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首页> 外文期刊>International Journal of Biosciences >Plant growth-promoting rhizobacteria improved growth, yield and yield components of Lentil ( Lens culinaris Medic ) under shading growing conditions
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Plant growth-promoting rhizobacteria improved growth, yield and yield components of Lentil ( Lens culinaris Medic ) under shading growing conditions

机译:遮荫生长条件下,促进植物生长的根瘤菌改善了扁豆的生长,产量和产量构成要素(Lens culinaris Medic)

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A farm experiment was conducted to observe the effects of Azosspirillum strain Brasilience inoculation and artificial shading on the yield and yield components of lentil. The seeds of lentil were incubated in flasks by shaking at 80 rpm for 2 h at 28 °C to coat the seeds with the rhizobacteria. In this experiment two factors including five shading levels (control (no shading), 25%, 50%, 75% and 100% shading) and bio - priming with plant growth - promoting rhizobacteria (seed inoculation with Azospirillum and control) arranged in a factorial experiment based on randomized complete block design with three replications. Shading had significant effect on all traits includ ing number of filled pod, grain number per plant, 100 grain weight, harvest index (HI), biomass yield and grain yield. Also, bio - priming had significant effect on all mentioned traits except harvest index and their interaction were significant (P< 0.01) on all traits except 100 grain weight. The results showed that the highest grain yield (2612.4 kg per ha.), HI (33.9), grain number per plant (43.67), number of filled pod (35.5), resulted from no shading (control) and bio - priming (seed inoculation with Azos spirillum). The lowest amounts of mentioned traits resulted from 100% shading and without bacterial application. Although, Maximum biomass yield achieved from 100 shading and bacterial application. The results of this study suggest that seed inoculation wi th Azosspirillum have the potential to increase the growth and yield of lentil plant under shading growing conditions
机译:进行了一项农场实验,观察了固氮菌菌株的抗性接种和人工遮光对扁豆产量和产量构成的影响。扁豆的种子在烧瓶中通过在28°C下以80 rpm的频率摇动2 h进行孵育,以用根瘤菌包被。在这个实验中,两个因素包括五个阴影水平(对照(无阴影),25%,50%,75%和100%阴影)和生物引发与植物生长促进根际细菌(接种偶氮螺旋菌和对照的种子)。基于具有三个重复的随机完整块设计的析因实验。遮荫对所有性状都有显着影响,包括实心荚数,单株籽粒数,100粒重,收获指数(HI),生物量产量和籽粒产量。另外,生物引发对除收获指数以外的所有上述性状均具有显着影响,除100粒重外,它们对所有其他性状的相互作用均具有显着性(P <0.01)。结果表明,最高的谷物产量(2612.4千克/公顷),HI(33.9),单株籽粒数量(43.67),填充荚果数量(35.5)是由于没有遮荫(对照)和生物灌底(种子)接种Azos spirillum)。提及的性状量最低,是由于100%遮光且未施加细菌。虽然,通过100次遮光和细菌施用可实现最大的生物量产量。这项研究的结果表明,在阴凉的生长条件下,接种固氮藻的种子有可能增加小扁豆植物的生长和产量。

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