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首页> 外文期刊>Journal of proteomics >iTRAQ-based quantitative proteomic analysis reveals proteomic changes in three fenoxaprop-P-ethyl-resistant Beckmannia syzigachne biotypes with differing ACCase mutations
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iTRAQ-based quantitative proteomic analysis reveals proteomic changes in three fenoxaprop-P-ethyl-resistant Beckmannia syzigachne biotypes with differing ACCase mutations

机译:基于ITRAQ的定量蛋白质组学分析揭示了三种FENOXAPROP-P-乙基抗性Beckmannia Syzigachne生物型的蛋白质组学变化,不同的Accase突变

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American sloughgrass (Beckmannia syzigachne Steud.) is a weed widely distributed in wheat fields of China. In recent years, the evolution of herbicide (fenoxaprop-P-ethyl)-resistant populations has decreased the susceptibility of B. syzigachne. This study compared 4 B. syzigachne populations (3 resistant and 1 susceptible) using iTRAQ to characterize fenoxaprop-P-ethyl resistance in B. syzigachne at the proteomic level. Through searching the UniProt database, 3104 protein species were identified from 13,335 unique peptides. Approximately 2834 protein species were assigned to 23 functional classifications provided by the COG database. Among these, 2299 protein species were assigned to 125 predicted pathways. The resistant biotype contained 8 protein species that changed in abundance relative to the susceptible biotype; they were involved in photosynthesis, oxidative phosphorylation, and fatty acid biosynthesis pathways. In contrast to previous studies comparing only 1 resistant and 1 susceptible population, our use of 3 fenoxaprop-resistant B. syzigachne populations with different genetic backgrounds minimized irrelevant differential expression and eliminated false positives. Therefore, we could more confidently link the differentially expressed proteins to herbicide resistance. Proteomic analysis demonstrated that fenoxaprop-P-ethyl resistance is associated with photosynthetic capacity, a connection that might be related to the target-site Mutations in resistant B. syzigachne. This is the first large-scale proteomics study examining herbicide stress responses in different B. syzigachne biotypes.
机译:美国斯洛伐克(Beckmannia Syzigachne Steud)是一家广泛分布在中国麦田的杂草。近年来,除草剂(FenoxaProp-乙基)的演变(Fenoxaprop-乙基) - 抗生素群体降低了B. syzigachne的易感性。本研究使用ITRAQ与Syzigachne群体(3个抗性和1个敏感)的比较,以在蛋白质组学水平在B. Syzigachne中表征Fenoxaprop-p-乙基抗性。通过搜索UNIPROT数据库,从13,335个独特的肽鉴定了3104种蛋白质。 COG数据库提供约2834种蛋白质物种。其中,将2299种蛋白质物种分配给125个预测途径。抗性生物型含有8种蛋白质物种,相对于敏感的生物型改变了丰富;它们参与光合作用,氧化磷酸化和脂肪酸生物合成途径。与以前的研究相比,只有1种抗性和1种易感群体,我们使用3个Fenoxaprop抗性B. Syzigachne群体,具有不同的遗传背景,最小化无关的差异表达并消除了误报。因此,我们可以更自信地将差异表达的蛋白质链接到除草剂的抵抗力。蛋白质组学分析表明,芬太昔普 - 乙基抗性与光合容量有关,该连接可能与抗性B. syzigachne的靶位突变有关。这是第一个大规模蛋白质组学研究在不同B. syzigachne生物型中检查除草剂应激反应。

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