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SWATH-MS-based quantitative proteomics reveals a uniquely intricate defense response in Cnaphalocrocis medinalis -resistant rice

机译:基于SWATH-MS的定量蛋白质组学揭示了CNAphalocrocis MEDINARIS-resistant米的独特复杂的防御反应

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Cnaphalocrocis medinalis is a major insect pest of rice in Asia. A few defensive enzymes were reported to show higher activities in a resistant rice line (Qingliu) than in a susceptible rice line (TN1) upon leaffolder infestation. However, the overall molecular regulation of the rice defense response against leaffolder herbivory is unknown. Here, differential proteomic analysis by SWATH-MS was performed to identify differentially expressed proteins between the two rice varieties, Qingliu and TN1, at four time points of leaffolder herbivory, 0, 6, 24, and 72?h. Gene Ontology (GO) enrichment of the differentially expressed proteins indicated overrepresentation of (1) photosynthesis, (2) amino acid and derivative metabolic process, and (3) secondary metabolic process. Phenylalanine ammonia lyase and chalcone synthase, which catalyze flavonoid biosynthesis, and lipoxygenase, which catalyzes jasmonic acid biosynthesis, exhibited higher expression in Qingliu than in TN1 even before insect herbivory. Momentary activation of the light reaction and Calvin cycle was detected in Qingliu at 6?h and 24?h of insect herbivory, respectively. At 72?h of insect herbivory, amino acid biosynthesis and glutathione-mediated antioxidation were activated in Qingliu. A defense response involving jasmonic acid signaling, carbon remobilization, and the production of flavonoids and glutathione could underlie the resistance of Qingliu to leaffolder.
机译:Cnaphalocrocis Medinalis是亚洲稻米的主要害虫。据报道,少数防御酶在抗剥米线(TN1)中显示出抗性稻米(Qingliu)的更高活性。然而,对Leaffolder草食物的整体分子调节对抗莱斯德尔食草症是未知的。这里,进行差异蛋白质组学分析,以鉴定两种水稻品种,Qingliu和TN1之间的差异表达蛋白质,在Leaffolder草食的四个时间点,0,6,24和72Ω·h。差异表达蛋白质的基因本体(GO)富集表明(1)光合作用,(2)氨基酸和衍生物代谢过程的过度陈述,和(3)二次代谢过程。催化黄酮类生物合成的苯丙氨酸氨裂解酶和Chalcone合成酶催化茉莉酸生物合成,甚至在昆虫草本植物之前表现出青霉素的表达比TN1更高。在昆虫草食草中的昆育和24℃下检测光反应和钙氏循环的瞬时活化。在昆虫草本病变,氨基酸生物合成和谷胱甘肽介导的抗氧化在清肺中被激活。涉及茉莉酸信号传导,碳复血分症和黄酮类化合物和谷胱甘肽的生产的防御反应可以利于Qingliu对Leaffolder的抗性。

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