首页> 外文期刊>Biology and fertility of soils: Cooperating Journal of the International Society of Soil Science >Influence of arbuscular mycorrhizal fungi, inoculum level and phosphorus placement on growth and phosphorus uptake of Phyllanthus calycinus under jarrah forest soil
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Influence of arbuscular mycorrhizal fungi, inoculum level and phosphorus placement on growth and phosphorus uptake of Phyllanthus calycinus under jarrah forest soil

机译:丛枝菌根真菌,接种量和磷素分布对jar柳林土壤上的菊花的生长和吸收磷的影响。

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摘要

Phosphorus uptake and biomass production may vary between arbuscular mycorrhizas (AM) species of contrasting life cycles and their modes of interaction with host plants. This research investigated differences among three AM fungi from different genera isolated from the jarrah forest with respect to their colonisation, biomass production and P uptake over time. The understorey plant Phyllanthus calycinus, has been shown to be extensively mycorrhizal. We examined differences in the capacity of fungi associated with this plant to access a P point source from increasing distances from the root. The methodology simulated pockets of P in forest soil. Phosphorus sources in root-exclusion mesh bags were inserted 2, 4 and 6 cm from plant roots restrained in separate mesh bags. Acaulospora laevis colonised plants to the greatest extent, producing higher plant biomass and P uptake compared to the other two fungi. Plant biomass and P uptake were enhanced where P sources were closest to the root, as expected, but there were differences among fungi in response to level of inoculum used for each fungus. The capacity of individual AM fungi to access a point source of P at different distances varied in a highly mycorrhizal native forest understorey plant in parallel with plant growth and P uptake.
机译:生命周期相反的丛枝菌根(AM)物种及其与寄主植物的相互作用方式之间,磷的吸收和生物量的产生可能会有所不同。这项研究调查了从jarrah森林中分离出的不同属的三种AM真菌之间在定植,生物量产生和磷吸收方面的差异。底层植物Phyllanthus calycinus已被证明具有广泛的菌根性。我们研究了与植物相关的真菌从根到根的距离越来越远而访问P点源的能力差异。该方法模拟了森林土壤中磷的含量。将根系隔离网袋中的磷源插入植物根,分别限制在单独的网袋中2、4和6厘米处。相较于其他两种真菌,无头孢菌最大程度地定植了植物,产生更高的植物生物量和P吸收。如预期的那样,在磷源最接近根的地方,植物生物量和磷的吸收得到增强,但是真菌之间的差异因每种真菌使用的接种量而异。在高度菌根的天然林下层植物中,单个AM真菌在不同距离处进入P点源的能力与植物生长和P吸收平行。

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