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首页> 外文期刊>Molecular Plant-Microbe Interactions >Development of a Host-Induced RNAi System in the Wheat Stripe Rust Fungus Puccinia striiformis f. sp. tritici
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Development of a Host-Induced RNAi System in the Wheat Stripe Rust Fungus Puccinia striiformis f. sp. tritici

机译:小麦条纹锈菌Puccinia striiformis中宿主诱导RNAi系统的开发。 sp。小麦

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Rust fungi cause devastating diseases of wheat and other cereal species globally. Genetic resistance is the preferred method to control rusts but the effectiveness of race-specific resistance is typically transient due to the genetic plasticity of rust populations. The advent of RNA interference (RNAi) technology has shown promise for the engineering of resistance to some biotrophic pathogens in plants by altering the expression of essential pathogens' genes. Gene fragments from the rust fungi Puccinia striiformis f. sp. tritici or P. graminis f. sp. tritici were delivered to plant cells through the Barley stripe mosaic virus system, and some reduced the expression of the corresponding genes in the rust fungus. The ability to detect suppression was associated with the expression patterns of the fungal genes because reduction was only detected in transcripts with relatively high levels of expression in fungal haustoria. The results indicate that an in planta RNAi approach can be used in functional genomics research for rust fungi and that it could potentially be used to engineer durable resistance.
机译:锈菌在全球范围内引起小麦和其他谷物物种的毁灭性疾病。遗传抗性是控制锈病的首选方法,但由于锈菌种群的遗传可塑性,种族特异性抗性的有效性通常是短暂的。 RNA干扰(RNAi)技术的出现表明,通过改变必需病原体基因的表达,有望对植物中某些生物营养性病原体产生抗性。锈菌Puccinia striiformis f。的基因片段。 sp。小麦或小麦sp。小麦通过大麦条纹花叶病毒系统被传递到植物细胞中,其中一些降低了锈菌中相应基因的表达。检测抑制的能力与真菌基因的表达模式有关,因为仅在真菌菌丝体中具有相对高水平表达的转录物中检测到了减少。结果表明,植物内RNAi方法可用于防锈真菌的功能基因组学研究,并可潜在地用于构建持久的抗性。

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