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不规则球囊霉AOX基因的孢子内和孢子间变异性

Intra and Inter-Spore Variability in Rhizophagus irregularis AOX Gene.

作者信息

Campos Catarina, Cardoso Hélia, Nogales Amaia, Svensson Jan, Lopez-Ráez Juan Antonio, Pozo María José, Nobre Tânia, Schneider Carolin, Arnholdt-Schmitt Birgit

机构信息

EU Marie Curie Chair, ICAAM-Instituto de Ciências Agrárias e Ambientais Mediterrânicas, IIFA-Instituto de Formação e Investigação Avançada, Universidade de Évora, Núcleo da Mitra, Évora, Portugal.

Nordic Genetic Resource Center, Alnarp, Sweden.

出版信息

PLoS One. 2015 Nov 5;10(11):e0142339. doi: 10.1371/journal.pone.0142339. eCollection 2015.

Abstract

Arbuscular mycorrhizal fungi (AMF) are root-inhabiting fungi that form mutualistic symbioses with their host plants. AMF symbiosis improves nutrient uptake and buffers the plant against a diversity of stresses. Rhizophagus irregularis is one of the most widespread AMF species in the world, and its application in agricultural systems for yield improvement has increased over the last years. Still, from the inoculum production perspective, a lack of consistency of inoculum quality is referred to, which partially may be due to a high genetic variability of the fungus. The alternative oxidase (AOX) is an enzyme of the alternative respiratory chain already described in different taxa, including various fungi, which decreases the damage caused by oxidative stress. Nevertheless, virtually nothing is known on the involvement of AMF AOX on symbiosis establishment, as well on the existence of AOX variability that could affect AMF effectiveness and consequently plant performance. Here, we report the isolation and characterisation of the AOX gene of R. irregularis (RiAOX), and show that it is highly expressed during early phases of the symbiosis with plant roots. Phylogenetic analysis clustered RiAOX sequence with ancient fungi, and multiple sequence alignment revealed the lack of several regulatory motifs which are present in plant AOX. The analysis of RiAOX polymorphisms in single spores of three different isolates showed a reduced variability in one spore relatively to a group of spores. A high number of polymorphisms occurred in introns; nevertheless, some putative amino acid changes resulting from non-synonymous variants were found, offering a basis for selective pressure to occur within the populations. Given the AOX relatedness with stress responses, differences in gene variants amongst R. irregularis isolates are likely to be related with its origin and environmental constraints and might have a potential impact on inoculum production.

摘要

丛枝菌根真菌(AMF)是一类寄生于植物根部的真菌,它们与宿主植物形成互利共生关系。AMF共生关系能够改善植物对养分的吸收,并缓冲植物免受多种胁迫。不规则球囊霉是世界上分布最广泛的AMF物种之一,在过去几年中,其在农业系统中用于提高产量的应用有所增加。然而,从接种剂生产的角度来看,存在接种剂质量缺乏一致性的问题,部分原因可能是该真菌具有高度的遗传变异性。交替氧化酶(AOX)是一种已在不同分类群(包括各种真菌)中描述过的交替呼吸链酶,它可以减少氧化应激造成的损害。然而,关于AMF的AOX在共生关系建立中的作用,以及是否存在可能影响AMF有效性进而影响植物性能的AOX变异性,几乎一无所知。在此,我们报告了不规则球囊霉AOX基因(RiAOX)的分离和表征,并表明它在与植物根系共生的早期阶段高度表达。系统发育分析将RiAOX序列与古老真菌聚类在一起,多序列比对显示其缺乏植物AOX中存在的几个调控基序。对三种不同分离株的单个孢子中RiAOX多态性的分析表明,相对于一组孢子,单个孢子中的变异性降低。大量多态性出现在内含子中;然而,发现了一些由非同义变体导致的推定氨基酸变化,这为种群内的选择压力提供了基础。鉴于AOX与应激反应的相关性,不规则球囊霉分离株之间基因变体的差异可能与其起源和环境限制有关,并可能对接种剂生产产生潜在影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b47f/4634980/4fcab617445c/pone.0142339.g001.jpg

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