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Peanut Nitrogen Fixation (C_2H_2 Reduction) Response to Soil Dehydration

机译:花生固氮(C_2H_2还原)对土壤脱水的响应

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Peanut (Arachis hypogaea L.) is commonly grown on sandy soils that are susceptible to water deficits. Because symbiotic nitrogen fixation in other grain legumes is especially sensitive to soil drying, the sensitivity of peanut nitrogen fixation to water deficits might be an important limitation on peanut production. This greenhouse study was undertaken to observe the response of nitrogen fixation (acetylene reduction) in six peanut cultivars to soil drying. In contrast to other grain legumes, peanutnitrogen fixation was relatively insensitive to soil drying. Acetylene reduction rates did not begin to decrease until soil water deficits had decreased to where leaf gas exchange was affected. These data indicated that restricted nitrogen fixation during drought stress is not likely to be a serious problem in peanut. Nevertheless, cultivar variation in drought sensitivity was identified indicating that genetic selection might further decrease the susceptibility of peanut nitrogen fixation to drought.
机译:花生(Arachis hypogaea L.)通常生长在容易缺水的沙质土壤上。由于其他谷物豆类中的共生固氮对土壤干燥特别敏感,因此花生固氮对水分亏缺的敏感性可能是限制花生生产的重要因素。进行该温室研究以观察六个花生品种的固氮作用(乙炔还原)对土壤干燥的响应。与其他谷物豆科植物相反,花生固氮对土壤干燥相对不敏感。直到土壤缺水减少到影响叶片气体交换的地方,乙炔的还原率才开始下降。这些数据表明,干旱胁迫下严格的固氮作用不太可能成为花生的严重问题。然而,已鉴定出干旱敏感性的品种差异表明基因选择可能会进一步降低花生固氮对干旱的敏感性。

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