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Measurement of Legume Nodule Respiration and O2 Permeability by Noninvasive Spectrophotometry of Leghemoglobin

机译:豆科血红蛋白无创分光光度法测定豆科小结节呼吸和氧气透过率

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摘要

Physiological regulation of nodule gas permeability has a central role in the response of legumes to such diverse factors as drought, defoliation, and soil nitrate. A new method for quantifying nodule respiration and O2 permeability, based on noninvasive spectrophotometry of leghemoglobin, was evaluated using intact, attached nodules of Lotus corniculatus. First, the relationship between nodule respiration (O2 consumption) rate and internal O2 concentration was determined from the rate of decrease in fractional oxygenation of leghemoglobin (FOL) under N2. The rate of increase of FOL under 100% O2 was then used to calculate nodule O2 permeability, after correcting for respiration. Inactivation of nitrogenase by exposure to 100% O2 for 15 minutes led to decreases in both permeability and O2-saturated respiration (Vmax), but the brief (<15 seconds) exposures to 100% O2 required by the assay itself had little effect on either parameter. A gradual increase in external O2 concentration from 20 to 40% resulted in a reversible decrease in permeability, but no change in Vmax. The new method is likely to be useful for research on nodule physiology and might also be applicable to agronomic research and crop improvement programs.
机译:结节气体渗透性的生理调节在豆类对干旱,落叶和硝酸盐等多种因素的响应中起着核心作用。基于无创分光光度法检测豆血红蛋白,使用完整的,附着的莲花corn节评估了一种定量结节呼吸和氧气渗透性的新方法。首先,根据N2下豆血红蛋白(FOL)的部分氧分压的降低速率,确定结节呼吸(O2消耗)​​速率与内部O2浓度之间的关系。在校正呼吸之后,在100%O2下FOL的增加速率用于计算结节O2渗透性。通过暴露于100%O2 15分钟而使固氮酶失活会导致通透性和O2饱和呼吸(Vmax)均降低,但测定本身所需的短暂(<15秒)暴露于100%O2对二者均几乎没有影响参数。外部氧气浓度从20%逐渐增加到40%导致渗透率可逆降低,但Vmax不变。新方法可能对根瘤生理学研究很有用,也可能适用于农艺研究和作物改良计划。

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