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Arbuscular mycorrhizal growth responses are fungal specific but do not differ between soybean genotypes with different phosphate efficiency

机译:丛枝菌根生长反应是真菌特异性的但在不同磷效率的大豆基因型之间无差异

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摘要

>Background and Aims Arbuscular mycorrhizal (AM) fungi play a key role in the phosphate (P) uptake of many important crop species, but the mechanisms that control their efficiency and their contribution to the P nutrition of the host plant are only poorly understood.>Methods The P uptake and growth potential of two soybean genotypes that differ in their root architectural traits and P acquisition efficiency were studied after colonization with different AM fungi and the transcript levels of plant P transporters involved in the plant or mycorrhizal P uptake pathway were examined.>Key Results The mycorrhizal growth responses of both soybean genotypes ranged from highly beneficial to detrimental, and were dependent on the P supply conditions, and the fungal species involved. Only the colonization with Rhizophagus irregularis increased the growth and P uptake of both soybean genotypes. The expression of GmPT4 was downregulated, while the mycorrhiza-inducible P transporter GmPT10 was upregulated by colonization with R. irregularis. Colonization with both fungi also led to higher transcript levels of the mycorrhiza-inducible P transporter GmPT9, but only in plants colonized with R. irregularis were the higher transcript levels correlated to a better P supply.>Conclusions The results suggest that AM fungi can also significantly contribute to the P uptake and growth potential of genotypes with a higher P acquisition efficiency, but that mycorrhizal P benefits depend strongly on the P supply conditions and the fungal species involved.
机译:>背景和目标丛枝菌根(AM)真菌在许多重要农作物的磷酸盐(P)吸收中起关键作用,但控制其效率及其对宿主P营养的贡献的机制>方法研究了不同AM真菌定植后两种植物根系结构性状和磷吸收效率不同的基因型对磷的吸收和生长潜力以及植物P的转录水平>关键结果两种基因型大豆的菌根生长响应均从高度有益到有害,并取决于磷的供应条件和真菌种类。参与。仅用不规则根瘤菌的定殖增加了两种大豆基因型的生长和磷吸收。 GmPT4的表达下调,而菌根诱导的P转运蛋白GmPT10通过不规则红杆菌的定殖而上调。两种真菌的定殖也导致菌根诱导的P转运蛋白GmPT9的转录水平更高,但只有在定植有不规则红杆菌的植物中,更高的转录水平才与更好的P供给相关。>结论提示AM真菌还可以显着提高P吸收效率和基因型的P吸收和生长潜力,但菌根磷的受益在很大程度上取决于P的供应条件和所涉及的真菌种类。

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