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首页> 外文期刊>Journal of the Saudi Society of Agricultural Sciences >Yield and yield components of wheat as affected by salinity and inoculation with Azospirillum strains from saline or non-saline soil
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Yield and yield components of wheat as affected by salinity and inoculation with Azospirillum strains from saline or non-saline soil

机译:盐分和接种盐渍土或非盐渍土的偶氮螺旋菌菌株对小麦产量和产量构成的影响

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AbstractIn many arid and semi-arid areas of the world where sustainability of agriculture is limited by salinity, use of biological potential may be a key component of sustainable plant production. A greenhouse experiment was used to test the effectiveness of inoculation with Azospirillum strains isolated from saline or non-saline soil in alleviating the salinity stress in wheat plants grown with irrigation water with different electrical conductivities (ECw) of 0.7, 4, 8 and 12 dS m−1. Inoculation with the two isolates increased salinity tolerance of wheat plants; the saline-adapted isolate significantly increased shoot dry weight and grain yield under severe water salinity. The component of grain yield most affected by inoculation was grains per plant. Plants inoculated with saline-adapted Azospirillum strains had higher N concentrations at all water salinity levels.
机译:摘要在世界上许多干旱和半干旱地区,盐碱化限制了农业的可持续性,生物潜力的利用可能是可持续植物生产的关键组成部分。使用温室试验来测试接种从盐水或非盐渍土壤中分离出的固氮螺菌菌株在缓解以0.7、4、8和12 dS的不同电导率(ECw)灌溉水生长的小麦植物中盐分胁迫方面的有效性m -1 。接种两种分离株提高了小麦植物的耐盐性。在盐分严重的情况下,适应盐水的分离株显着增加了茎干重量和籽粒产量。受接种影响最大的谷物产量成分是每株植物的谷物。在所有水盐度水平下,接种适应盐水的固氮螺菌菌株的植物均具有较高的氮浓度。

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