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Wild barley accumulates distinct sets of transcripts in response to pathogens of different trophic lifestyles

机译:大麦积累不同的转录本,以应对不同营养生活方式的病原体

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Wild barley (Hordeum vulgare subsp. spontaneum) accession 'Shechem 12-32' is resistant to multiple pathogens, including Puccinia hordei and Cochliobolus sativus, causal agents of leaf rust and spot blotch, respectively. Both pathogens begin the infection process as biotrophs, but C. sativus switches to necrotrophism after colonization. It is generally considered that plants require distinct arsenals of genes to successfully respond to either biotrophic or necrotrophic pathogens. To characterize the defense responses initiated by resistant wild barley accession 'Shechem', a temporal survey of transcript abundance after inoculation with P. hordei and C. sativus was conducted using the Barley1 GeneChip. A total of 95 and 299 gene transcripts exhibited significant (p < 0.0001) differential accumulation in response to P. hordei and C. sativus, respectively, compared to mock-inoculated controls, with 21 transcripts (6 defense-related) in common. Quantities of differentially accumulated gene transcripts in response to P. hordei were evenly distributed across examined time points, while over one-half (183) of the differentially accumulating gene transcripts in response to C. sativus were identified at 24 h after infection, the approximate time when the pathogen changes trophic lifestyles. Our results indicate that resistant wild barley exhibits a different host response to biotrophic and hemibiotrophic pathogens, with genes related to oxidative stress having a particularly important role in defense against hemibiotrophs.
机译:野生大麦(Hordeum vulgare subsp。spontaneum)的登录号'Shechem 12-32'对多种病原体具有抗性,其中包括大果楠(Puccinia hordei)和sa菜(Cochliobolus sativus),叶锈病的病原体和斑点斑点。两种病原体都以生物营养体的形式开始感染过程,但定殖后梭状芽胞杆菌转变为坏死性营养。通常认为植物需要不同的基因库才能成功地对生物营养性或坏死性病原体做出反应。为了表征由抗性野生大麦种质“ Shechem”引发的防御反应,使用Barley1基因芯片对大麦假单胞菌和番茄假单胞菌接种后的转录本丰度进行了时间调查。与模拟接种的对照相比,分别有95和299个基因转录本分别对大麦假单胞菌和番茄假单胞菌表现出显着的(p <0.0001)差异积累,共有21个转录本(6个与防御相关)。响应于霍尔迪氏菌的差异积累基因转录物的数量均匀地分布在检查的时间点上,而在感染后24 h,鉴定出响应半胱氨酸梭菌的差异积累基因转录物的一半(183)以上。病原体改变营养生活方式的时间。我们的结果表明,抗性野生大麦对生物营养和半营养病原体表现出不同的宿主反应,与氧化应激相关的基因在防御半营养动物中具有特别重要的作用。

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