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首页> 外文期刊>Plant Cell Reports >The wheat multidomain cystatin TaMDC1 displays antifungal, antibacterial, and insecticidal activities in planta
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The wheat multidomain cystatin TaMDC1 displays antifungal, antibacterial, and insecticidal activities in planta

机译:小麦多麦田胱抑素Tamdc1在植物中显示抗真菌,抗菌和杀虫活性

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Cystatins are the polypeptides with cysteine proteinase inhibitory activities. Plant cystatins or phytocystatins are known to contribute to plant resistance against insect pests. Recently, increasing data proved that some of the phytocystatins also have antifungal activities in vitro. Here, we functionally characterized a wheat multidomain cystatin, TaMDC1, using in planta assays. Expression of TaMDC1 in wheat seedlings is up-regulated in response to methyl jasmonate and salicylic acid, indicating that TaMDC1 is involved in biotic stress responses mediated by these plant hormones. The TaMDC1 cDNA was integrated in tomato genome and expressed under cauliflower mosaic virus 35S promoter. Four transgenic plants that show high level of the transgene expression were selected by RNA gel blot and immunoblot analysis and utilized to assess biotic stress resistance against the bacterial pathogen Pseudomonas syringae, the fungal pathogens Botrytis cinerea and Alternaria alternata, and the insect pest Colorado potato beetle (CPB, Leptinotarsa decemlineata). Detached leaf inoculation assays revealed that the tomato plants expressing TaMDC1 showed high levels of resistance against P. syringae and A. alternata, and elevated tolerance against B. cinerea. Sustenance of L. decemlineata larvae to the transgenic plants demonstrated inhibition of CPB larvae growth. Inhibitory activity of TaMDC1 against selected pathogens was also demonstrated by in vitro assays with total protein extracted from transgenic tomato plants. Taken together, the presented data suggest that TaMDC1 is involved in a broad spectrum biotic stress resistance in planta.
机译:胱抑素是具有半胱氨酸蛋白酶抑制活性的多肽。已知植物胱抑素或植物胱抑素有助于促进抗害虫的抗性。最近,提高数据证明了一些植物卵司还具有体外抗真菌活性。在这里,我们在用植物测定中使用在植物测定中的小麦多族胱汀蛋白质Tamdc1。在小麦幼苗中的表达响应于茉莉酸甲酯和水杨酸而上调,表明TAMDC1参与了这些植物激素介导的生物应激响应。 Tamdc1 cDNA综合在番茄基因组中,并在花椰菜马赛克病毒35s启动子下表达。通过RNA凝胶印迹和免疫印迹分析选择具有高水平的转基因表达的四种转基因植物,并利用针对细菌病原体假鼠霉素的生物应激抗性,真菌病原体Botrytis Cinerea和Alternaria Orternata,以及昆虫害虫Colorado土豆甲虫(CPB,Leptinotarsa decemlineata)。分离的叶片接种测定显示,表达TAMDC1的番茄植物显示出高水平的抗性抗性耐含量和A.替代品,并升高对B. cinerea的耐受性。 L. Decemlineata幼虫的寄托对转基因植物表明CPB幼虫生长的抑制。还通过从转基因番茄植物中提取的总蛋白质的体外测定来证明TAMDC1对选定病原体的抑制活性。所呈演的数据表明,Tamdc1参与了Planta中的广谱生物胁迫性。

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