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本文引用的文献

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Effects of soil phosphorus on spore germination and hyphal growth of arbuscular mycorrhizal fungi.土壤磷对丛枝菌根真菌孢子萌发和菌丝生长的影响。
New Phytol. 1994 Sep;128(1):103-108. doi: 10.1111/j.1469-8137.1994.tb03992.x.
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Early events of vesicular-arbuscular mycorrhiza formation on Ri T-DNA transformed roots.发根农杆菌Ri T-DNA转化根上丛枝菌根形成的早期事件
New Phytol. 1988 Feb;108(2):211-218. doi: 10.1111/j.1469-8137.1988.tb03698.x.
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Extensive tubular vacuole system in an arbuscular mycorrhizal fungus, Gigaspora margarita.巨孢囊霉(Gigaspora margarita)中广泛存在的管状液泡系统。
New Phytol. 2002 Jun;154(3):761-768. doi: 10.1046/j.1469-8137.2002.00425.x.
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Differentiation of polyphosphate metabolism between the extra- and intraradical hyphae of arbuscular mycorrhizal fungi.丛枝菌根真菌根外和根内菌丝体中多磷酸盐代谢的差异
New Phytol. 2001 Mar;149(3):555-563. doi: 10.1046/j.1469-8137.2001.00040.x.
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Extraradical hyphae of the mycorrhizal fungus Glomus intraradices can hydrolyse organic phosphate.丛枝菌根真菌根内球囊霉的根外菌丝能够水解有机磷酸盐。
New Phytol. 2000 Dec;148(3):511-517. doi: 10.1046/j.1469-8137.2000.00776.x.
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Carbon Cost of the Fungal Symbiont Relative to Net Leaf P Accumulation in a Split-Root VA Mycorrhizal Symbiosis.在根系分区 VA 菌根共生中,与净叶磷积累相比,真菌共生体的碳成本。
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Phosphorus effects on the mycelium and storage structures of an arbuscular mycorrhizal fungus as studied in the soil and roots by analysis of Fatty Acid signatures.通过对脂肪酸特征的分析,研究了磷对丛枝菌根真菌菌丝体和贮藏结构的影响,这项研究在土壤和根系中进行。
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Phospholipid Fatty Acid composition, biomass, and activity of microbial communities from two soil types experimentally exposed to different heavy metals.两种土壤类型中微生物群落的磷脂脂肪酸组成、生物量和活性对不同重金属的实验暴露。
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磷对单菌根丛枝菌根培养物中代谢过程的影响。

Phosphorus effects on metabolic processes in monoxenic arbuscular mycorrhiza cultures.

作者信息

Olsson Pål Axel, van Aarle Ingrid M, Allaway William G, Ashford Anne E, Rouhier Hervé

机构信息

Department of Microbial Ecology, Ecology Building, Lund University, SE-223 62 Lund, Sweden.

出版信息

Plant Physiol. 2002 Nov;130(3):1162-71. doi: 10.1104/pp.009639.

DOI:10.1104/pp.009639
PMID:12427983
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC166637/
Abstract

The influence of external phosphorus (P) on carbon (C) allocation and metabolism as well as processes related to P metabolism was studied in monoxenic arbuscular mycorrhiza cultures of carrot (Daucus carota). Fungal hyphae of Glomus intraradices proliferated from the solid minimal medium containing the colonized roots into C-free liquid minimal medium with different P treatments. The fungus formed around three times higher biomass in P-free liquid medium than in medium with 2.5 mM inorganic P (high-P). Mycelium in the second experiment was harvested at an earlier growth stage to study metabolic processes when the mycelium was actively growing. P treatment influenced the root P content and [(13)C]glucose administered to the roots 7 d before harvest gave a negative correlation between root P content and (13)C enrichment in arbuscular mycorrhiza fungal storage lipids in the extraradical hyphae. Eighteen percent of the enriched (13)C in extraradical hyphae was recovered in the fatty acid 16:1omega5 from neutral lipids. Polyphosphate accumulated in hyphae even in P-free medium. No influence of P treatment on fungal acid phosphatase activity was observed, whereas the proportion of alkaline-phosphatase-active hyphae was highest in high-P medium. We demonstrated the presence of a motile tubular vacuolar system in G. intraradices. This system was rarely seen in hyphae subjected to the highest P treatment. We concluded that the direct responses of the extraradical hyphae to the P concentration in the medium are limited. The effects found in hyphae seemed instead to be related to increased availability of P to the host root.

摘要

在胡萝卜(胡萝卜属)的单菌根丛枝菌根培养物中,研究了外源磷(P)对碳(C)分配和代谢以及与磷代谢相关过程的影响。根内球囊霉的真菌菌丝从含有定殖根的固体基本培养基中生长到含有不同磷处理的无碳液体基本培养基中。在无磷液体培养基中,真菌形成的生物量比在含有2.5 mM无机磷(高磷)的培养基中高出约三倍。在第二个实验中,在菌丝体活跃生长的早期生长阶段收获菌丝体,以研究代谢过程。磷处理影响根中的磷含量,收获前7天施用于根的[(13)C]葡萄糖与根中磷含量和根外菌丝体丛枝菌根真菌储存脂质中的(13)C富集呈负相关。根外菌丝体中18%的富集(13)C在中性脂质的脂肪酸16:1ω5中回收。即使在无磷培养基中,菌丝体中也会积累多磷酸盐。未观察到磷处理对真菌酸性磷酸酶活性有影响,而碱性磷酸酶活性菌丝体的比例在高磷培养基中最高。我们证明了根内球囊霉中存在一个可移动的管状液泡系统。在接受最高磷处理的菌丝体中很少见到这个系统。我们得出结论,根外菌丝体对培养基中磷浓度的直接反应是有限的。相反,在菌丝体中发现的影响似乎与宿主根中磷的有效性增加有关。