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Activation of Defense Mechanism in Wheat by Polyphenol Oxidase from Aphid Saliva

机译:蚜虫唾液中的多酚氧化酶激活小麦防御机制

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The saliva of two cereal aphids, Sitobion avenae and Schizaphis gramlnum in third-instar nymphs, was collected after 24 h of feeding by 30 aphids, separately, on artificial diet sachets, and the salivary enzymes were determined. The result showed that polyphenol oxidase (PPO) existed in the saliva of both aphid species, and the enzymatic activities were 6.2 x 10~(-3) U/g for S. avenae and 2.37 x 10~(-1) U/g for S. graminum, revealing a 38-fold higher activity in the saliva of S. graminum than in the saliva of S. avenae. It was speculated that the higher PPO activity in S. graminum saliva was a contributing factor to the light yellow spot left on the feeding site of the wheat leaf by S. graminum; no such spot was left by S. avenae. After treatment of a wheat seedling with the saliva of S. avenae and S. graminum and PPO at the concentration of aphid saliva, transcript profiling data showed that aphid saliva and PPO significantly induced expression of the genes aos and fps. Because genes aos and fps encode the key enzymes in the defense signal pathways jasmonic acid and terpene signal pathways, respectively, it was deduced that PPO from aphid saliva, as the main elicitor, triggers an appropriate defense response in wheat through jasmonic acid and terpens signal pathways.
机译:在30只蚜虫进食24小时后,分别在人工饮食小袋中收集了三龄若虫中的两种谷物蚜虫(Sitobion avenae和Schizaphis gramlnum)的唾液,并测定了唾液中的酶。结果表明,两种蚜虫的唾液中均存在多酚氧化酶,P.avenae的酶活性为6.2 x 10〜(-3)U / g,S.avenae的酶活性为2.37 x 10〜(-1)U / g。对于S. graminum,揭示S. graminum唾液中的活性是S. avenae的38倍。据推测,S。graminum唾液中较高的PPO活性是由S. graminum留在小麦叶片取食部位的淡黄色斑点的一个促成因素。燕麦葡萄球菌没有留下这样的斑点。用蚜虫唾液浓度的S. avenae和S. graminum唾液和PPO处理小麦幼苗后,转录谱分析数据显示,蚜虫唾液和PPO显着诱导了基因aos和fps的表达。由于基因aos和fps分别编码了茉莉酸和萜烯信号防御信号通路中的关键酶,因此可以推断,蚜虫唾液中的PPO作为主要诱因,通过茉莉酸和萜烯信号触发了小麦的适当防御反应。途径。

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