首页> 外文期刊>Arab Universities Journal of Agricultural Sciences >Potentiality of Using Mycorrhizae and Pseudomonas fluorescens in Reducing the Effect of Water Shortage on Broccoli Plants
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Potentiality of Using Mycorrhizae and Pseudomonas fluorescens in Reducing the Effect of Water Shortage on Broccoli Plants

机译:使用菌根和荧光假单胞菌减少缺水对西兰花植株影响的潜力

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摘要

Accelerating global warming and water scarcity and improving water use efficiency are considered essential factors for achieving adequate crop development and productivity. Therefore, the authors targeted the use of arbuscular mycorrhizal fungi (AMF) and Pseudomonas fluorescens (Ps1) for improving growth, productivity, and water use efficiency of broccoli plants (Brassica olercea L. var. italica, cv. Belstar F1) under various irrigation regimes i.e., 50, 75, and 100 of crop evapotranspiration (ETc). Two greenhouse experiments were carried out in clayey soil. The combined inoculation of endomycorrhizae and Ps. fluorescens (Ps1) improved water use efficiency and consequently vegetative growth and yield. Under the applied irrigation regime 75 ETc of broccoli inoculated with both endomycorrhizae and Ps. fluorescens (Ps1) showed higher head weight (616 and 647 gram) than those grown under the irrigation regime 75 ETc combined with endomycorrhizae (568 and 559 gram) during the two seasons, respectively. However, a minimum yield value of 149 and 142 grams per plant was recorded for un-inoculated plants grown under 50 irrigation regime during both seasons. In conclusion, the combined inoculation with endomycorrhizae and Ps. fluorescens (Ps1) under irrigation regime 75 ETc was the optimum combination for increasing water stress resistance and broccoli productivity under water scar-city circumstances.
机译:加速全球变暖和水资源短缺以及提高用水效率被认为是实现作物充分发育和生产力的重要因素。因此,作者针对丛枝菌根真菌 (AMF) 和荧光假单胞菌 (Ps1) 的使用,以改善西兰花植物 (Brassica olercea L. var. italica, cv. Belstar F1) 在各种灌溉条件下的生长、生产力和水分利用效率,即 50%、75% 和 100% 的作物蒸散 (ETc)。在粘性土壤中进行了两次温室试验。内生菌根和荧光假单胞菌(Ps1)联合接种提高了水分利用效率,从而提高了营养生长和产量。在施用灌溉方案下,接种内生菌根和荧光假单胞菌(Ps1)的西兰花的75% ETc头重(616和647 g)高于在75% ETc联合内生菌根下生长的西兰花(568和559 g)。然而,在两个季节中,在50%灌溉条件下生长的未接种植物的最低产量值分别为每株149克和142克。综上所述,在75% ETc灌溉条件下,内生菌根和荧光假单胞菌(Ps1)联合接种是提高缺水城市条件下西兰花抗水性和生产力的最佳组合。

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