Department of Agronomy and Soil Science, University of Hawaii, Honolulu, Hawaii 96822.
Appl Environ Microbiol. 1987 Apr;53(4):797-801. doi: 10.1128/aem.53.4.797-801.1987.
A phosphorus sorption isotherm was used to establish concentrations of P in a soil solution ranging from 0.002 to 0.807 mug/ml. The influence of P concentration on the symbiotic interaction between the tropical tree legume Leucaena leucocephala and the vesicular-arbuscular mycorrhizal (VAM) fungus Glomus fasciculatum was evaluated in pot experiments. The level of mycorrhizal infection in Leucaena roots increased as the concentration of P was raised from 0.002 to 0.153 mug/ml. Higher levels of P depressed mycorrhizal infection, but the level of infection never declined below 50%. Periodic monitoring of P contents of Leucaena subleaflets indicated that significant mycorrhizal activity was detected as early as 17 days after planting, with the activity peaking 12 to 16 days thereafter. The highest level of mycorrhizal activity was associated with a soil solution P level of 0.021 mug/ml. Even though the mycorrhizal inoculation effect diminished as the concentration of P in the soil solution was increased, mycorrhizal inoculation significantly increased P uptake and dry-matter yield of Leucaena at all levels of soil solution P examined. The concentration of P required by nonmycorrhizal L. leucocephala for maximum yield was 27 to 38 times higher than that required by mycorrhizal L. leucocephala. The results illustrate the very high dependence of L. leucocephala on VAM fungi and the significance of optimizing soil solution phosphorus for enhancing the benefits of the VAM symbiosis.
采用磷吸附等温线法将土壤溶液中的磷浓度设置在 0.002 至 0.807μg/ml 之间。在盆栽试验中,评估了磷浓度对热带树木豆科植物银合欢(Leucaena leucocephala)与泡囊丛枝菌根(VAM)真菌球囊霉(Glomus fasciculatum)共生互作的影响。随着磷浓度从 0.002 提高到 0.153μg/ml,银合欢根系的菌根感染程度增加。更高的磷水平抑制了菌根感染,但感染程度从未低于 50%。对银合欢亚叶片磷含量的定期监测表明,在种植后 17 天即可检测到显著的菌根活性,此后 12-16 天达到峰值。最高的菌根活性与土壤溶液磷水平为 0.021μg/ml 相关。尽管随着土壤溶液中磷浓度的增加,菌根接种的效果减弱,但菌根接种显著增加了所有土壤溶液磷水平下银合欢的磷吸收和干物质产量。非菌根银合欢(Leucaena leucocephala)达到最大产量所需的磷浓度比菌根银合欢(Leucaena leucocephala)高 27 至 38 倍。结果表明,银合欢对 VAM 真菌的依赖性非常高,优化土壤溶液磷对于增强 VAM 共生的益处具有重要意义。