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首页> 外文期刊>Applied and Environmental Microbiology >Degradation of atrazine and 2,4-dichlorophenoxyacetic acid by mycorrhizal fungi at three nitrogen concentrations in vitro.
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Degradation of atrazine and 2,4-dichlorophenoxyacetic acid by mycorrhizal fungi at three nitrogen concentrations in vitro.

机译:菌根真菌在三种氮浓度下体外降解阿特拉津和2,4-二氯苯氧基乙酸。

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Nine mycorrhizal fungi and free-living saprophytic microorganisms were tested for their ability to degrade two chlorinated aromatic herbicides at two herbicide concentrations and three nitrogen concentrations. Radiolabelled 2,4-dichlorophenoxyacetic acid (2,4-D) and 2-chloro-4-ethylamino-6-isopropylamino-s-triazine (atrazine) were used as substrates at concentrations of 1 and 4 mM. After 8 weeks, none of the cultures tested grew at 4 mM 2,4-D. However, when the 2,4-D concentration was reduced to 1 mM, Phanerochaete chrysosporium 1767 had the highest level of 2,4-D mineralization and degradation under all nitrogen conditions. All cultures tested grew at both atrazine concentrations. In all cases, the ericoid mycorrhizal fungus Hymenoscyphus ericae 1318 had the highest level of atrazine carbon incorporated into its tissue. In general, as the nitrogen concentration increased, the total herbicide degradation increased. All of the cultures, except for Rhizopogon vinicolor 7534 and Sclerogaster pacificus 9011, showed increased degradation at 4 mM compared with 1 mM atrazine. The ability to degrade these two herbicides thus appeared to be dependent on the fungus and the herbicide, with no correlation to fungal ecotype (mycorrhizal versus free living).
机译:测试了九种菌根真菌和自由活动的腐生微生物在两种除草剂浓度和三种氮浓度下降解两种氯化芳族除草剂的能力。放射性标记的2,4-二氯苯氧基乙酸(2,4-D)和2-氯-4-乙基氨基-6-异丙基氨基-s-三嗪(阿特拉津)以1和4 mM的浓度用作底物。 8周后,所有测试的培养物都没有在4 mM 2,4-D下生长。但是,当2,4-D浓度降低到1 mM时,Phanerochaete chrysosporium 1767在所有氮条件下都具有最高水平的2,4-D矿化和降解。所有测试的培养物均在两种at去津浓度下生长。在所有情况下,类固醇菌根真菌Hymenoscyphus ericae 1318的组织中掺入的at去津碳含量最高。通常,随着氮浓度的增加,除草剂的总降解量增加。与1 mM阿特拉津相比,除根瘤菌7534和太平洋硬化菌9011外,所有培养物均显示出增加的降解(在4 mM时)。因此,降解这两种除草剂的能力似乎取决于真菌和除草剂,与真菌的生态型(菌根与自由生活)无关。

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