首页> 美国卫生研究院文献>Plant Physiology >Reduced Carbon Availability to Bacteroids and Elevated Ureides in Nodules But Not in Shoots Are Involved in the Nitrogen Fixation Response to Early Drought in Soybean
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Reduced Carbon Availability to Bacteroids and Elevated Ureides in Nodules But Not in Shoots Are Involved in the Nitrogen Fixation Response to Early Drought in Soybean

机译:大豆中固氮菌对固氮的响应涉及到降低了细菌中碳的利用率而结节中的尿素含量却升高了而芽中却没有。

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摘要

Nitrogen fixation (NF) in soybean (Glycine max L. Merr.) is highly sensitive to soil drying. This sensitivity has been related to an accumulation of nitrogen compounds, either in shoots or in nodules, and a nodular carbon flux shortage under drought. To assess the relative importance of carbon and nitrogen status on NF regulation, the responses to the early stages of drought were monitored with two soybean cultivars with known contrasting tolerance to drought. In the sensitive cultivar (‘Biloxi’), NF inhibition occurred earlier and was more dramatic than in the tolerant cultivar (‘Jackson’). The carbon flux to bacteroids was also more affected in ‘Biloxi’ than in ‘Jackson’, due to an earlier inhibition of sucrose synthase activity and a larger decrease of malate concentration in the former. Drought provoked ureide accumulation in nodules of both cultivars, but this accumulation was higher and occurred earlier in ‘Biloxi’. However, at this early stage of drought, there was no accumulation of ureides in the leaves of either cultivar. These results indicate that a combination of both reduced carbon flux and nitrogen accumulation in nodules, but not in shoots, is involved in the inhibition of NF in soybean under early drought.
机译:大豆(Glycine max L. Merr。)中的固氮对土壤干燥高度敏感。这种敏感性与氮化合物在枝条或小结节中的积累以及干旱引起的结节性碳通量短缺有关。为了评估碳和氮状况对NF调节的相对重要性,使用已知对干旱具有相对耐受性的两个大豆品种监测对干旱早期的响应。在敏感品种(“ Biloxi”)中,NF抑制发生的时间比耐受品种(“ Jackson”)更早,并且抑制作用更大。与“杰克逊”相比,“比洛克西”中对类细菌的碳通量也受到更大的影响,这是因为蔗糖合酶活性受到了更早的抑制,而前者中苹果酸浓度的下降幅度更大。干旱激发了两个品种的根瘤中的脲化物积累,但是这种积累较高,并且在“比洛克西”发生的时间更早。但是,在干旱的这一早期阶段,两个品种的叶片中都没有尿素的积累。这些结果表明,在干旱早期,结节中的碳通量和氮积累(而不是枝条中)减少的组合与大豆中NF的抑制有关。

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