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Initiation of arbuscular mycorrhizal symbiosis involves a novel pathway independent from hyphal branching

机译:丛枝菌根共生的启动涉及一种独立于悬垂分支的新途径

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摘要

The arbuscular mycorrhizal symbiosis is a very common association between plant roots and soil fungi, which greatly contributes to plant nutrition. Root-exuded compounds known as strigolactones act as symbiotic signals stimulating the fungus prior to root colonization. Strigolactones also play an endogenous role in planta as phytohormones and contribute to the regulation of various developmental traits. Structure-activity relationship studies have revealed both similarities and differences between the structural features required for bioactivity in plants and arbuscular mycorrhizal fungi. In the latter case, bioassays usually measured a stimulation of hyphal branching on isolated fungi of the Gigaspora genus, grown in vitro. Here, we extended these investigations with a bioassay that evaluates the bioactivity of strigolactone analogs in a symbiotic situation and the use of the model mycorrhizal fungus Rhizophagus irregularis. Some general structural requirements for bioactivity reported previously for Gigaspora were confirmed. We also tested additional strigolactone analogs bearing modifications on the conserved methylbutenolide ring, a key element of strigolactone perception by plants. A strigolactone analog with an unmethylated butenolide ring could enhance the ability of R. irregularis to colonize host roots. Surprisingly, when applied to the isolated fungus in vitro, this compound stimulated germ tube elongation but inhibited hyphal branching. Therefore, this compound was able to act on the fungal and/or plant partner to facilitate initiation of the arbuscular mycorrhizal symbiosis, independently from hyphal branching and possibly from the strigolactone pathway.
机译:丛枝菌根共生是植物根部和土壤真菌之间的一个非常常见的关联,这极大地有助于植物营养。被称为胞嘧啶的根出渗出的化合物作为在根部定植之前刺激真菌的共生信号。 Strigolactones也在Planta中作为植物激素在植物中发挥内源性作用,并有助于调节各种发育性状。结构 - 活性关系研究揭示了植物中生物活性所需的结构特征与丛枝菌根真菌所需的相似性和差异。在后一种情况下,生物测定通常测量刺激杂志属植物属植物的孤立的真菌,体外生长的刺激。在这里,我们将这些调查扩展了与生物测定的生物测定,评估了杂皮内酯类似物在共生状况的生物活性和模型菌根真菌菌株的使用。确认了千岁针对性报道的生物活性的一些一般结构要求。我们还测试了在保守的甲基丁烯酚环上进行了额外的杂酮类似物轴承修饰,是植物植物滴水酮感知的关键因素。具有未甲基化丁醇环醇环的杂芳酮类似物可以增强R. Ifregularis对殖民宿主根的能力。令人惊讶的是,当在体外施加到分离的真菌时,该化合物刺激了胚管伸长率但抑制亚酚枝。因此,该化合物能够对真菌和/或植物合作伙伴作用,以促进丛枝菌根共生的开始,独立于悬垂分枝,可能来自杂酮途径。

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  • 来源
    《Mycorrhiza》 |2020年第4期|共11页
  • 作者单位

    Univ Toulouse CNRS UPS Lab Rech Sci Vegetales 24 Chemin Borde Rouge F-31320 Castanet Tolosan France;

    Univ Toulouse CNRS UPS Lab Rech Sci Vegetales 24 Chemin Borde Rouge F-31320 Castanet Tolosan France;

    Univ Toulouse CNRS UPS Lab Rech Sci Vegetales 24 Chemin Borde Rouge F-31320 Castanet Tolosan France;

    Univ Toulouse CNRS UPS Lab Rech Sci Vegetales 24 Chemin Borde Rouge F-31320 Castanet Tolosan France;

    Univ Paris Saclay CNRS Inst Chim Subst Nat UPR 2301 F-91198 Gif Sur Yvette France;

    Univ Paris Saclay CNRS Inst Chim Subst Nat UPR 2301 F-91198 Gif Sur Yvette France;

    Univ Toulouse CNRS UPS Lab Rech Sci Vegetales 24 Chemin Borde Rouge F-31320 Castanet Tolosan France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 真菌门;
  • 关键词

    Arbuscular mycorrhiza; Strigolactone; Symbiosis; Rhizophagus; Signalling;

    机译:丛枝菌根;杂霉素;共生;根茎;发信号;

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