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Proteomic analysis of the defense response to Magnaporthe oryzae in rice harboring the blast resistance gene Piz-t

机译:含有抗耐药基因Piz-T的稻瘟病矿物质防御反应的蛋白质组学分析

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摘要

Abstract Background Rice blast (caused by Magnaporthe oryzae) is one of the most destructive diseases of rice. While many blast resistance (R) genes have been identified and deployed in rice cultivars, little is known about the R gene-mediated defense mechanism. We used a rice transgenic line harboring the resistance gene Piz-t to investigate the R gene-mediated resistance response to infection. Results We conducted comparative proteome profiling of the Piz-t transgenic Nipponbare line (NPB-Piz-t) and wild-type Nipponbare (NPB) inoculated with M. oryzae at 24, 48, 72 h post-inoculation (hpi) using isobaric tags for relative and absolute quantification (iTRAQ) analysis. Comparative analysis of the response of NPB-Piz-t to the avirulent isolate KJ201 and the virulent isolate RB22 identified 114 differentially expressed proteins (DEPs) between KJ201-inoculated NPB-Piz-t (KJ201-Piz-t) and mock-treated NPB-Piz-t (Mock-Piz-t), and 118 DEPs between RB22-inoculated NPB-Piz-t (RB22-Piz-t) and Mock-Piz-t. Among the DEPs, 56 occurred commonly in comparisons KJ201-Piz-t/Mock-Piz-t and RB22-Piz-t/Mock-Piz-t. In a comparison of the responses of NPB and NPB-Piz-t to isolate KJ201, 93 DEPs between KJ201-Piz-t and KJ201-NPB were identified. DEPs in comparisons KJ201-Piz-t/Mock-Piz-t, RB22-Piz-t/Mock-Piz-t and KJ201-Piz-t/KJ201-NPB contained a number of proteins that may be involved in rice response to pathogens, including pathogenesis-related (PR) proteins, hormonal regulation-related proteins, defense and stress response-related proteins, receptor-like kinase, and cytochrome P450. Comparative analysis further identified 7 common DEPs between the comparisons KJ201-Piz-t/KJ201-NPB and KJ201-Piz-t/RB22-Piz-t, including alcohol dehydrogenase I, receptor-like protein kinase, endochitinase, similar to rubisco large subunit, NADP-dependent malic enzyme, and two hypothetical proteins. Conclusions Our results provide a valuable resource for discovery of complex protein networks involved in the resistance response of rice to blast fungus.
机译:摘要背景稻瘟病(Magnaporthe oryzae引起的)是大米最具破坏性的疾病之一。虽然许多稻瘟病抗性(R)基因已经确定,并部署在水稻品种,鲜为人知的是,R基因介导的防御机制。我们使用了含有抗性基因Piz-T的水稻转基因系来研究R基因介导的抗性对感染的反应。结果采用异甲板(HPI),对PIZ-T转基因Nipponbare系(NPB-PIZ-T)和野生型Nipponbare(NPB)和野生型Nipponbare(NPB)进行了比较蛋白质组分析。对于亲属和绝对量化(ITRAQ)分析。 NPB-PIZ-T对无毒分离kJ201的响应的比较分析及毒力分离RB22鉴定在KJ201接种的NPB-PIZ-T(KJ201-PIZ-T)和模拟处理的NPB之间的114差异表达蛋白(DEPS) -piz-t(模型-piz-t)和118 deps之间的RB22接种的NPB-PIZ-T(RB22-PIZ-T)和模型PIZ-T之间。在DEPS中,56通常发生比较KJ201-PIZ-T /模型-PIZ-T和RB22-PIZ-T / MOCK-PIZ-T。在鉴定KJ201-PIZ-T和KJ201-NPB之间的NPB和NPB-PIZ-T的反应的比较中,鉴定了KJ201-PIZ-T和KJ201-NPB之间的93。比较kj201-piz-t / mock-piz-t和kj201-piz-t / kJ201-npb in in kj201-piz-t / mock-piz-t和kj201-piz-t / kJ201-npb含有许多可能参与对病原体的水稻反应的蛋白质,包括病因相关(PR)蛋白,荷尔蒙调节相关蛋白,防御和应激响应相关蛋白,受体样激酶和细胞色素P450。比较分析进一步鉴定了比较KJ201-PIZ-T / KJ201-NPB和KJ201-PIZ-T / RB22-PIZ-T之间的7个常见DEPS,包括醇脱氢酶I,受体样蛋白激酶,内偶联酶,类似于Rubisco大亚基,NADP依赖性苹果酶和两个假想蛋白质。结论我们的结果为发现涉及水稻耐药性响应的复杂蛋白质网络提供了一种有价值的资源。

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