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Effector-assisted breeding for bacterial wilt resistance in horticultural crops

机译:园艺作物抗青枯病的效应物辅助育种

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Ralstonia solanacearum (Rso) is a causal agent of bacterial wilt disease in a wide range of horticultural crops. Rso strains are heterogeneous in nature and are therefore difficult in terms of both classification and development of disease resistance. Rso pathogen-associated molecular patterns (PAMPs) and effector proteins are secreted into plant cells, where they respectively activate and suppress plant immunity, thereby affecting Rso virulence. We review the current knowledge of Rso disease resistance and efforts to generate Rso-resistant crop plants. Further, we propose the introduction into plants of known pattern recognition receptors (PRRs) that recognize Rso PAMPs in order to confer resistance to a large number of strains. Additionally, the conserved 'core' effectors from Rso phylotypes could be used to identify and deploy nucleotide-binding leucine-rich repeat (NLR) resistance genes in a desired crop cultivar. We suggest that a phylotype-specific effector-assisted breeding program be instituted to rapidly identify disease resistance genes in available plant germplasm collections. Furthermore, stacking multiple NLRs that recognize Rso effectors would provide durable disease resistance by minimizing the chance for Rso to evade the implemented resistance. Finally, we propose that this strategy would most efficiently be achieved through development of transgenic crop lines.
机译:青枯雷尔氏菌(Rsostonia solanacearum,Rso)是多种园艺作物中细菌性枯萎病的病因。 Rso菌株本质上是异质的,因此就抗病性的分类和发展而言都是困难的。 Rso病原体相关分子模式(PAMPs)和效应蛋白被分泌到植物细胞中,在那里它们分别激活和抑制植物免疫力,从而影响Rso毒力。我们回顾了有关Rso抗病性的当前知识以及产生抗Rso作物的努力。此外,我们提议将已知的模式识别受体(PRR)引入植物中,以识别Rso PAMP,以赋予其对大量菌株的抗性。另外,来自Rso系统型的保守的“核心”效应子可以用于鉴定和部署所需作物品种中的核苷酸结合亮氨酸富集重复(NLR)抗性基因。我们建议建立一种系统型特异性效应子辅助育种程序,以快速鉴定可用植物种质资源中的抗病基因。此外,堆叠多个识别Rso效应子的NLR,可通过最大程度地减少Rso规避已实现的抗药性的机会来提供持久的抗病性。最后,我们建议通过开发转基因作物品系最有效地实现这一策略。

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