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Impact of water regimes on an experimental community of four desert arbuscular mycorrhizal fungal (AMF) species, as affected by the introduction of a non-native AMF species

机译:受引入非本地AMF物种的影响,水分制度对四种沙漠状丛枝菌根真菌(AMF)物种的实验群落的影响

摘要

Field studies have revealed the impact of changing water regimes on the structure of arbuscular mycorrhizal fun-gal (AMF) communities, but it is not known what happens to the abundance of individual AMF species within the community when the water conditions in the rhizosphere change. The behavior of four AMF species isolated from the Arabian desert (Diversispora aurantia, Diversispora omaniana, Septoglomus africanum, and an undescribed Paraglomus species) was investigated when assembled in microcosms containing Sorghum bicolor as host plant, and treated with various water regimes. Furthermore, the impact of invasion of these assemblages by Rhizophagus irregularis , an AMF species widely used in commercial inocula, was studied. The abundance of each AMF species in sorghum roots was measured by determining the transcript numbers of their large ribosomal subunit (rLSU) by real-time PCR, using cDNA and species-specific primers. Plant biomass and length of AMF extraradical hyphae were also measured. The abundance of each AMF species within the sorghum roots was influenced by both the water regime and the introduction of R. irregularis. Under dry conditions, the introduction of R. irregularis reduced the total abundance of all native AMF species in roots and also led to a reduction in the amount of extraradical mycelium, as well as to a partial decrease in plant biomass. The results indicate that both water regime and the introduction of an invasive AMF species can strongly alter the structure of an AMF native assemblage with a consequent impact on the entire symbiotic mycorrhizal relationship.
机译:野外研究已经揭示了改变水的状况对丛枝菌根真菌(AMF)群落结构的影响,但尚不清楚当根际中的水条件发生变化时,群落中单个AMF物种的丰度会发生什么。在包含双色高粱作为寄主植物的缩影中组装并用多种水处理后,研究了从阿拉伯沙漠中分离出的四种AMF物种的行为(Diversispora aurantia,Diversispora omaniana,Septoglomus africanum和未描述的Paraglomus物种)。此外,还研究了不规则根瘤菌(一种在商业接种中广泛使用的AMF物种)入侵这些组合的影响。通过使用cDNA和物种特异性引物通过实时PCR确定其大核糖体亚基(rLSU)的转录本数量,来测量高粱根中每种AMF物种的丰度。还测量了植物生物量和AMF自由基菌丝的长度。高粱根系中每个AMF种类的丰度都受到水分状况和不规则红球菌引入的影响。在干燥条件下,不规则红球菌的引入会降低根部所有天然AMF物种的总丰度,并导致根外菌丝体数量减少,以及植物生物量部分减少。结果表明,水情和侵入性AMF物种的引入都可以强烈改变AMF天然组合的结构,从而对整个共生菌根关系产生影响。

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