首页> 美国卫生研究院文献>Plant Physiology >Induced Responses in Phenolic Metabolism in Two Norway Spruce Clones after Wounding and Inoculations with Ophiostoma polonicum a Bark Beetle-Associated Fungus.
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Induced Responses in Phenolic Metabolism in Two Norway Spruce Clones after Wounding and Inoculations with Ophiostoma polonicum a Bark Beetle-Associated Fungus.

机译:受伤和接种Ophiostoma polonicum(一种与树皮甲虫相关的真菌)后在两个挪威云杉无性系的酚类代谢中诱导了应答。

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摘要

Two Norway spruce (Picea abies Karst.) clones, one resistant and the other susceptible to mass inoculation with Ophiostoma polonicum Siem., were compared with regard to their phenolic compositions and chalcone synthase (CHS) and stilbene synthase activities of their phloem before and at 6 and 12 d after artificial inoculation with sterile malt agar or O. polonicum. In unwounded phloem, the resistant clone differed from the susceptible clone by the presence of taxifolin glycoside, lower concentrations of stilbene glycosides, and higher CHS activity. After inoculation, (+)-catechin concentration and CHS activity dramatically increased around the wound, particularly in the resistant clone. Stilbene synthase activity also increased, but more slowly and to a lower level, whereas the concentrations of stilbenes remained stable. Tanning ability decreased in the susceptible clone, whereas it remained stable in the resistant one. It is proposed that the induced phenolic response of Norway spruce phloem consists of an activation of the phenolic pathway, finally leading to tannins and insoluble polymers. It is suggested that resistance to O. polonicum depends on the ability of the tree to easily activate the flavonoid pathway.
机译:比较了两个挪威云杉(Picea abies Karst。)克隆,其中一个具有抗性,另一个易于通过Ophiostoma polonicum Siem。大规模接种,比较了它们韧皮部之前和之后的酚类成分,查尔酮合酶(CHS)和二苯乙烯合酶活性。人工接种无菌麦芽琼脂或O. polonicum后6和12 d。在未受伤的韧皮部中,抗性克隆与易感克隆的不同之处在于存在滑石粉糖苷,较低浓度的1,2-二苯乙烯苷和较高的CHS活性。接种后,伤口周围的(+)-儿茶素浓度和CHS活性急剧增加,特别是在抗性克隆中。 Stilbene合酶活性也增加了,但增幅较慢且较低,而Stilbenes的浓度保持稳定。易感克隆的鞣制能力下降,而抗性克隆的鞣制能力保持稳定。有人提出,挪威云杉韧皮部的酚类反应包括酚类通路的活化,最终导致单宁和不溶性聚合物。提示对O. polonicum的抗性取决于树容易激活类黄酮途径的能力。

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