首页> 外文期刊>European Journal of Soil Biology >Growth benefits provided by different arbuscular mycorrhizal fungi to Plantago lanceolata depend on the form of available phosphorus
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Growth benefits provided by different arbuscular mycorrhizal fungi to Plantago lanceolata depend on the form of available phosphorus

机译:不同丛枝菌根真菌提供的生长益处依赖于VARTMOLO兰克拉塔依赖于可用磷的形式

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Strains of arbuscular mycorrhizal fungi (AMF) differ markedly in the growth benefits they provide to plants. We investigated whether these differences depend on the chemical form of inorganic phosphorus. The closely related AMF Glomus custos and Rhizophagus irregularis were compared using Plantago lanceolata as the host plant, grown in quartz sand with either soluble orthophosphate or sparingly soluble hydroxyapatite as a sole source of phosphorus. In a growth experiment with AMF-inoculated plants in a climate chamber, sampling at 3-wk intervals enabled a detailed time-resolved analysis of shoot and root phosphorus concentrations and growth performance of P. lanceolata. The ability of AMF to enhance plant growth and deliver phosphate depended strongly on the identity of the available phosphorus source. In orthophosphate-amended substrate only modest differences in plant growth performance (dry matter accumulation and allocation, phosphorus acquisition) were observed between the two AMFs, despite evident AMF root colonization as shown by strain-specific mtLSU qPCR analysis. The treatment with hydroxyapatite however, created stringent growth-limiting conditions and significantly increased the growth benefit provided by R. irregularis over G. custos and the non-mycorrhizal treatment. Plants with R. irregularis could acquire much more phosphorus from apatite compared to G. custos. There were also differences in shoot-to-root dry matter allocation and plant tissue phosphorus concentrations between the R. irregularis and G. custos treatments. Our observations suggest that in experiments on the symbiosis between plants and mycorrhizal fungi more attention should be paid to the chemical form of phosphorus in soil.
机译:丛枝菌根真菌(AMF)的菌株在其向植物提供的增长益处中显着不同。我们调查了这些差异是否取决于无机磷的化学形式。使用Plantago Lanceolata作为宿主植物进行比较密切相关的AMF Glomus Custos和Rhizophagus Ifregularis,以石英砂生长,具有可溶性正磷酸盐或微羟基磷灰石作为唯一的磷来源。在气候室中具有AMF接种植物的生长实验中,以3-WK间隔采样,使得枝条和根磷浓度的详细时间分辨分析和P. Lanceolata的生长性能。 AMF增强植物生长的能力,并递送磷酸盐的强烈依赖于可用磷来源的同一性。在两种AMF之间观察到在正磷酸盐修正的底物中仅在两种AMF之间观察到植物生长性能(干物质积累和分配,磷汁采集)的差异,尽管AMF根殖民化如菌株特异性的MTLSU QPCR分析所示。然而,用羟基磷灰化物处理,产生严格的生长限制条件,并显着提高了R. Inregularis对G. Custos和非腐蚀性治疗提供的增长效益。与G. Custos相比,患有R. Irregularis的植物可以从Apatite获得更多的磷。 R. Irregularis和G. Custos治疗之间的芽根干物质分配和植物组织磷浓度也存在差异。我们的观察结果表明,在实验中,植物与菌根真菌之间的共生,应更多地关注土壤中磷的化学形式。

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