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A transcriptomic analysis of the effect of genistein on Sinorhizobium fredii HH103 reveals novel rhizobial genes putatively involved in symbiosis

机译:染料木黄酮对弗氏中华根瘤菌HH103的作用的转录组学分析揭示了可能参与共生的新型根瘤菌基因

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摘要

Sinorhizobium fredii HH103 is a rhizobial soybean symbiont that exhibits an extremely broad host-range. Flavonoids exuded by legume roots induce the expression of rhizobial symbiotic genes and activate the bacterial protein NodD, which binds to regulatory DNA sequences called nod boxes (NB). NB drive the expression of genes involved in the production of molecular signals (Nod factors) as well as the transcription of ttsI, whose encoded product binds to tts boxes (TB), inducing the secretion of proteins (effectors) through the type 3 secretion system (T3SS). In this work, a S. fredii HH103 global gene expression analysis in the presence of the flavonoid genistein was carried out, revealing a complex regulatory network. Three groups of genes differentially expressed were identified: i) genes controlled by NB, ii) genes regulated by TB, and iii) genes not preceded by a NB or a TB. Interestingly, we have found differentially expressed genes not previously studied in rhizobia, being some of them not related to Nod factors or the T3SS. Future characterization of these putative symbiotic-related genes could shed light on the understanding of the complex molecular dialogue established between rhizobia and legumes.
机译:费氏中华根瘤菌HH103是一种根瘤菌大豆共生体,具有极宽的宿主范围。豆科植物根系分泌的类黄酮可诱导根瘤菌共生基因的表达并激活细菌蛋白NodD,该蛋白与称为nod box(NB)的调节性DNA序列结合。 NB驱动参与分子信号产生的基因表达(Nod因子)以及ttsI的转录,其编码产物与tts盒(TB)结合,通过3型分泌系统诱导蛋白质(效应子)的分泌(T3SS)。在这项工作中,在类黄酮染料木黄酮存在下进行了弗氏链球菌HH103全局基因表达分析,揭示了一个复杂的调控网络。鉴定了三组差异表达的基因:i)由NB控制的基因,ii)由TB调节的基因,和iii)不在NB或TB之前的基因。有趣的是,我们发现了以前在根瘤菌中没有研究过的差异表达基因,其中一些与Nod因子或T3SS不相关。这些推定的共生相关基因的未来表征可能为了解根瘤菌和豆类之间建立的复杂的分子对话提供了启示。

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