Overexpression of the MtCLE35 gene in transgenic Medicago truncatula plants inhibits nodulation at early stages of symbiosis development

Q3 Agricultural and Biological Sciences Ecological genetics Pub Date : 2023-12-04 DOI:10.17816/ecogen568451
M. Lebedeva, D. A. Dobychkina, Lilia A. Kochetkova, Lyudmila A. Lutova
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Abstract

CLE (CLAVATA3/ENDOSPERM SURROUNDING REGION-related) peptides are known as systemic regulators of legume-rhizobium symbiosis that negatively control the number of nitrogen-fixing nodules. These regulatory peptides are produced in the root in response to inoculation with rhizobia, and are transported through the xylem to the shoot, where they are recognized by their receptor, CLV1-like (CLAVATA1-like) kinase, active in leaf phloem cells. After that, a shoot-derived signaling pathway is activated that inhibits subsequent nodule development in the root. Previously, we found that in Medicago truncatula, the expression of the MtCLE35 gene is activated in response to rhizobia and nitrate treatment, and its overexpression systemically inhibits nodulation. However, little is known about the downstream target genes regulated by a MtCLE35 signaling pathway in the root. Moreover, it is not completely clear which stage of symbiosis development is affected by MtCLE35-activated pathway. In order to identify genes regulated by the MtCLE35-induced signaling pathway, we performed a transcriptomic analysis of the roots overexpressing the MtCLE35 gene. Totally, 1122 genes were found to be differentially expressed between MtCLE35-overexpressing and control roots after rhizobial inoculation, among them 185 genes were upregulated and 937 genes were downregulated. Among downregulated genes, many known regulators of legume-rhizobia symbiosis were found. In addition to this, we analyze early steps of interaction between M. truncatula overexpressing the MtCLE35 gene and Sinorhizobium meliloti labeled with fluorescent reporter. We did not observe penetration of S. meliloti into host plant roots with MtCLE35 overexpression. Our data suggest that overexpression of the MtCLE35 gene inhibits nodulation at the very early stages of symbiosis development.
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在转基因麦迪逊植物中过表达 MtCLE35 基因会抑制共生发展早期阶段的点头作用
CLE (CLAVATA3/胚乳周围区域相关)肽被认为是豆科植物与根瘤菌共生的系统性调节因子,负向控制固氮根瘤的数量。这些调节肽在根瘤菌接种后产生,并通过木质部运输到茎部,在茎部被它们的受体clv1样(clavata1样)激酶识别,clv1样激酶在叶韧皮部细胞中活跃。在此之后,一个源于茎的信号通路被激活,抑制根系中随后的根瘤发育。在此之前,我们发现在长尾紫花苜蓿中,MtCLE35基因的表达在根瘤菌和硝酸盐处理下被激活,其过表达会系统性地抑制结瘤。然而,对根中MtCLE35信号通路调控的下游靶基因知之甚少。此外,目前还不完全清楚mtcle35激活途径影响共生发展的哪个阶段。为了鉴定受MtCLE35诱导的信号通路调控的基因,我们对过表达MtCLE35基因的根进行了转录组学分析。接种根瘤菌后,共发现1122个基因在mtcle35过表达根与对照根之间存在差异表达,其中185个基因表达上调,937个基因表达下调。在下调的基因中,发现了许多已知的豆科植物与根瘤菌共生的调节基因。此外,我们分析了过表达MtCLE35基因的M. truncatula与荧光报告标记的Sinorhizobium meliloti相互作用的早期步骤。我们没有观察到MtCLE35过表达的黑麦草进入寄主植物根系。我们的数据表明,MtCLE35基因的过表达在共生发展的早期阶段抑制结瘤。
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来源期刊
Ecological genetics
Ecological genetics Environmental Science-Ecology
CiteScore
0.90
自引率
0.00%
发文量
22
期刊介绍: The journal Ecological genetics is an international journal which accepts for consideration original manuscripts that reflect the results of field and experimental studies, and fundamental research of broad conceptual and/or comparative context corresponding to the profile of the Journal. Once a year, the editorial Board reviews and, if necessary, corrects the rules for authors and the journal rubrics.
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