首页> 外文期刊>Plant physiology >WHOLE-NODULE CARBON METABOLITES ARE NOT INVOLVED IN THE REGULATION OF THE OXYGEN PERMEABILITY AND NITROGENASE ACTIVITY IN WHITE CLOVER NODULES
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WHOLE-NODULE CARBON METABOLITES ARE NOT INVOLVED IN THE REGULATION OF THE OXYGEN PERMEABILITY AND NITROGENASE ACTIVITY IN WHITE CLOVER NODULES

机译:全结节碳代谢物不参与调节白三叶结节的透氧性和氮酶活性

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To test the hypothesis of an indirect or direct involvement of carbon metabolites in the short-term regulation of nitrogenase activity, nodule O-2 permeability was manipulated either by defoliation or by varying rhizosphere O-2 partial pressure. In contrast to defoliation, a 50% reduction of the nodule O-2 permeability, due to adapting nodules to 40 kPa O-2, had no effect on nodule sucrose concentration. Likewise, total concentrations of other carbon metabolites such as fructose, starch, L-malate, and succinate tended to be differentially affected by the two treatments. Upon defoliation, carbon metabolites in roots responded in a manner similar to those in nodules. Sucrose concentration in nodules decreased significantly after the removal of 40% of the leaf area, which is known to have no effect on nitrogenase activity and O-2 permeability. During regrowth after a 100% defoliation, nitrogenase activity could be increased at any time by elevating rhizospheric O-2 partial pressure. Thus, during the entire growing cycle nitrogenase activity seems primarily oxygen limited. Changes in whole nodule sucrose pools after defoliation have to be viewed as secondary effects not necessarily linked to nodule activity. Whole-nodule carbon metabolites appear not to be determinants of nodule activity, either through direct metabolic involvement or through indirect effects such as triggering O-2 permeability. [References: 32]
机译:为了检验碳代谢物间接或直接参与短期调节固氮酶活性的假设,通过脱叶或改变根际O-2分压来控制结节O-2的渗透性。与脱叶相反,由于使结节适应40 kPa O-2,结节O-2渗透性降低了50%,对结节蔗糖浓度没有影响。同样,其他碳代谢物(如果糖,淀粉,L-苹果酸盐和琥珀酸盐)的总浓度也受两种处理的影响。落叶后,根部的碳代谢产物的响应方式与结核中的相似。去除40%的叶面积后,结节中的蔗糖浓度显着降低,这已知对硝化酶活性和O-2渗透性没有影响。在100%脱叶后的再生过程中,可通过升高根际O-2分压随时提高固氮酶的活性。因此,在整个生长周期中,固氮酶的活性似乎主要受氧的限制。落叶后整个结节蔗糖池的变化必须被视为与结节活动不一定相关的次要作用。全结节碳代谢产物似乎不是结节活动的决定因素,无论是直接代谢参与还是通过间接作用(例如触发O-2渗透性)。 [参考:32]

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