首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Effect of P Availability on Temporal Dynamics of Carbon Allocation and Glomus intraradices High-Affinity P Transporter Gene Induction in Arbuscular Mycorrhiza
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Effect of P Availability on Temporal Dynamics of Carbon Allocation and Glomus intraradices High-Affinity P Transporter Gene Induction in Arbuscular Mycorrhiza

机译:磷对丛枝菌根中碳分配和Glomus inradices高亲和力P转运蛋白基因诱导的时间动态的影响

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摘要

Arbuscular mycorrhizal (AM) fungi depend on a C supply from the plant host and simultaneously provide phosphorus to the colonized plant. We therefore evaluated the influence of external P on C allocation in monoxenic Daucus carota-Glomus intraradices cultures in an AM symbiosis. Fungal hyphae proliferated from a solid minimal medium containing colonized roots into a C-free liquid minimal medium with high or low P availability. Roots and hyphae were harvested periodically, and the flow of C from roots to fungus was measured by isotope labeling. We also measured induction of a G. intraradices high-affinity P transporter to estimate fungal P demand. The prevailing hypothesis is that high P availability reduces mycorrhizal fungal growth, but we found that C flow to the fungus was initially highest at the high P level. Only at later harvests, after 100 days of in vitro culture, were C flow and fungal growth limited at high P availability. Thus, AM fungi can benefit initially from P-enriched environments in terms of plant C allocation. As expected, the P transporter induction was significantly greater at low P availability and greatest in very young mycelia. We found no direct link between C flow to the fungus and the P transporter transcription level, which indicates that a good C supply is not essential for induction of the high-affinity P transporter. We describe a mechanism by which P regulates symbiotic C allocation, and we discuss how this mechanism may have evolved in a competitive environment.
机译:丛枝菌根(AM)真菌取决于植物宿主的碳供应,同时向定植的植物提供磷。因此,我们在AM共生中评估了单性Daucus carota-Glomus内辐射培养中外部P对C分配的影响。真菌菌丝从含有定植根的固体基本培养基增殖为具有高或低P利用率的无C液体基本培养基。定期收获根和菌丝,并通过同位素标记测量C从根到真菌的流动。我们还测量了G. intraradices高亲和力P转运蛋白的诱导,以估计真菌对P的需求。普遍的假设是,高磷可利用性会减少菌根真菌的生长,但我们发现,在高磷水平下,流入真菌的碳最初最高。仅在后期收获后,在体外培养100天后,C的流量和真菌的生长受到高P利用率的限制。因此,就植物C的分配而言,AM真菌最初可从富含P的环境中受益。不出所料,在低磷可用性下,P转运蛋白诱导显着增强,在极年轻的菌丝体中最大。我们发现C流到真菌和P转运蛋白的转录水平之间没有直接联系,这表明良好的C供应对于诱导高亲和力P转运蛋白不是必需的。我们描述了P调节共生C分配的机制,并讨论了该机制在竞争环境中可能如何发展。

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