酵母基生物肥料配菌对芥菜生长的影响

N. Alami
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引用次数: 6

摘要

生物肥料通常被定义为微生物接种剂,它能够通过其生物过程将土壤中的重要营养物质从非有效形式转移到植物的有效形式。因此,为了提高土壤的生产力,使用生物肥料是必要的。念珠菌作为磷酸盐增溶剂和分解者。固氮细菌作为固氮菌,芽孢杆菌作为磷酸盐增溶剂。这些微生物作为生物肥料组合使用对芥菜(Brassica juncea L.)植株生长的影响有待研究。结果表明,配施念珠芽孢杆菌的产量最高,株高13.6 cm,湿重4.96 g,干重2.29 g。假丝酵母偶氮菌组合对叶片宽度和叶片数的影响最大,分别为20.3 cm和5.3 cm。固氮菌组合在根长参数上产量最高,为5.0 cm。生物肥料的添加有望减少化肥残留对土壤的污染。关键词:固氮菌,芽孢杆菌,生物肥料,念珠菌,芥菜
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Effect of Yeast Based Biofertilizer combined with bacteria on Mustard Plant Growth
Biofertilizers are commonly defined as microbial inoculants which are capable of mobilizing important nutrient in the soil from non-available to available form for the plants through their biological processes. Hence to increase the productivity of the soil, the use of biofertilizer is necessary. Candida yeast as a phosphate solubilizer and decomposer. Azotobacter bacteria as a nitrogen-fixing bacteria and Bacillus as a phosphate solubilizer. The combination of these microorganisms as biofertilizer needs to be tested its effect against mustard ( Brassica juncea L.) plant growth.The results showed that the combination of Bacillus Candida obtained the highest yield among other biofertilizer treatments with a value of 13.6 cm at plant height, 4.96 grams in wet weight and 2.29 grams in dry weight. The combination of Azotobacter Candida showed the highest result on the parameter of width and number of leaves with the values of 20.3 cm and 5.3. Combination of Azotobacter Bacillus Candida showed the highest yield on the root length parameter with a value of 5.0 cm. The addition of biofertilizer is expected to reduce pollution on the soil due to residues produced by chemical fertilizers. Keyword : Azotobacter, Bacillus, Biofertilizer, Candida, Mustard Plant
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