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首页> 外文期刊>Plant, Cell & Environment >Silencing a key gene of the common symbiosis pathway in Nicotiana attenuata specifically impairs arbuscular mycorrhizal infection without influencing the root-associated microbiome or plant growth
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Silencing a key gene of the common symbiosis pathway in Nicotiana attenuata specifically impairs arbuscular mycorrhizal infection without influencing the root-associated microbiome or plant growth

机译:沉默烟草中常见共生途径的关键基因沉默会损害丛枝菌根感染,而不会影响与根相关的微生物组或植物的生长

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While the biochemical function of calcium and calmodulin-dependent protein kinase (CCaMK) is well studied, and plants impaired in the expression of CCaMK are known not to be infected by arbuscular mycorrhizal fungi (AMF) in glasshouse studies, the whole-plant and ecological consequences of CCaMK silencing are not well understood. Here we show that three independently transformed lines of Nicotiana attenuata plants silenced in CCaMK (irCCaMK) are neither infected by Rhizophagus irregularis in the glasshouse nor by native fungal inoculum in the field. The overall fungal community of field-grown roots did not differ significantly among empty vector (EV) and the transgenic lines, and the bacterial communities only showed minor differences, as revealed by the alpha-diversity parameters of bacterial OTUs, which were higher in EV plants compared with two of the three transformed lines, while beta-diversity parameters did not differ. Furthermore, growth and fitness parameters were similar in the glasshouse and field. Herbivory-inducible and basal levels of salicylic acid, jasmonic acid and abscisic acid did not differ among the genotypes, suggesting that activation of the classical defence pathways are not affected by CCaMK silencing. Based on these results, we conclude that silencing of CCaMK has few, if any, non-target effects.
机译:尽管对钙和钙调蛋白依赖性蛋白激酶(CCaMK)的生化功能进行了充分研究,并且在温室研究,整株植物和生态学研究中已知CCaMK表达受损的植物不会被丛枝菌根真菌(AMF)感染。 CCaMK沉默的后果尚不十分清楚。在这里,我们显示了在CCaMK(irCCaMK)中沉默的三株烟草独立变种系既未受到温室中的不规则根瘤菌感染,也未受到该领域中的天然真菌接种物的感染。空载体(EV)和转基因品系之间,田间生根的总体真菌群落没有显着差异,细菌群落仅显示出较小的差异,如细菌OTU的α-多样性参数所揭示的那样,EV中较高与三个转化品系中的两个相比,该植物具有更高的亲和力,而β多样性参数没有差异。此外,温室和田间的生长和适应参数相似。在基因型之间,水草酸,茉莉酸和脱落酸的草食诱导水平和基础水平没有差异,这表明经典防御途径的激活不受CCaMK沉默的影响。根据这些结果,我们得出结论,CCaMK沉默几乎没有非目标效应。

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