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Heterotrophic Nitrification in an Acid Forest Soil and by an Acid-Tolerant Fungus

机译:酸性森林土壤和耐酸真菌的异养硝化作用

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摘要

Nitrate was formed from ammonium at pH 3.2 to 6.1 in suspensions of a naturally acid forest soil; the maximum rates of formation occurred at ca. pH 4 to 5. Nitrate was also formed from soil nitrogen in suspensions incubated at 50°C. Autotrophic nitrifying bacteria could not be isolated from this soil. Enrichment cultures produced nitrate in a medium with β-alanine if much soil was added to the medium, and nitrite but not nitrate was formed in the presence of small amounts of soil. Nitrification by these enrichments was abolished by eucaryotic but not procaryotic inhibitors. A strain of Absidia cylindrospora isolated from this soil was found to produce nitrate and nitrite in a medium with β-alanine at pH values ranging from 4.0 to 4.8. Nitrate production by A. cylindrospora required the presence of sterile soil. Free and bound hydroxylamine, hydroxamic acids, and primary aliphatic nitro compounds did not accumulate during the conversion of β-alanine to nitrite by the fungus. The organism also formed nitrite from ammonium in a medium containing acetate. We suggest that nitrification in this soil is a heterotrophic process catalyzed by acid-tolerant fungi and not by autotrophs or heterotrophs in nonacid microsites.
机译:硝酸盐是在天然酸性森林土壤的悬浮液中,由pH为3.2至6.1的铵形成的。最大的形成速度发生在约。 pH值为4至5。硝酸盐也由土壤氮在50℃温育的悬浮液中形成。无法从该土壤中分离出自养硝化细菌。如果向培养基中添加了很多土壤,则浓缩培养物会在含有β-丙氨酸的培养基中产生硝酸盐,在少量土壤存在的情况下会形成亚硝酸盐而不生成硝酸盐。这些富集的硝化作用被真核生物抑制剂抑制,而原核生物抑制剂则没有。发现从该土壤中分离出的Absidia cylindrospora菌株在pH值为4.0至4.8的含β-丙氨酸的培养基中产生硝酸盐和亚硝酸盐。圆孢曲霉产生硝酸盐需要存在无菌土壤。在真菌将β-丙氨酸转化为亚硝酸盐的过程中,游离的和结合的羟胺,异羟肟酸和伯脂肪族硝基化合物没有积累。该生物还从含有乙酸盐的培养基中的铵形成亚硝酸盐。我们建议在这种土壤中硝化是耐酸真菌催化的异养过程,而不是非酸性微场所中的自养或异养菌。

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