生物施肥对辣木抗微生物活性及植物化学特性的影响

soha zalat, Samia H. Abou zekry, Afaf Ali Amin, Maha Amin Hewedy
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摘要

盆栽试验于2019年5月在埃及开罗el Manyial的私人农场进行。本研究旨在了解促进植物生长的根瘤菌(蜡状芽孢杆菌、芝巴链霉菌、巨型芽孢杆菌、多粘芽孢杆菌)单独或联合施用与矿物施肥对辣木叶片抑菌活性及部分植物化学成分的影响。与对照处理相比,矿物施肥处理(GP4)(巨型芽孢杆菌、多粘芽孢杆菌)对大肠杆菌、鼠伤寒沙门氏菌、金黄色葡萄球菌、铜绿假单胞菌、黑曲霉、stolonifer根霉和葡萄球菌等7种食源性致病菌的抗菌活性最高。生物肥处理(megaterium B., polymyxa B.)的多酚含量比对照(GP10)增加了160.8%,化学肥处理减少了5.41%,抗氧化剂含量比对照(GP10)增加了81.1%,化学肥处理(GP9)减少了5.6%,无机肥和生物肥处理(GP4)在55 d后增加了维生素C和A。生物肥处理(GP4)的维生素A、C和叶绿素含量比对照组(GP10)分别提高了48.89%、27.08%和58%。结果表明,乙酸乙酯提取物比乙醇和水提取物对所有微生物的抑制作用最强。
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Evaluation of biofertilization on antimicrobial activity and phytochemical profile of Moringa olifera plant
Pot experiment was carried out during May 2019 at private farm in el Manyial, Cairo, Egypt. The investigation target was to find out the difference between using plant growth promoting rhizobacteria (B. cereus, Streptomyces chibaensis, B. megaterium, B. polymyxa) either individual or in combination with each other and mineral fertilization on antimicrobial activity and some phytochemical constitutes of Moringa olifera leaves. The highest values of antimicrobial activity recorded for mineral fertilization on treatment followed by mixed biofertilization treatment (GP4) (B. megaterium, B. polymyxa) against seven foodborne pathogens Escherichia coli, Salmonella typhimurium, Staphylococcus aureus, Pseudomonas aeruginosa, Aspergillus niger, Rhizopus stolonifer and Botrytis cinera, as compared with the control treatment. Biofertilization treatment (B. megaterium, B. polymyxa) recorded increasing over control in (GP10) by 160.8% and decreasing of chemical fertilization by 5.41% for polyphenol content, also, the antioxidant content shown increasing over the control (GP10) by 81.1% and decreasing of chemical fertilization (GP9) by 5.6% as well as vitamin C and A were increased with mineral and biofertilizer (GP4) treatments after 55 days. Biofertilization in (GP4) recorded increasing over control group (GP10) by 48.89%, 27.08% and 58% for vitamin A, C and chlorophyll respectively. Ethyl acetate extract was found to be most potent extract than ethanol and water against all tested microorganism.
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