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Arabidopsis nonhost resistance gene PSS1 confers immunity against an oomycete and a fungal pathogen but not a bacterial pathogen that cause diseases in soybean

机译:拟南芥抗性基因PSS1对oomycete和真菌病原体的免疫赋予免疫,但不是一种引起大豆疾病的细菌病原体

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Background Nonhost resistance (NHR) provides immunity to all members of a plant species against all isolates of a microorganism that is pathogenic to other plant species. Three Arabidopsis thaliana PEN (penetration deficient) genes, PEN1, 2 and 3 have been shown to provide NHR against the barley pathogen Blumeria graminis f. sp. hordei at the prehaustorial level. Arabidopsis pen1-1 mutant lacking the PEN1 gene is penetrated by the hemibiotrophic oomycete pathogen Phytophthora sojae, the causal organism of the root and stem rot disease in soybean. We investigated if there is any novel nonhost resistance mechanism in Arabidopsis against the soybean pathogen, P. sojae. Results The P. s ojae s usceptible (pss) 1 mutant was identified by screening a mutant population created in the Arabidopsis pen1-1 mutant that lacks penetration resistance against the non adapted barley biotrophic fungal pathogen, Blumeria graminis f. sp. hordei. Segregation data suggested that PEN1 is not epistatic to PSS1. Responses of pss1 and pen1-1 to P. sojae invasion were distinct and suggest that PSS1 may act at both pre- and post-haustorial levels, while PEN1 acts at the pre-haustorial level against this soybean pathogen. Therefore, PSS1 encodes a new form of nonhost resistance. The pss1 mutant is also infected by the necrotrophic fungal pathogen, Fusarium virguliforme, which causes sudden death syndrome in soybean. Thus, a common NHR mechanism is operative in Arabidopsis against both hemibiotrophic oomycetes and necrotrophic fungal pathogens that are pathogenic to soybean. However, PSS1 does not play any role in immunity against the bacterial pathogen, Pseudomonas syringae pv. glycinea, that causes bacterial blight in soybean. We mapped PSS1 to a region very close to the southern telomere of chromosome 3 that carries no known disease resistance genes. Conclusions The study revealed that Arabidopsis PSS1 is a novel nonhost resistance gene that confers a new form of nonhost resistance against both a hemibiotrophic oomycete pathogen, P. sojae and a necrotrophic fungal pathogen, F. virguliforme that cause diseases in soybean. However, this gene does not play any role in the immunity of Arabidopsis to the bacterial pathogen, P. syringae pv. glycinea, which causes bacterial blight in soybean. Identification and further characterization of the PSS1 gene would provide further insights into a new form of nonhost resistance in Arabidopsis, which could be utilized in improving resistance of soybean to two serious pathogens.
机译:背景技术非形状抗性(NHR)对植物物种的所有成员提供免疫,这对于对其他植物物种的病原体的所有分离物进行植物物种。已经证明了三种拟南芥肉串,PEN1,2和3,为大麦病原体Blumeria Graminis F提供NHR。 sp。 Hordei在Prehaustorial级别。缺乏PEN1基因的拟南芥PEN1-1突变体被血管营养的oomycete病原体植物植物植物植物植物嗜睡,大豆根系和茎腐病的因果生物体。我们调查了拟拟合拟拟合大豆病原体,P. Sojae的任何一种新的非体性抗性机制。结果通过筛选在拟南芥中产生的突变群体缺乏针对未适应的大麦生物养真菌病原体,Blumeria Graminis F,通过筛选突变群体来鉴定P. S Ojae S的方法(PSS)1突变体。 sp。 Hordei。分离数据表明,PEN1不是PSS1的神经性。 PSS1和PEN1-1至P. Sojae侵袭的反应是不同的,表明PSS1可以在预测和后期水平上起作用,而PEN1在对该大豆病原体的预夸张水平上起作用。因此,PSS1编码一种新的非形状电阻形式。 PSS1突变体也受到虚张症真菌病原体,镰刀菌病原体,镰刀菌病病原体,导致大豆猝死综合征。因此,常见的NHR机制在拟南芥中操作针对血管纤维素的核酸菌和病症对大豆病原的病原体。然而,PSS1不会在对细菌病原体,假单胞菌Syringae PV中发挥免疫中的任何作用。甘氨酸,导致大豆细菌枯萎病。我们将PSS1映射到非常靠近染色体3的南端的区域,其携带不具有已知的抗病性基因。结论该研究表明,拟南芥PSS1是一种新的非形状抗性基因,其赋予了对血管营养症病原体,P. sojae和病症的一种新的非形状抗性的非形状抗性。然而,该基因不会在拟南芥对细菌病原体,P.Inringae PV中发挥任何作用。甘氨酸,导致大豆细菌枯萎病。 PSS1基因的鉴定和进一步表征将提供进一步的见解,以拟南芥的新形式的非形状抗性提供进一步的见解,这可以用于改善大豆的抗性至两个严重病原体。

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