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莲 AP2/ERF 家族转录因子在侵染线发育中的功能和进化,该转录因子是侵染线发育所必需的。

Function and evolution of a Lotus japonicus AP2/ERF family transcription factor that is required for development of infection threads.

机构信息

National Institute of Agrobiological Sciences, Tsukuba, Ibaraki 305-8602, Japan.

Division of Symbiotic Systems, National Institute for Basic Biology, National Institute for Natural Sciences, Okazaki 444-8585, Japan.

出版信息

DNA Res. 2017 Apr 1;24(2):193-203. doi: 10.1093/dnares/dsw052.

Abstract

Legume-rhizobium symbiosis is achieved by two major events evolutionarily acquired: root hair infection and organogenesis. Infection thread (IT) development is a distinct element for rhizobial infection. Through ITs, rhizobia are efficiently transported from infection foci on root hairs to dividing meristematic cortical cells. To unveil this process, we performed genetic screening using Lotus japonicus MG-20 and isolated symbiotic mutant lines affecting nodulation, root hair morphology, and IT development. Map-based cloning identified an AP2/ERF transcription factor gene orthologous to Medicago truncatula ERN1. LjERN1 was activated in response to rhizobial infection and depended on CYCLOPS and NSP2. Legumes conserve an ERN1 homolog, ERN2, that functions redundantly with ERN1 in M. truncatula. Phylogenetic analysis showed that the lineages of ERN1 and ERN2 genes originated from a gene duplication event in the common ancestor of legume plants. However, genomic analysis suggested the lack of ERN2 gene in the L. japonicus genome, consistent with Ljern1 mutants exhibited a root hair phenotype that is observed in ern1/ern2 double mutants in M. truncatula. Molecular evolutionary analysis suggested that the nonsynonymous/synonymous rate ratios of legume ERN1 genes was almost identical to that of non-legume plants, whereas the ERN2 genes experienced a relaxed selective constraint.

摘要

豆科植物-根瘤菌共生是通过两个主要的进化获得的事件实现的:根毛感染和器官发生。感染线(IT)的发育是根瘤菌感染的一个明显特征。通过 IT,根瘤菌从根毛上的感染焦点被有效地运输到分裂的分生组织皮层细胞中。为了揭示这个过程,我们使用 Lotus japonicus MG-20 进行了遗传筛选,并分离出影响结瘤、根毛形态和 IT 发育的共生突变体系。基于图谱的克隆鉴定出一个与 Medicago truncatula ERN1 同源的 AP2/ERF 转录因子基因。LjERN1 对根瘤菌感染有反应,并依赖于 CYCLOPS 和 NSP2。豆科植物保守了一个 ERN1 同源物 ERN2,它在 M. truncatula 中与 ERN1 冗余。系统发育分析表明,ERN1 和 ERN2 基因的谱系起源于豆科植物共同祖先中的基因重复事件。然而,基因组分析表明 L. japonicus 基因组中缺乏 ERN2 基因,这与 Ljern1 突变体表现出在 M. truncatula 中的 ern1/ern2 双突变体中观察到的根毛表型一致。分子进化分析表明,豆科植物 ERN1 基因的非同义/同义比率几乎与非豆科植物相同,而 ERN2 基因经历了放松的选择约束。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d622/5397602/0e5f0f8f5549/dsw052f1.jpg

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