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首页> 外文期刊>Canadian journal of microbiology >Nitrogen transfer and assimilation between the arbuscular mycorrhizal fungus Glomus intraradices Schenck & Smith and Ri T-DNA roots of Daucus carota L. in an in vitro compartmented system.
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Nitrogen transfer and assimilation between the arbuscular mycorrhizal fungus Glomus intraradices Schenck & Smith and Ri T-DNA roots of Daucus carota L. in an in vitro compartmented system.

机译:在体外分隔系统中,丛枝菌根真菌Glomus内插Schenck&Smith和Daucus carota L.的Ri T-DNA根之间的氮转移和同化作用。

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摘要

Nitrogen metabolism was examined in monoxenic cultures of carrot roots (Daucus carota L.) colonized with the arbuscular mycorrhizal (AM) fungus Glomus intraradices Schenck & Smith. Glutamine synthetase and glutamate dehydrogenase activities were significantly increased in mycorrhizal roots for which only the extraradical mycelium had exclusive access to NH4NO3 in a distinct hyphal compartment inaccessible to the roots. This was in comparison with the water controls but was similar to the enzyme activities of non-arbuscular-mycorrhizal (non-AM) roots that had direct access to NH4NO3. In addition, glutamate dehydrogenase activity was significantly enhanced in AM roots compared with non-AM roots. Carrot roots took up 15NH4+ more efficiently than 15NO3-, and the extraradical hyphae transfered 15NH4+ to host roots from the hyphal compartment but did not transfer 15NO3-. The extraradical mycelium was shown, for the first time, to have a different glutamine synthetase monomer than roots. Our overall results highlight the active role of AM fungi in nitrogen uptake, transfer, and assimilation in their symbiotic root association.
机译:在植根于丛枝菌根(AM)真菌Glomus intraradices Schenck&Smith的胡萝卜根(Daucus carota L.)的单异性培养物中检查了氮代谢。菌根中的谷氨酰胺合成酶和谷氨酸脱氢酶活性显着增加,因为只有根外菌丝体在根部无法触及的独特菌丝区中独家接触NH4NO3。这与水控相比,但类似于直接接触NH4NO3的非丛枝菌根(non-AM)根的酶活性。另外,与非AM根相比,AM根中的谷氨酸脱氢酶活性显着增强。胡萝卜根比15NO3-更有效地吸收15NH4 +,而根外菌丝将15NH4 +从菌丝区转移到宿主根,但不转移15NO3-。首次证明根外菌丝体的谷氨酰胺合成酶单体与根不同。我们的总体结果突出了AM真菌在其共生根缔合中的氮吸收,转移和同化中的积极作用。

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