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Effect of Supra-Ambient Oxygen on Nitrogenase Activity (C2H2) and Root Respiration of Soybeans and Isolated Soybean Bacteroids

机译:超环境氧对大豆及离体大豆类细菌氮酶活性(C2H2)和根系呼吸的影响

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摘要

Isolated soybean (Glycine max [L.] Merr. cv Wilkin) bacteroids have O2-dependent nitrogenase activity which is strongly inhibited by supraoptimal O2 concentrations. Oxygen-inhibited nitrogenase activity is recovered by addition of 10 millimolar sodium succinate or by lowering the O2 concentration.Brief treatment of roots of intact soybean plants with 1.0 atmosphere O2 reduces nitrogenase activity (C2H2). There is a rapid partial recovery of activity within 2 to 3 hours, and a slower return to near normal levels by 36 hours. The drop and recovery of nitrogenase activity is accompanied by a parallel drop and increase in root respiration. There is a direct relationship between the change in respiration and the change in acetylene reduction following O2 treatment. The O2-mediated changes in nitrogenase activity and root respiration are not affected by the planting medium. The ratio of the change in respiration to the change in nitrogenase activity was the same in 13 soybean cultivars.
机译:分离的大豆(Glycine max [L.] Merr。cv Wilkin)类细菌具有O2依赖的固氮酶活性,该酶被超最佳O2浓度强烈抑制。通过添加10毫摩尔的琥珀酸钠或降低O2的浓度可以恢复氧气抑制的固氮酶的活性。用1.0个大气压的O2对完整大豆植株的根进行简短处理会降低固氮酶的活性(C2H2)。在2到3个小时内,活动会迅速恢复,而在36个小时内,恢复到接近正常水平的速度会变慢。固氮酶活性的下降和恢复伴随着根呼吸的平行下降和增加。 O2处理后呼吸变化与乙炔还原变化之间存在直接关系。 O2介导的固氮酶活性和根系呼吸的变化不受种植培养基的影响。在13个大豆品种中,呼吸变化与固氮酶活性变化的比率相同。

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