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首页> 外文期刊>British Microbiology Research Journal >Impact of Endomycorrhizae and Acidithiobacillusferrooxidans with Sulfur and Phosphorus Nutritionon Onion (Allium cepa L.) and Maize (Zea mays L.)Plants under Field Conditions
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Impact of Endomycorrhizae and Acidithiobacillusferrooxidans with Sulfur and Phosphorus Nutritionon Onion (Allium cepa L.) and Maize (Zea mays L.)Plants under Field Conditions

机译:硫和磷营养对内生菌根和酸性硫代细菌亚铁氧化物的影响在田间条件下对洋葱(ceium Lepa)和玉米(Zea mays L.)

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摘要

Aim: To evaluate the effects of endomycorrhizal fungi (AMF) and sulfur oxidizing bacteria as biofertilizers in presence of phosphors and sulfur as mineral nutrients on onion (Allium cepa L.) and maize (Zea mays L.) plants under field conitions.Study Design: Identification of the used bacterial isolate and applied with endomycorrhizae individually or mixed culture as bioinoculum for onion and maize plants grown in sandy soil under field conditions.Methodology: sequence analysis of 16S rRNA gene was applied to identify the bacterial isolate. Two field experiments were carried out in sandy soil to study the effect of AMF and the sulfur oxidizing bacterium individually or combination with the recommended dose of N, K and P (as rock phosphate or super phosphate) with or without sulphur element, on some growth parameters, nutrients content and yield parameter of maize and onion crops .Results: Results indicated that the bacterial isolate A1 was identified as Acidithiobacillus ferrooxidans based upon the 99% of sequence similarity of 16S rRNA gene with the reference strain. Field experiments revealed that after 60 and 90 days, inoculation of onion plants with dual inoculation induced significant response in nutrient content, but this response was found after 90 days in case of maize plant. The maximum data of the sulphur oxidizing bacterial count, dehydrogenase activity and CO2 evolution in the rhizosphere were obtained after 60 days of cultivation for onion and after 90 days with maize plants. Inoculation with Acidithiobacillus ferrooxidans A1+ AMF in amended soil with NK + S + R.P gave the best results in N, P and K content of onion crop, bulbs weight and pyruvic acid content. For maize plant, data indicated that added recommended dose of nitrogen, potassium, sulphur and rock phosphate (NK+S+R.P) with AMF + Acidithiobacillus ferrooxidans A1 inoculant led to highest significant increases of nitrogen , phosphours and potassium contents compared to other treatments. Also, there were high significant increases in dry weight of 100 seeds, ear weight and its nutrients content with the abovementioned treatment.Conclusion: The dual application of a mixture of arbuscular mycorrhizal fungi and Acidithiobacillus ferrooxidans A1 seems to have the most pronounced effect on quality and quantity of onion bulbs and yield of maize plants with the recommended dose of sulphur and rock phosphate fertilizers in sandy soil.
机译:目的:评价田间条件下内生菌根真菌(AMF)和硫氧化细菌作为生物肥料在磷和硫作为矿质营养素对洋葱(Allium cepa L.)和玉米(Zea mays L.)植物的影响。 :鉴定所用的细菌分离株,并与内生菌根菌或单独培养物一起用作田间条件下在沙质土壤中生长的洋葱和玉米植物的生物菌种。方法:应用16S rRNA基因序列分析鉴定细菌分离株。在沙质土壤上进行了两个田间试验,研究了AMF和硫氧化细菌单独或与推荐剂量的N,K和P(磷矿石或过磷酸盐)(含或不含硫元素)的组合对某些生长的影响结果:结果表明,根据16S rRNA基因与参考菌株99%的序列相似性,细菌分离株A1被鉴定为氧化亚铁硫杆菌。田间试验表明,分别接种60天和90天后,两次接种洋葱植株会引起显着的养分响应,但玉米植株90天后才发现。洋葱培养60天后和玉米植株培养90天后,获得了根际中硫氧化细菌数量,脱氢酶活性和CO2释放量的最大数据。在改良的土壤中用NK + S + R.P接种铁酸酸性硫杆菌A1 + AMF可以使洋葱作物的N,P和K含量,鳞茎重和丙酮酸含量达到最佳效果。对于玉米植物,数据表明与AMF +酸性硫代氧化亚铁氧化铁A1接种剂一起添加推荐剂量的氮,钾,硫和磷酸岩(NK + S + R.P),与其他处理相比,氮,磷和钾含量显着增加。同样,通过上述处理,100粒种子的干重,穗重及其养分含量也显着增加。结论:丛枝菌根真菌和酸性氧化硫铁氧体A1的混合物的双重施用似乎对品质有最明显的影响。在砂质土壤中使用推荐剂量的硫和磷矿石肥料的洋葱鳞茎的数量,玉米植株的产量和产量。

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