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首页> 外文期刊>Plant Growth Regulation: An International Journal on Natural and Synthetic Regulators >Quantitative proteomic analyses reveal that RBBI3.3, a trypsin inhibitor protein, plays an important role in Magnaporthe oryzae infection in rice
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Quantitative proteomic analyses reveal that RBBI3.3, a trypsin inhibitor protein, plays an important role in Magnaporthe oryzae infection in rice

机译:定量蛋白质组学分析显示,胰蛋白酶抑制剂蛋白,在大米的Magnaporthe Oryzae感染中起重要作用

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Magnaporthe oryzae (M. oryzae) is the causative agent of rice blast, the most destructive rice disease in China. This study was designed to ascertain the molecular mechanisms of the response of rice to M. oryzae infection to facilitate the breeding of new high-quality and disease-resistant rice varieties using isobaric tags for relative and absolute quantification (iTRAQ) combined with a high-throughput mass spectrometry identification platform. M. oryzae infection models were constructed with the resistant rice cultivar Gumei2 and the non-resistant cultivar Lijiangxintuanheigu (LTH). The results showed that total of 1541 proteins were identified, among which 843 proteins were overlapping between the two biological replicates analyses. Seventy-one proteins were classified as fungi-responsive. Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway enrichment analyses revealed the important roles of these proteins in metabolic processes. Detailed phenotypic analyses revealed that the trypsin inhibitor RBBI3.3 was effective in inhibiting the initial formation of appressoria. Our quantitative proteomic study provides insights into the molecular mechanism underlying M. oryzae resistance in the incompatible rice Gumei2. The identification of RBBI3.3 as a key defense regulator highlights a new possibility for disease control.
机译:Magnaporthe Oryzae(M. Oryzae)是水稻爆炸的致病因子,是中国最具破坏性的水稻疾病。本研究旨在确定水稻对M. oryzae感染的响应的分子机制,促进使用同学标签进行相对和绝对量化(ITRAQ)的新型高质量和抗病水稻品种的育种与高度 - 吞吐量质谱识别平台。 M. oryzae感染模型用抗水稻品种GuMei2和不抗性品种Lijiangxintuigu(Lth)构建。结果表明,鉴定了总共1541个蛋白质,其中两个生物学重复分析之间存在843蛋白质重叠。七十一根蛋白被归类为真菌响应。基因和基因组(Kegg)途径富集分析京都百科全书揭示了这些蛋白质在代谢过程中的重要作用。详细的表型分析显示,胰蛋白酶抑制剂RBBI3.3可有效抑制孕均肌瘤的初始形成。我们的定量蛋白质组学研究提供了在不相容的水稻GuMei2中M. Oryzae抗性下面的分子机制的见解。 RBBI3.3作为关键防御调节器的鉴定突出了疾病控制的新可能性。

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