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Influence of External Nitrogen on Nitrogenase Enzyme Activity and Auxin Production in Herbaspirillum seropedicae (Z78)

机译:外源氮对草螺旋藻(Z78)固氮酶活性和生长素产生的影响

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摘要

The production of nitrogenase enzyme and auxins by free living diazotrophs has the potential to influence the growth of host plants. In this study, diazotrophs were grown in the presence of various concentrations of nitogen (N) to determine the optimal concentration of N for microbial growth stimulation, promotion of gaseous N (N2) fixation, and phytohormone production. Therefore, we investigate whether different levels of N supplied to Herbaspirillum seropedicae (Z78) have significant effects on nitrogenase activity and auxin production. The highest nitrogenase activity and the lowest auxin production of H. seropedicae (Z78) were both recorded at 0 gL−1 of NH4Cl. Higher levels of external N caused a significant decrease in the nitrogenase activity and an increased production of auxins. In a subsequent test, two different inoculum sizes of Z78 (106 and 1012 cfu/ml) were used to study the effect of different percentages of acetylene on nitrogenase activity of the inoculum via the acetylene reduction assay (ARA). The results showed that the optimal amount of acetylene required for nitrogenase enzyme activity was 5% for the 106 cfu/ml inoculum, whereas the higher inoculum size (1012 cfu/ml) required at least 10% of acetylene for optimal nitrogenase activity. These findings provide a clearer understanding of the effects of N levels on diazotrophic nitrogenase activity and auxin production, which are important factors influencing plant growth.
机译:游离的重氮营养生物产生的固氮酶和植物生长素具有影响寄主植物生长的潜力。在这项研究中,重氮营养菌在各种浓度的氮素(N)的存在下生长,以确定用于微生物生长刺激,促进气态N(N2)固定和植物激素产生的最佳N浓度。因此,我们调查了不同水平的氮供应给猪草螺旋藻(Z78)对固氮酶活性和生长素的产生是否有显着影响。在0 gL -1 NH4Cl浓度下,最高的浆膜状双歧杆菌(Z78)的固氮酶活性最低。较高水平的外部氮导致固氮酶活性显着下降和植物生长素的增加。在随后的测试中,使用两种不同大小的Z78接种物(10 6 和10 12 cfu / ml)来研究不同百分比的乙炔对烟草中固氮酶活性的影响。通过乙炔还原试验(ARA)接种。结果表明,对于10 6 cfu / ml接种物,硝化酶活性所需的最佳乙炔量为5%,而较大的接种物大小(10 12 cfu / ml毫升)需要至少10%的乙炔才能获得最佳的固氮酶活性。这些发现提供了对氮水平对重氮养分氮酶活性和植物生长素产生的影响的更清晰的理解,这是影响植物生长的重要因素。

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