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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >RNA sequencing and analysis of three Lupinus nodulomes provide new insights into specific host-symbiont relationships with compatible and incompatible Bradyrhizobium strains
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RNA sequencing and analysis of three Lupinus nodulomes provide new insights into specific host-symbiont relationships with compatible and incompatible Bradyrhizobium strains

机译:三个卢比核桃瘤的RNA测序和分析为具有兼容和不相容的Bradyrhizobium菌株的特定宿主共生关系提供了新的见解

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Nitrogen fixation in the legume root-nodule symbiosis has a critical importance in natural and agricultural ecosystems and depends on the proper choice of the symbiotic partners. However, the genetic determinism of symbiotic specificity remains unclear. To study this process, we inoculated three Lupinus species (L. albus, L. luteus, L. mariae-josephae), belonging to the under-investigated tribe of Genistoids, with two Bradyrhizobium strains (B. japonicum, B. valentinum) presenting contrasted degrees of symbiotic specificity depending on the host. We produced the first transcriptomes (RNA-Seq) from lupine nodules in a context of symbiotic specificity. For each lupine species, we compared gene expression between functional and non-functional interactions and determined differentially expressed (DE) genes. This revealed that L. luteus and L. mariae-josephae (nodulated by only one of the Bradyrhizobium strains) specific nodulomes were richest in DE genes than L. albus (nodulation with both microsymbionts, but non-functional with B. valentinum) and share a higher number of these genes between them than with L. albus. In addition, a functional analysis of DE genes highlighted the central role of the genetic pathways controlling infection and nodule organogenesis, hormones, secondary, carbon and nitrogen metabolisms, as well as the implication of plant defence in response to compatible or incompatible Bradyrhizobium strains.
机译:Nitrogen fixation in the legume root-nodule symbiosis has a critical importance in natural and agricultural ecosystems and depends on the proper choice of the symbiotic partners.然而,共生特异性的遗传确定主义仍然尚不清楚。为了研究这一过程,我们接种了三种羽扇豆类(L.Bluus,L. liTeus,L. Mariae -Josephae),属于受调查的Genistoids部落,具有两个Bradyrhizobium菌株(B.Paponicum,B.Valentinum)呈现根据宿主对比的共生特异性。在共生特异性的背景下,我们从羽扇豆结节中产生了第一转映om(RNA-SEQ)。对于每个羽扇豆种,我们将基因表达与功能性和非功能性相互作用之间的基因表达进行了比较并确定差异表达(DE)基因。这揭示了L. Luteus和L.Mariae-Josephae(仅由Bradyrhizobium菌株的一个染色)特异性结核剂比L. Albus(与微生物的染色,但与B. Valentinum的非功能性)和非功能性)和分享它们之间的数量越多于它们之间的基因而不是L. Albus。此外,DE基因的功能分析强调了控制感染和结节器官组织,激素,继发性,碳和氮代谢的遗传途径的核心作用以及植物防御对兼容性或不相容的Bradyrohizobium菌株的影响。

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