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首页> 外文期刊>Frontiers in Plant Science >Glomus mosseae Inoculation Improves the Root System Architecture, Photosynthetic Efficiency and Flavonoids Accumulation of Liquorice under Nutrient Stress
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Glomus mosseae Inoculation Improves the Root System Architecture, Photosynthetic Efficiency and Flavonoids Accumulation of Liquorice under Nutrient Stress

机译:<斜视> Glomus Mosseae 接种提高了营养应激下甘草的根系结构,光合效率和黄酮类化合物

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The poor quality and low productivity of cultivated liquorice ( Glycyrrhiza uralensis ) continues to put pressure on wild plant populations. As arbuscular mycorrhizal fungi are known to support plant growth and in some cases even to enhance the accumulation of valuable molecules in the plant, the effect of Glomus mosseae on the growth and active ingredient contents was evaluated in liquorice plants grown under nutrient deficiency. We created a nutrient-deficient environment by mixing paddy soil, washed river sand, and pumice at a ratio of 1:5:1. Our results showed that the inoculation of pot-grown liquorice plants with G. mosseae significantly increased the shoot and root biomass (by 25- and 17-folds, respectively) and the contents of glycyrrhizic acid, liquiritin, isoliquiritin, and isoliquiritigenin in the main root (by 1.6-, 4.8-, 6.5-, and 4.4-folds, respectively). Both isoliquiritin and isoliquiritigenin were detectable in the lateral roots of the plants inoculated with G. mosseae , but not in plants without G. mosseae inoculation. G. mosseae inoculation improved the features of the root system and increased photosynthetic efficiency of liquorice. The uptake of P and K by liquorice increased when G. mosseae was inoculated, leading to the depletion of these macronutrients in the soil; G. mosseae also improved the availability of Mg, Cu, Zn, and Mn. Based on these results, we concluded that the inoculation of liquorice plants with G. mosseae is beneficial, particularly for those grown in nutrient-deficient soil, and such positive effect is related to the improvement of the root system and an increased photosynthetic efficiency.
机译:栽培甘草的质量差和低生产率(Glycyrrhiza Uralensis)继续对野生植物群体的压力施加压力。众所周知,由于丛枝菌根真菌来支持植物生长,并且在某些情况下甚至提高植物有价值分子的积累,在营养缺乏症生长的甘草植物中评估了Glomus Mosseae对生长和活性成分内容的影响。我们通过混合水稻土,洗涤的河砂和浮石以1:5:1的比例创造了营养缺乏环境。我们的研究结果表明,用G. mosseae接种罐种甘草植物显着增加了枝条和根生物量(分别为25-17倍)和甘草酸,液体素,isoliquiritin和isoliquiritigenin的含量根(分别为1.6-,4.8-,6.5和4.4折)。 isoliquiritin和isoliquiritigenin都是可检测的,在接种与G. mosseae的植物的侧面根中,但没有在没有G.血管的植物中接种。 G. Mosseae接种改善了根系的特征,增加了甘草的光合效率。当接种G.Mosseae时,甘草的摄取量增加,导致土壤中这些常规营养素的消耗; G. Mossea还改善了Mg,Cu,Zn和Mn的可用性。基于这些结果,我们得出的结论是,用G.Mosseae接种液体植物是有益的,特别是对于在营养缺乏土壤中生长的那些,这种阳性效应与根系的改善和增加的光合效率有关。

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