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首页> 外文期刊>Journal of Agronomy and Crop Science/Zeitschrift fur acker-und pflanzenbau >Relationship between Biomass Production and Nitrogen Fixation under Drought-Stress Conditions in Peanut Genotypes with Different Levels of Drought Resistance
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Relationship between Biomass Production and Nitrogen Fixation under Drought-Stress Conditions in Peanut Genotypes with Different Levels of Drought Resistance

机译:不同抗旱水平基因型花生在干旱条件下生物量产生与固氮的关系

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摘要

The relationship between biomass production and N fixation under drought-stress conditions in peanut genotypes with different levels of drought resistance is not well understood. The objective of this study was to determine the effect of drought on biomass production and N fixation by evaluating the relative values of these two traits under well watered and water-stress conditions. Twelve peanut genotypes were tested under field conditions in the dry seasons of 2003/2004 and 2004/2005 in north-east Thailand. A split-plot design with four replications was used. Main-plot treatments were three water regimes [field capacity (FC), 2/3 available soil water (AW) and 1/3 AW], and sub-plot treatments were 12 peanut lines. Data were recorded on biomass production and N fixation under well watered and water-stress conditions. Genotypic variations in biomass production and N fixation were found at all water regimes. Biomass production and N fixation decreased with increasing levels of drought stress. Genotypes did not significantly differ in reductions for biomass production, but did differ for reductions in N fixation. High biomass production under both mild and severe drought-stress conditions was due largely to high potential biomass production under well-watered conditions and, to a lesser extent, the ability to maintain high biomass production under drought-stress conditions. High N fixation under drought stress also was due largely to high N fixation under well-watered conditions with significant but lower contributions from the ability to maintain high nitrogen fixation under drought stress. N fixation at FC was not correlated with the reduction in N fixation at 2/3 AW and 1/3 AW. Positive relationships between N fixed and biomass production of the tested peanut genotypes were found at both levels of drought stress, and the relationship was stronger the more severe the drought stress. These results suggested that the ability to maintain high N fixation under drought stress could aid peanut genotypes in maintaining high yield under water-limited conditions.
机译:不同抗旱水平的花生基因型在干旱胁迫条件下生物量生产与固氮之间的关系尚不清楚。这项研究的目的是通过评估在水分充足和水分胁迫条件下这两个性状的相对值,确定干旱对生物量生产和固氮的影响。在泰国东北部2003/2004年和2004/2005年的旱季,在田间条件下测试了12种花生基因型。使用具有四个重复的分裂图设计。主样处理为三种水处理方式[田间持水量(FC),2/3有效土壤水(AW)和1/3 AW],次样处理为12个花生系。记录有关在充足灌溉和水分胁迫条件下生物量生产和固氮的数据。在所有水域中均发现了生物量生产和固氮的基因型变化。生物量生产和固氮随着干旱胁迫水平的提高而降低。基因型在减少生物量产生方面没有显着差异,但在减少固氮方面却没有差异。在轻度和重度干旱胁迫条件下的高生物量生产很大程度上是由于在灌溉条件良好的情况下潜在的高生物量生产,以及在较小程度上是在干旱胁迫条件下维持高生物量生产的能力。干旱胁迫下的高固氮作用还主要归因于在充足灌溉条件下的高固氮作用,而干旱胁迫下保持高固氮能力的贡献却显着但较低。 FC处的固氮与2/3 AW和1/3 AW下固氮的减少无关。在两个干旱胁迫水平下,受试花生基因型的固氮含量与生物量生产之间存在正相关关系,且干旱胁迫越严重,这种关系越强。这些结果表明,在干旱胁迫下保持高固氮能力可以帮助花生基因型在缺水条件下保持高产。

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