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共生菌根真菌产生的生长素的功能分析。

Functional analysis of auxin derived from a symbiotic mycobiont.

作者信息

Chen Cheng-Yen, Selvaraj Poonguzhali, Naqvi Naweed I

机构信息

Fungal Patho-Biology, Temasek Life Sciences Laboratory, Singapore, Singapore.

Department of Biological Sciences, National University of Singapore, Singapore, Singapore.

出版信息

Front Plant Sci. 2023 Sep 8;14:1216680. doi: 10.3389/fpls.2023.1216680. eCollection 2023.

Abstract

The biosynthesis of auxin or indole-3-acetic acid by microorganisms has a major impact on plant-microbe interactions. Several beneficial microbiota are known to produce auxin, which largely influences root development and growth in the host plants. Akin to findings in rhizobacteria, recent studies have confirmed the production of auxin by plant growth-promoting fungi too. Here, we show that isolate B9 produces auxin as deduced by liquid chromatography tandem-mass spectrometry analysis. Such fungal auxin is secreted and contributes directly to enhanced root and shoot development and overall plant growth in . Furthermore, auxin production by likely involves more than one tryptophan-dependent pathway. Using auxin biosynthesis inhibitor L-Kynurenine, we show that the indole-3-pyruvate pathway might be one of the key biosynthetic routes involved in such auxin production. Confocal microscopy of the Arabidopsis reporter line helped demonstrate that B9-derived auxin is biologically active and is able to significantly enhance auxin signaling in roots during such improved root growth and plant development. Furthermore, the phenotypic growth defects arising from impaired auxin signaling in Arabidopsis mutant or upon L-Kynurenine treatment of wild-type Arabidopsis seedlings could be significantly alleviated by fungus B9-derived auxin, thus suggesting its positive role in plant growth promotion. Collectively, our results provide clear evidence that the production of auxin is one of the main mechanisms involved in induction of the beneficial plant growth by

摘要

微生物合成生长素或吲哚 - 3 - 乙酸对植物 - 微生物相互作用具有重大影响。已知几种有益的微生物群体会产生生长素,这在很大程度上影响宿主植物的根系发育和生长。与根际细菌的研究结果类似,最近的研究也证实了促进植物生长的真菌也能产生生长素。在这里,我们通过液相色谱串联质谱分析表明,分离株B9能产生生长素。这种真菌生长素会分泌出来,并直接促进根和芽的发育以及整体植物生长。此外, 产生生长素可能涉及不止一条色氨酸依赖途径。使用生长素生物合成抑制剂L - 犬尿氨酸,我们表明吲哚 - 3 - 丙酮酸途径可能是参与这种生长素产生的关键生物合成途径之一。对拟南芥报告株系进行共聚焦显微镜观察,有助于证明来自B9的生长素具有生物活性,并且在这种改善的根系生长和植物发育过程中能够显著增强根中的生长素信号传导。此外,拟南芥突变体中生长素信号受损或野生型拟南芥幼苗经L - 犬尿氨酸处理后出现的表型生长缺陷,可被真菌B9产生的生长素显著缓解,这表明其在促进植物生长方面具有积极作用。总的来说,我们的结果提供了明确的证据,即生长素的产生是 诱导植物有益生长的主要机制之一。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c08c/10515717/4ba7e3e185b4/fpls-14-1216680-g001.jpg

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