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磷源改变宿主植物对外生菌根多样性的反应。

Phosphorus source alters host plant response to ectomycorrhizal diversity.

作者信息

Baxter James W, Dighton John

机构信息

Rutgers Pinelands Field Station, Rutgers University, New Lisbon, NJ 08064, USA.

出版信息

Mycorrhiza. 2005 Nov;15(7):513-23. doi: 10.1007/s00572-005-0359-0. Epub 2005 Apr 5.

Abstract

We examined the influence of phosphorus source and availability on host plant (Pinus rigida) response to ectomycorrhizal diversity under contrasting P conditions. An ectomycorrhizal richness gradient was established with equimolar P supplied as either inorganic phosphate or organic inositol hexaphosphate. We measured growth and N and P uptake of individual P. rigida seedlings inoculated with one, two, or four species of ectomycorrhizal fungi simultaneously and without mycorrhizas in axenic culture. Whereas colonization of P. rigida by individual species of ectomycorrhizal fungi decreased with increasing fungal richness, colonization of all species combined increased. Plant biomass and N content increased across the ectomycorrhizal richness gradient in the organic but not the inorganic P treatment. Plants grown under organic P conditions had higher N concentration than those grown under inorganic P conditions, but there was no effect of richness. Phosphorus content of plants grown in the organic P treatment increased with increasing ectomycorrhizal richness, but there was no response in the inorganic P treatment. Phosphorus concentration was higher in plants grown at the four-species richness level in the organic P treatment, but there was no effect of diversity under inorganic P conditions. Overall, few ectomycorrhizal composition effects were found on plant growth or nutrient status. Phosphatase activities of individual ectomycorrhizal fungi differed under organic P conditions, but there was no difference in total root system phosphatase expression between the inorganic or organic P treatments or across richness levels. Our results provide evidence that plant response to ectomycorrhizal diversity is dependent on the source and availability of P.

摘要

我们研究了在不同磷条件下,磷源和有效性对寄主植物(刚松)对外生菌根多样性响应的影响。通过以无机磷酸盐或有机肌醇六磷酸形式提供等摩尔磷,建立了一个外生菌根丰富度梯度。我们测量了在无菌培养中同时接种一种、两种或四种外生菌根真菌以及未接种菌根的单个刚松幼苗的生长情况、氮和磷吸收量。虽然单个外生菌根真菌对刚松的定殖随着真菌丰富度的增加而减少,但所有物种组合的定殖增加。在有机磷处理而非无机磷处理中,植物生物量和氮含量在外生菌根丰富度梯度上均有所增加。在有机磷条件下生长的植物比在无机磷条件下生长的植物氮浓度更高,但丰富度没有影响。在有机磷处理中生长的植物的磷含量随着外生菌根丰富度的增加而增加,但在无机磷处理中没有响应。在有机磷处理中,四种真菌丰富度水平下生长的植物磷浓度更高,但在无机磷条件下多样性没有影响。总体而言,在外生菌根组成对植物生长或营养状况方面发现的影响很少。在有机磷条件下,单个外生菌根真菌的磷酸酶活性不同,但在无机磷或有机磷处理之间或在不同丰富度水平上,总根系磷酸酶表达没有差异。我们的结果提供了证据,表明植物对外生菌根多样性的响应取决于磷的来源和有效性。

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