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Effects of changes in applied nitrogen concentrations on nodulation, nitrogen fixation and nitrogen accumulation during the soybean growth period

机译:施加氮浓度变化对大豆生长期染色,氮固定和氮积累的影响

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The specific mechanism by which nitrogen application affects nodulation and nitrogen fixation in legume crops remains uncertain. To further study the effects of nitrogen application on soybean nodulation and nitrogen accumulation, three consecutive tests were performed during the VC-V4, V4-R1 (10 days), and R1-R2 (10 days) growth periods of soybean. In a dual-root soybean system, seedlings on one side were watered with a nutrient solution containing NH4+ or NO3- as the N source (N+ side), and those on the other side were watered with a nitrogen-free nutrient solution (N- side). During the VC-R2 period, on the N+ side, high nitrogen treatment inhibited nodule growth and nitrogenase activity (EC 1.18.6.1), and the inhibition was significantly increased with increasing high nitrogen supply time (10 days, 20 days). When the high nitrogen treatment time reached 20 days, the specific nitrogenase activity (C2H4 mu mol(-1) g(-1) nodule dry mass h(-1)) was similar to that in the low nitrogen treatment, indicating that the nitrogen fixation capacity per gram of dry mass nodules was almost the same. Therefore, it is assumed that long-term high nitrogen treatment mainly reduces nitrogen fixation by reducing the nodule number. The effect of nitrogen concentration on the roots on the N+ side was greater than that on the N- side. Taken together, these results indicate that nitrogen application affects a contact-dependent local inhibition of root nodule growth, nitrogenase activity, and nitrogen accumulation. The whole plant systematically regulates specific nitrogenase activity, and high nitrogen inhibition is recoverable.
机译:氮施用影响豆科作物氮施用和氮固定的具体机制仍然不确定。为了进一步研究氮施用对大豆瘤的影响和氮积累,在VC-V4,V4-R1(10天)和R1-R2(10天)生长期间进行三次连续试验。在双根大豆系统中,一侧的幼苗用含有NH 4 +或NO 3的营养溶液浇水 - 作为N源(n +侧),另一侧的液体用无氮营养溶液浇水(n-边)。在VC-R2期间,在N +侧,高氮处理抑制结节生长和氮酶活性(EC 1.18.6.1),随着高氮供应时间(10天,20天),抑制显着增加。当高氮处理时间达到20天时,比氮酶活性(C 2 H 4 Mmol(-1)G(-1)结节干质量H(-1))类似于低氮处理,表明氮气每克干质量结节的固定容量几乎是相同的。因此,假设长期高氮处理主要通过减少结节数来降低氮固定。氮浓度对n +侧的根部的影响大于N-侧的根部。总之,这些结果表明氮施用会影响根结节生长,氮酶活性和氮积累的接触依赖性局部抑制。整个植物系统地调节特定的氮酶活性,高氮抑制是可回收的。

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