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ERN1对早期根瘤菌感染期间基因表达的影响 。 你提供的原文似乎不完整,句末的“in.”后面应该还有具体内容。

The effects of ERN1 on gene expression during early rhizobial infection in .

作者信息

Liu Meng, Kameoka Hiromu, Oda Akiko, Maeda Taro, Goto Takashi, Yano Koji, Soyano Takashi, Kawaguchi Masayoshi

机构信息

Division of Symbiotic Systems, National Institute for Basic Biology, Okazaki, Aichi, Japan.

Department of Basic Biology, School of Life Science, SOKENDAI (The Graduate University for Advanced Studies), Okazaki, Aichi, Japan.

出版信息

Front Plant Sci. 2023 Jan 17;13:995589. doi: 10.3389/fpls.2022.995589. eCollection 2022.

Abstract

Legumes develop root nodules in association with compatible rhizobia to overcome nitrogen deficiency. Rhizobia enter the host legume, mainly through infection threads, and induce nodule primordium formation in the root cortex. Multiple transcription factors have been identified to be involved in the regulation of the establishment of root nodule symbiosis, including ERF Required for Nodulation1 (ERN1). ERN1 is involved in a transcription network with CYCLOPS and NODULE INCEPTION (NIN). Mutation of ERN1 often results in misshapen root hair tips, deficient infection thread formation, and immature root nodules. ERN1 directly activates the expression of in to assist cell wall remodeling and in to distinguish rhizobial exopolysaccharide signals. However, aside from these two genes, it remains unclear which genes are regulated by LjERN1 or what role LjERN1 plays during root nodule symbiosis. Thus, we conducted RNA sequencing to compare the gene expression profiles of wild-type and mutants. In total, 234 differentially expressed genes were identified as candidate LjERN1 target genes. These genes were found to be associated with cell wall remodeling, signal transduction, phytohormone metabolism, and transcription regulation, suggesting that LjERN1 is involved in multiple processes during the early stages of the establishment of root nodule symbiosis. Many of these candidate genes including showed decreased expression levels in mutants based on a search of a public database, suggesting that LjERN1 and LjNIN coordinately regulate gene expression. Our data extend the current understanding of the pleiotropic role of LjERN1 in root nodule symbiosis.

摘要

豆科植物与相容的根瘤菌共生形成根瘤,以克服氮素缺乏。根瘤菌主要通过感染丝进入宿主豆科植物,并诱导根皮层中根瘤原基的形成。已鉴定出多种转录因子参与根瘤共生建立的调控,包括结瘤所需的ERF1(ERN1)。ERN1参与了与CYCLOPS和结瘤起始(NIN)的转录网络。ERN1突变通常会导致根毛尖端畸形、感染丝形成不足和根瘤不成熟。ERN1直接激活IN中的表达以协助细胞壁重塑,并激活IN中的表达以区分根瘤菌胞外多糖信号。然而,除了这两个基因外,尚不清楚哪些基因受LjERN1调控,也不清楚LjERN1在根瘤共生过程中发挥什么作用。因此,我们进行了RNA测序,以比较野生型和突变体的基因表达谱。总共鉴定出234个差异表达基因作为候选LjERN1靶基因。这些基因被发现与细胞壁重塑、信号转导、植物激素代谢和转录调控相关,表明LjERN1在根瘤共生建立的早期阶段参与多个过程。基于对公共数据库的搜索,包括在内的许多这些候选基因在突变体中的表达水平降低,表明LjERN1和LjNIN协同调节基因表达。我们的数据扩展了目前对LjERN1在根瘤共生中多效性作用的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1b8/9888413/1bf5b64b64bd/fpls-13-995589-g001.jpg

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