RNA-seq Gene Profiling Reveals Transcriptional Changes in the Late Phase during Compatible Interaction between a Korean Soybean Cultivar (Glycine max cv. Kwangan) and Pseudomonas syringae pv. syringae B728a.

IF 1.8 3区 农林科学 Q2 PLANT SCIENCES Plant Pathology Journal Pub Date : 2022-12-01 DOI:10.5423/PPJ.OA.08.2022.0118
Myoungsub Kim, Dohui Lee, Hyun Suk Cho, Young-Soo Chung, Hee Jin Park, Ho Won Jung
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Abstract

Soybean (Glycine max (L) Merr.) provides plant-derived proteins, soy vegetable oils, and various beneficial metabolites to humans and livestock. The importance of soybean is highly underlined, especially when carbon-negative sustainable agriculture is noticeable. However, many diseases by pests and pathogens threaten sustainable soybean production. Therefore, understanding molecular interaction between diverse cultivated varieties and pathogens is essential to developing disease-resistant soybean plants. Here, we established a pathosystem of the Korean domestic cultivar Kwangan against Pseudomonas syringae pv. syringae B728a. This bacterial strain caused apparent disease symptoms and grew well in trifoliate leaves of soybean plants. To examine the disease susceptibility of the cultivar, we analyzed transcriptional changes in soybean leaves on day 5 after P. syringae pv. syringae B728a infection. About 8,900 and 7,780 differentially expressed genes (DEGs) were identified in this study, and significant proportions of DEGs were engaged in various primary and secondary metabolisms. On the other hand, soybean orthologs to well-known plant immune-related genes, especially in plant hormone signal transduction, mitogen-activated protein kinase signaling, and plant-pathogen interaction, were mainly reduced in transcript levels at 5 days post inoculation. These findings present the feature of the compatible interaction between cultivar Kwangan and P. syringae pv. syringae B728a, as a hemibiotroph, at the late infection phase. Collectively, we propose that P. syringae pv. syringae B728a successfully inhibits plant immune response in susceptible plants and deregulates host metabolic processes for their colonization and proliferation, whereas host plants employ diverse metabolites to protect themselves against infection with the hemibiotrophic pathogen at the late infection phase.

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RNA-seq基因图谱揭示韩国大豆品种(Glycine max cv)亲和互作后期转录变化。)和丁香假单胞菌。两B728a。
大豆(Glycine max (L) Merr.)为人类和牲畜提供植物来源的蛋白质、大豆油和各种有益的代谢物。大豆的重要性得到了高度强调,特别是在碳负可持续农业引人注目的情况下。然而,许多病虫害威胁着大豆的可持续生产。因此,了解不同栽培品种与病原菌之间的分子相互作用对培育抗病大豆具有重要意义。本文建立了韩国国产栽培品种光安对丁香假单胞菌的病原学体系。两B728a。该菌株在大豆三叶中生长良好,病征明显。为了研究该品种的疾病易感性,我们分析了紫丁香疫病后第5天大豆叶片的转录变化。丁香B728a感染。本研究共鉴定出8900个和7780个差异表达基因(differential expression genes, deg),其中相当大比例的差异表达基因参与了各种初级和次级代谢。另一方面,大豆与已知植物免疫相关基因的同源基因,特别是植物激素信号转导、丝裂原激活蛋白激酶信号转导和植物与病原体相互作用的同源基因,在接种后5 d的转录水平主要降低。这些结果显示了广安与丁香的亲和互作特征。在感染后期,syringae B728a作为半营养菌。综上所述,我们认为丁香P. pv。syringae B728a成功地抑制了易感植物的植物免疫反应,并解除了寄主的代谢过程,使其定植和增殖,而寄主植物在感染后期利用多种代谢物保护自己免受半生物营养病原体的感染。
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来源期刊
Plant Pathology Journal
Plant Pathology Journal 生物-植物科学
CiteScore
4.90
自引率
4.30%
发文量
71
审稿时长
12 months
期刊介绍: Information not localized
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