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NADPH氧化酶Nox1和Nox2对[具体对象]中挥发性有机化合物、抑真菌活性、植物生长促进和养分同化具有不同的调控作用。

The NADPH Oxidases Nox1 and Nox2 Differentially Regulate Volatile Organic Compounds, Fungistatic Activity, Plant Growth Promotion and Nutrient Assimilation in .

作者信息

Cruz-Magalhães Valter, Nieto-Jacobo Maria Fernanda, van Zijll de Jong Eline, Rostás Michael, Padilla-Arizmendi Fabiola, Kandula Diwakar, Kandula Janaki, Hampton John, Herrera-Estrella Alfredo, Steyaert Johanna M, Stewart Alison, Loguercio Leandro Lopes, Mendoza-Mendoza Artemio

机构信息

Bio-Protection Research Centre, Lincoln University, Lincoln, New Zealand.

Department of Biological Sciences (DCB), State University of Santa Cruz (UESC), Ilhéus, Brazil.

出版信息

Front Microbiol. 2019 Jan 23;9:3271. doi: 10.3389/fmicb.2018.03271. eCollection 2018.

Abstract

In eukaryotic systems, membrane-bound NADPH oxidases (Nox) generate reactive oxygen species (ROS) as a part of normal physiological functions. In the soil-borne mycoparasitic and plant facultative symbiont , Nox1 and the regulator NoxR are involved in differentiation induced by mechanical damage, while the role of Nox2 has not been determined. The knock-out strains Δ, Δ and Δ were compared to the parental strain (WT) in their ability to grow and conidiate under a series of stress conditions (osmotic, oxidative, membrane, and cell-wall stresses). All three genes were differentially involved in the stress-response phenotypes. In addition, several interactive experiments with biotic factors (plant seedlings and other fungi) were performed comparing the mutant phenotypes with the WT, which was used as the reference strain. Δ and Δ significantly reduced the antagonistic activity of against and in direct confrontation assays, but Δ showed similar activity to the WT. The Δ, Δ, and Δ mutants showed quantitative differences in the emission of several volatile organic compounds (VOCs). The effects of a blend of these volatiles on plant-growth promotion of seedlings were determined in closed-chamber experiments. The increase in root and shoot biomass induced by VOCs was significantly lowered by Δ and Δ, but not by Δ In terms of fungistatic activity at a distance, Δ had a significant reduction in this trait against and , while fungistasis was highly increased by Δ and Δ. Identification and quantification of individual VOCs in the blends emitted by the strains was performed by GC-MS and the patterns of variation observed for individual volatiles, such as 6-Pentyl-2H-pyran-2-one (6PP-1) and (E)-6-Pent-1-enylpyran-2-one (6PP-2) were consistent with their negative effects in plant-growth promotion and positive effects in fungistasis at a distance. Nox1 and NoxR appear to have a ubiquitous regulatory role of in a variety of developmental and interactive processes in either as positive or negative modulators. Nox2 may also have a role in regulating production of VOCs with fungistatic activity.

摘要

在真核生物系统中,膜结合型NADPH氧化酶(Nox)产生活性氧(ROS)是正常生理功能的一部分。在土壤传播的真菌寄生菌和植物兼性共生菌中,Nox1和调节因子NoxR参与机械损伤诱导的分化,而Nox2的作用尚未确定。将敲除菌株Δ、Δ和Δ与亲本菌株(WT)在一系列胁迫条件(渗透胁迫、氧化胁迫、膜胁迫和细胞壁胁迫)下的生长和产孢能力进行了比较。所有三个基因在胁迫反应表型中发挥不同作用。此外,进行了几项与生物因子(植物幼苗和其他真菌)的交互实验,将突变体表型与用作参考菌株的WT进行比较。在直接对峙试验中,Δ和Δ显著降低了对和的拮抗活性,但Δ显示出与WT相似的活性。Δ、Δ和Δ突变体在几种挥发性有机化合物(VOC)的释放上表现出数量差异。在封闭室实验中测定了这些挥发性物质混合物对植物幼苗生长促进的影响。VOCs诱导的根和茎生物量增加在Δ和Δ中显著降低,但在Δ中未降低。就远距离抑菌活性而言,Δ对和的这一特性显著降低,而Δ和Δ则使抑菌作用高度增强。通过气相色谱 - 质谱联用(GC - MS)对菌株释放的混合物中单个VOCs进行了鉴定和定量,观察到的单个挥发性物质(如6 - 戊基 - 2H - 吡喃 - 2 - 酮(6PP - 1)和(E) - 6 - 戊 - 1 - 烯基吡喃 - 2 - 酮(6PP - 2))的变化模式与它们对植物生长促进的负面影响和远距离抑菌的正面影响一致。Nox1和NoxR似乎在的各种发育和交互过程中作为正调节剂或负调节剂具有普遍的调节作用。Nox2也可能在调节具有抑菌活性的VOCs产生中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c7f/6351448/b6d37149bc0a/fmicb-09-03271-g001.jpg

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