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氩气诱导大豆根瘤中固氮酶活性下降期间氧气浓度升高的影响

Effect of Increases in Oxygen Concentration during the Argon-Induced Decline in Nitrogenase Activity in Root Nodules of Soybean.

作者信息

King B J, Layzell D B

机构信息

Department of Biology, Queen's University, Kingston, Ontario, Canada K7L 3N6.

出版信息

Plant Physiol. 1991 Jun;96(2):376-81. doi: 10.1104/pp.96.2.376.

Abstract

When intact nodulated roots of soybean (Glycine max L. Merr. nodulated with Bradyrhizobium japonicum strain USDA 16) were exposed to an atmosphere lacking N(2) gas (Ar:O(2) 80:20), total nitrogenase activity (measured as H(2) evolution) and respiration (CO(2) evolution) declined with time of exposure. In Ar-inhibited nodules, when the O(2) concentration in the rhizosphere was increased in a linear ;ramp' of 2.7% per minute, 93% of the original H(2) evolution and 99% of the CO(2) evolution could be recovered. The internal nodule O(2) concentration (estimated from leghemoglobin oxygenation) declined to 56% of its initial value after 60 minutes of Ar:O(2) exposure and could be partially recovered by the linear increases in O(2) concentration. Nodule gas permeability, as estimated from the lag in ethylene production following exposure of nodules to acetylene, decreased to 26% of its initial value during the Ar-induced decline. Collectively, the results provide direct evidence that the Ar-induced decline results from decreased nodule gas permeability and indicate that the decline in permeability, rather than being immediate, occurs gradually over the period of Ar:O(2) exposure.

摘要

当用日本慢生根瘤菌USDA 16菌株接种的大豆(Glycine max L. Merr.)完整根瘤暴露于缺乏N₂气体的大气(氩气:氧气80:20)中时,总固氮酶活性(以H₂释放量衡量)和呼吸作用(CO₂释放量)随暴露时间下降。在氩气抑制的根瘤中,当根际O₂浓度以每分钟2.7%的线性“斜坡”增加时,93%的原始H₂释放量和99%的CO₂释放量可以恢复。在氩气:氧气暴露60分钟后,根瘤内部O₂浓度(根据豆血红蛋白氧合作用估算)降至其初始值的56%,并且可以通过O₂浓度的线性增加部分恢复。根据根瘤暴露于乙炔后乙烯产生的延迟估算,根瘤气体渗透率在氩气诱导的下降过程中降至其初始值的26%。总的来说,这些结果提供了直接证据,表明氩气诱导的下降是由于根瘤气体渗透率降低所致,并表明渗透率的下降不是立即发生的,而是在氩气:氧气暴露期间逐渐发生的。

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