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Fungal nutrient allocation in common mycorrhizal networks is regulated by the carbon source strength of individual host plants

机译:常见菌根网络中真菌营养的分配受单个寄主植物碳源强度的调节

摘要

Common mycorrhizal networks (CMNs) of arbuscular mycorrhizal (AM) fungi in the soil simultaneously provide multiple host plants with nutrients, but the mechanisms by which the nutrient transport to individual host plants within one CMN is controlled are unknown. Using radioactive and stable isotopes, we followed the transport of phosphorus (P) and nitrogen (N) in the CMNs of two fungal species to plants that differed in their carbon (C) source strength, and correlated the transport to the expression of mycorrhiza-inducible plant P (MtPt4) and ammonium (1723.m00046) transporters in mycorrhizal roots. AM fungi discriminated between host plants that shared a CMN and preferentially allocated nutrients to high-quality (nonshaded) hosts. However, the fungus also supplied low-quality (shaded) hosts with nutrients and maintained a high colonization rate in these plants. Fungal P transport was correlated to the expression of MtPt4. The expression of the putative ammonium transporter 1723.m00046 was dependent on the fungal nutrient supply and was induced when the CMN had access to N. Biological market theory has emerged as a tool with which the strategic investment of competing partners in trading networks can be studied. Our work demonstrates how fungal partners are able to retain bargaining power, despite being obligately dependent on their hosts. © 2014 New Phytologist Trust.
机译:土壤中的丛枝菌根(AM)真菌的常见菌根网络(CMN)同时为多个寄主植物提供营养,但是控制养分向一个CMN内的各个寄主植物运输的机制尚不清楚。使用放射性和稳定同位素,我们追踪了两种真菌物种的CMN中磷(P)和氮(N)的转运到碳(C)源强度不同的植物,并将该转运与菌根的表达相关-菌根中的诱导型植物P(MtPt4)和铵(1723.m00046)转运蛋白。 AM真菌区分了共享CMN并优先向高品质(无阴影)宿主分配营养的宿主植物。但是,真菌还为低质(遮光)寄主提供了养分,并在这些植物中保持了很高的定殖率。真菌P转运与MtPt4的表达相关。假定的铵转运蛋白1723.m00046的表达取决于真菌的养分供应,并在CMN获得N时被诱导。生物市场理论已成为一种工具,可以用来研究竞争伙伴在贸易网络中的战略投资。我们的工作表明,真菌合作伙伴尽管专心依赖寄主,却能够保持讨价还价的能力。 ©2014新植物学家信托。

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