Receptor-like leucine-rich repeat kinases of subfamily III are involved in the recognition of Pectobacterium spp. by Solanaceae plants.

IF 0.9 Q3 AGRICULTURE, MULTIDISCIPLINARY
E V Shrub, N V Kalubaka, P V Vychyk, O A Badalyan, Y A Nikolaichik
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引用次数: 0

Abstract

The genomes of Solanaceae plants contain over 600 receptor-like protein kinase genes with leucine-rich repeats (LRR-RLK), many likely associated with pathogen detection, but very few functionally characterized. Pectobacterium spp. are the major bacterial pathogens of agricultural crops, particularly potatoes and other Solanaceae plants. For relevant potato pathogens from the genus Pectobacterium, specific immune receptors have not been described in Solanaceae. However, in Malus × domestica, four LRR-RLK from the LRRIII subfamily (DIPM1-4) have been characterized as receptors for the related pathogen Erwinia amylovora. DIPMs specifically interact with the effector protein DspE and are involved in E. amylovora recognition. Since the DspE ortholog is also the main effector in Pectobacterium spp., we performed a phylogenetic analysis of LRRIII subfamily receptors in the most relevant Solanaceae representatives together with a much better characterized LRR-RLKIII of Arabidopsis thaliana and identified nine clusters of related RLKs. Clustering followed by analysis of published data allowed us to functionally characterize this RLK family and suggest the most likely candidates for checking interactions with the main effector of pectobacteria, DspE. Testing the kinase domains of representative cluster members in a yeast two-hybrid system revealed four Solanaceae RLKs interacting with the DspE effector from Pectobacterium versatile. Virus-induced silencing of these RLK genes demonstrated their involvement in P. versatile recognition. The RLK6 gene from Solanum bulbocastanum, which is not an ortholog of the DIPM proteins in apple, seems to be the most promising potential resistance gene. This work expands our understanding of LRR-RLKIII subfamily RLKs and their role in plant immunity, providing a foundation for future development of disease-resistant Solanaceae varieties.

富含亮氨酸的受体样重复激酶III亚家族参与茄科植物对Pectobacterium spp.的识别。
茄科植物基因组包含600多个富含亮氨酸重复序列(LRR-RLK)的受体样蛋白激酶基因,其中许多可能与病原体检测有关,但很少有功能特征。大肠杆菌是农作物的主要致病菌,尤其是马铃薯和其他茄科植物。对于来自Pectobacterium属的相关马铃薯病原体,在茄科中尚未发现特异性免疫受体。然而,在家蝇中,来自LRRIII亚家族(DIPM1-4)的4个LRR-RLK已被鉴定为相关病原菌淀粉杆菌的受体。dipm特异性地与效应蛋白DspE相互作用,并参与淀粉样芽孢杆菌的识别。由于DspE同源物也是Pectobacterium spp.的主要效应物,我们对大多数相关茄科代表的LRRIII亚家族受体进行了系统发育分析,并对拟南芥的LRR-RLKIII进行了更好的表征,并鉴定了9个相关的RLKs簇。对已发表的数据进行聚类分析,使我们能够对RLK家族进行功能表征,并提出最有可能用于检查与乳酸菌主要效应物DspE相互作用的候选物。通过对酵母双杂交系统中具有代表性的集群成员激酶结构域的检测,发现了4个茄科RLKs与来自Pectobacterium versatile的DspE效应物相互作用。病毒诱导的这些RLK基因的沉默表明它们参与了P.通用识别。与苹果中DIPM蛋白不同源的球castanum RLK6基因似乎是最有希望的潜在抗性基因。本研究扩大了我们对LRR-RLKIII亚家族RLKs及其在植物免疫中的作用的认识,为今后开发茄科抗病品种提供了基础。
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来源期刊
Vavilovskii Zhurnal Genetiki i Selektsii
Vavilovskii Zhurnal Genetiki i Selektsii AGRICULTURE, MULTIDISCIPLINARY-
CiteScore
1.90
自引率
0.00%
发文量
119
审稿时长
8 weeks
期刊介绍: The "Vavilov Journal of genetics and breeding" publishes original research and review articles in all key areas of modern plant, animal and human genetics, genomics, bioinformatics and biotechnology. One of the main objectives of the journal is integration of theoretical and applied research in the field of genetics. Special attention is paid to the most topical areas in modern genetics dealing with global concerns such as food security and human health.
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