Cameron Duncan D, Johnson Irene, Leake Jonathan R, Read David J
Department of Animal and Plant Sciences, University of Sheffield, Alfred Denny Building, Western Bank, Sheffield S10 2TN, UK.
Ann Bot. 2007 May;99(5):831-4. doi: 10.1093/aob/mcm018. Epub 2007 Mar 5.
Mycorrhizal fungi play a vital role in providing a carbon subsidy to support the germination and establishment of orchids from tiny seeds, but their roles in adult orchids have not been adequately characterized. Recent evidence that carbon is supplied by Goodyera repens to its fungal partner in return for nitrogen has established the mutualistic nature of the symbiosis in this orchid. In this paper the role of the fungus in the capture and transfer of inorganic phosphorus (P) to the orchid is unequivocally demonstrated for the first time.
Mycorrhiza-mediated uptake of phosphorus in G. repens was investigated using spatially separated, two-dimensional agar-based microcosms.
External mycelium growing from this green orchid is shown to be effective in assimilating and transporting the radiotracer (33)P orthophosphate into the plant. After 7 d of exposure, over 10 % of the P supplied was transported over a diffusion barrier by the fungus and to the plants, more than half of this to the shoots.
Goodyera repens can obtain significant amounts of P from its mycorrhizal partner. These results provide further support for the view that mycorrhizal associations in some adult green orchids are mutualistic.
菌根真菌在提供碳补贴以支持兰花从微小种子萌发和定植过程中发挥着至关重要的作用,但其在成年兰花中的作用尚未得到充分描述。最近有证据表明,白花斑叶兰会向其真菌伙伴提供碳以换取氮,这确立了这种兰花共生关系的互利性质。本文首次明确证明了真菌在捕获无机磷(P)并将其转移到兰花中的作用。
利用空间分离的基于二维琼脂的微观系统研究了菌根介导的白花斑叶兰对磷的吸收。
从这种绿色兰花生长出的外部菌丝体被证明能够有效地将放射性示踪剂(33)P正磷酸盐同化并运输到植物中。暴露7天后,超过10%的供应磷被真菌运输越过扩散屏障并到达植物,其中一半以上运输到地上部分。
白花斑叶兰可以从其菌根伙伴那里获得大量的磷。这些结果进一步支持了这样一种观点,即一些成年绿色兰花中的菌根关联是互利共生的。