Younes Nabil A, Anik Touhidur Rahman, Rahman Md Mezanur, Wardany Ahmed A, Dawood Mona F A, Tran Lam-Son Phan, Abdel Latef A A H, Mostofa Mohammad Golam
Horticulture Department, Faculty of Agriculture, Al-Azhar University, Assiut Branch, Assiut 71524, Egypt.
Institute of Genomics for Crop Abiotic Stress Tolerance, Department of Plant and Soil Science, Texas Tech University, Lubbock, TX 79409, USA.
Heliyon. 2023 Mar 2;9(3):e14203. doi: 10.1016/j.heliyon.2023.e14203. eCollection 2023 Mar.
Microbial biostimulants (MBs) promote plant growth and stress tolerance in a sustainable manner. However, precise field trials of MBs are required in natural setting with a range of crop varieties to harness the benefits of biostimulants on crop yield improvement. This study investigated the effects of two MBs, and , on an onion cultivar's growth, nutritional qualities, antioxidant properties, and yield potentials under field conditions for two successive years. Before transplantation, onion bulbs were gelatin-coated with 2.0 and 4.0 g L of each of the MB. Results revealed that MBs-pretreated onion plants exhibited better growth indices, photosynthetic pigment contents, and yield-attributing features like bulb weight than control plants. Nutraceutical analysis demonstrated that -pretreated (by 2.0 g L) onion cultivar enhanced the level of K (by 105.79%), Ca (by 37.77%), proline (by 34.21%), and total free amino acids (by 144.58%) in bulb tissues over the control plants. Intriguingly, the pretreatment with both and (by 2.0 g L) increased the levels of total soluble carbohydrates (by 19.10 and 84.02%), as well as antioxidant properties, including increased activities of superoxide dismutase (by 58.52 and 31.34%), catalase (by 164.71 and 232%), ascorbate peroxidase (by 175.35 and 212.69%), and glutathione--transferase (by 31.99 and 9.34%) and improved the contents of ascorbic acid (by 19.1 and 44.05%), glutathione (by 6.22 and 33.82%), and total flavonoids (by 171.98 and 56.24%, respectively) in the bulb tissues than control plants. Although both MBs promoted the growth and nutraceutical qualities of onion bulbs, pretreatment showed better effects than that of in the field settings. Based on the morphophysiological attributes and biochemical properties, a low dose (2.0 g L) was more effective than a high dose (4.0 g L) of in promoting onion growth. Overall, the current research findings imply that might be a potential MB in improving growth and quality attributes, and hence the productivity of onion cultivars under field circumstances.
微生物生物刺激素(MBs)以可持续的方式促进植物生长和提高胁迫耐受性。然而,需要在自然环境中对一系列作物品种进行MBs的精确田间试验,以利用生物刺激素对提高作物产量的益处。本研究连续两年在田间条件下,研究了两种MBs(此处原文缺失两种MBs的具体名称)对洋葱品种的生长、营养品质、抗氧化特性和产量潜力的影响。在移植前,用2.0克/升和4.0克/升的每种MB对洋葱鳞茎进行明胶包衣处理。结果表明,与对照植株相比,经MBs预处理的洋葱植株表现出更好的生长指标、光合色素含量以及鳞茎重量等产量相关特征。营养成分分析表明,用2.0克/升的(此处原文缺失具体MB名称)预处理的洋葱品种,其鳞茎组织中的钾含量(提高了105.79%)、钙含量(提高了37.77%)、脯氨酸含量(提高了34.21%)和总游离氨基酸含量(提高了144.58%)均高于对照植株。有趣的是,用2.0克/升的两种MBs(此处原文缺失具体MB名称)预处理均提高了总可溶性碳水化合物含量(分别提高了19.10%和84.02%)以及抗氧化特性,包括超氧化物歧化酶活性(分别提高了58.52%和31.34%)、过氧化氢酶活性(分别提高了164.71%和232%)、抗坏血酸过氧化物酶活性(分别提高了175.35%和212.69%)和谷胱甘肽-S-转移酶活性(分别提高了31.99%和9.34%),并提高了鳞茎组织中抗坏血酸含量(分别提高了19.1%和44.05%)、谷胱甘肽含量(分别提高了6.22%和33.82%)和总黄酮含量(分别提高了171.98%和56.24%),均高于对照植株。尽管两种MBs都促进了洋葱鳞茎的生长和营养品质,但在田间环境中,(此处原文缺失具体MB名称)预处理的效果优于(此处原文缺失具体MB名称)。基于形态生理特性和生化特性,低剂量(2.0克/升)的(此处原文缺失具体MB名称)在促进洋葱生长方面比高剂量(4.0克/升)更有效。总体而言,目前的研究结果表明,(此处原文缺失具体MB名称)可能是提高洋葱品种在田间环境下的生长和品质属性以及生产力的一种潜在MB。