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Gene Expression in Wheat Induced by Inoculation with Puccinia striiformis West

机译:小麦条锈菌接种诱导小麦中的基因表达

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Stripe rust, caused by Puccinia striiformis f. sp. tritici (Pst), is a destructive disease of wheat (Triticum aestivum L.) worldwide. A suppression subtractive hybridization (SSH) cDNA library was constructed from Pst-infected seedling leaves of an immune resistant germplasm Shaanmai 139. A total of 84 expressed sequence tags with high quality were obtained and alignment of the sequences identified in 56 Unigenes. Blast EST analysis of these Pst-induced genes showed that they were mostly homologous to genes that are induced by cold or heat stress. BlastX searches identified 45 of the Unigenes as similar to those encoding proteins of known function (e value < 1.00E-5), and eight of unknown function. The genes of known function include those with potential biological roles in signal transmission, energy and metabolism, transcription regulation, phenylpropanoid pathway, and defense response. Semi-quantitative reverse transcription-polymerase chain reaction studies confirmed that some of the cDNAs genes were differentially expressed in Pst-infected plants, with 24 and 72 hpi as the two critical time points for the induction of these genes by inoculation with P. striiformis West race CY32 in wheat. Bimodal patterns were presented in Pst-induced genes, such as senescence-associated genes, omega-6 fatty acid desaturase, and acyl-CoA synthetase. This suggests complex patterns of defense-related gene expression in multi-resistance gene cultivars in response to stripe rust infection.
机译:条锈菌引起的条锈病f。 sp。小麦(Pst)是世界范围内的小麦(Triticum aestivum L.)的毁灭性疾病。从Pst感染的抗性种质Shaanmai 139的幼苗叶片中构建了抑制消减杂交(SSH)cDNA文库。获得了总共84个高质量的表达序列标签,并比对了56个Unigenes中鉴定的序列。这些Pst诱导的基因的Blast EST分析表明,它们与冷或热胁迫诱导的基因大多同源。 BlastX搜索确定了与编码已知功能(e值<1.00E-5)的蛋白质和八个未知功能的蛋白质相似的Unigene中的45个。已知功能的基因包括在信号传递,能量和代谢,转录调节,苯丙氨酸途径和防御反应中具有潜在生物学作用的基因。半定量逆转录-聚合酶链反应研究证实,某些cDNA基因在受Pst感染的植物中差异表达,其中24和72 hpi是通过接种条纹线虫W​​est诱导这些基因的两个关键时间点小麦中的CY32种族。在Pst诱导的基因中出现了双峰模式,例如衰老相关基因,ω-6脂肪酸去饱和酶和酰基辅酶A合成酶。这表明响应条锈病感染的多抗性基因品种中防御相关基因表达的复杂模式。

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