琼脂寡糖处理后3小时,磷脂酶A(2)被激活,并且游离脂肪酸减少。气相色谱-质谱分析表明,处理3 h​​后,挥发性有机化合物的含量增加,这表明这些游离脂肪酸被代谢成挥发性有机化合物。综上所述,海坛疟原虫的脂质代谢防御途径主要是通过C20代谢途径。 C20脂肪酸迅速代谢为挥发性有机化合物,但响应于琼脂寡糖却未氧化为脂蛋白。

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