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Jasmonate and ethylene dependent defence gene expression and suppression of fungal virulence factors: two essential mechanisms of Fusarium head blight resistance in wheat?

机译:茉莉酸和乙烯依赖性防御基因的表达和真菌毒力因子的抑制:小麦镰刀菌抗白叶枯病的两个基本机制?

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Background Fusarium head blight (FHB) caused by Fusarium species like F. graminearum is a devastating disease of wheat (Triticum aestivum) worldwide. Mycotoxins such as deoxynivalenol produced by the fungus affect plant and animal health, and cause significant reductions of grain yield and quality. Resistant varieties are the only effective way to control this disease, but the molecular events leading to FHB resistance are still poorly understood. Transcriptional profiling was conducted for the winter wheat cultivars Dream (moderately resistant) and Lynx (susceptible). The gene expressions at 32 and 72?h after inoculation with Fusarium were used to trace possible defence mechanisms and associated genes. A comparative qPCR was carried out for selected genes to analyse the respective expression patterns in the resistant cultivars Dream and Sumai 3 (Chinese spring wheat). Results Among 2,169 differentially expressed genes, two putative main defence mechanisms were found in the FHB-resistant Dream cultivar. Both are defined base on their specific mode of resistance. A non-specific mechanism was based on several defence genes probably induced by jasmonate and ethylene signalling, including lipid-transfer protein, thionin, defensin and GDSL-like lipase genes. Additionally, defence-related genes encoding jasmonate-regulated proteins were up-regulated in response to FHB. Another mechanism based on the targeted suppression of essential Fusarium virulence factors comprising proteases and mycotoxins was found to be an essential, induced defence of general relevance in wheat. Moreover, similar inductions upon fungal infection were frequently observed among FHB-responsive genes of both mechanisms in the cultivars Dream and Sumai 3. Conclusions Especially ABC transporter, UDP-glucosyltransferase, protease and protease inhibitor genes associated with the defence mechanism against fungal virulence factors are apparently active in different resistant genetic backgrounds, according to reports on other wheat cultivars and barley. This was further supported in our qPCR experiments on seven genes originating from this mechanism which revealed similar activities in the resistant cultivars Dream and Sumai 3. Finally, the combination of early-stage and steady-state induction was associated with resistance, while transcript induction generally occurred later and temporarily in the susceptible cultivars. The respective mechanisms are attractive for advanced studies aiming at new resistance and toxin management strategies.
机译:背景技术由镰刀菌(F. graminearum)等镰刀菌引起的镰刀菌病(Fusarium head Blight,FHB)是世界范围内的毁灭性小麦(Triticum aestivum)病。真菌产生的霉菌毒素(例如脱氧雪腐酚)会影响植物和动物的健康,并导致谷物产量和品质显着下降。抗性品种是控制该病的唯一有效方法,但导致FHB抗性的分子事件仍知之甚少。对冬小麦品种Dream(中等抗性)和Lynx(易感)进行转录谱分析。接种镰刀菌后32和72小时的基因表达被用来追踪可能的防御机制和相关基因。对选定的基因进行了比较qPCR,以分析抗性品种Dream和Sumai 3(中国春小麦)中各自的表达模式。结果在2169个差异表达基因中,耐FHB的Dream品种发现了两个主要的防御机制。两者均基于其特定的抗性模式进行定义。一种非特异性机制是基于可能由茉莉酸酯和乙烯信号传导诱导的几种防御基因,包括脂质转移蛋白,硫蛋白,防御素和GDSL样脂肪酶基因。另外,响应于FHB,编码茉莉酸酯调节蛋白的防御相关基因被上调。已发现基于靶向抑制包括蛋白酶和霉菌毒素在内的必需镰刀菌毒力因子的另一种机制是小麦普遍相关性的必要诱导诱导防御。此外,在Dream和Sumai 3的两个机制的FHB应答基因中,也经常观察到类似的真菌感染诱导。结论特别是与真菌毒力因子防御机制相关的ABC转运蛋白,UDP-葡糖基转移酶,蛋白酶和蛋白酶抑制剂基因是根据其他小麦品种和大麦的报道,它们显然在不同的抗性遗传背景中具有活性。我们的qPCR实验进一步支持了这一机制的七个基因,这些基因揭示了抗病品种Dream和Sumai 3中的相似活性。最后,早期诱导和稳态诱导相结合与抗性相关,而转录本诱导通常发生在以后,暂时在易感品种中。各自的机制对于针对新的耐药性和毒素管理策略的高级研究具有吸引力。

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