首页> 外文期刊>Journal of Microbiology, Biotechnology and Food Sciences >BASAL MEDIA FORMULATION USING CANAVALIA ENSIFORMIS AS CARBON AND NITROGEN SOURCE FOR THE GROWTH OF SOME FUNGI SPECIES
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BASAL MEDIA FORMULATION USING CANAVALIA ENSIFORMIS AS CARBON AND NITROGEN SOURCE FOR THE GROWTH OF SOME FUNGI SPECIES

机译:利用卡那瓦氏菌作为碳和氮源用于某些真菌物种生长的基础培养基配方

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The possibility of developing alternative media to commercial potato dextrose agar was assessed using, Canavalia ensiformis (Linn) (jack beans) as carbon and nitrogen source. Six leguminous meal media were used as substitute for either carbon or nitrogen or both, while potato dextrose broth (PDB) was used as a positive control and basal medium as a negative control. Six species of fungi Aspergillus flavus, A. niger, Meria coniospora, Mucor sp, Neurospora crassa and Rhizopus oryzae were aseptically inoculated into the formulated media and allowed to grow. Their mycelia dry weights were taken after 24, 48, 72, 96 and 120 hours. Growth of all fungal species was observed to be slightly lower, about the same or better in the formulated media relative to the control. Aspergillus flavus had its highest biomass of 1.70g in the media formulated with Canavalia ensiformis as the carbon source relative to 1.42g as the standard at the 120 hour. A. niger had a growth of 0.62g relative to 0.61g at 120 hours of the control. Meria coniospora had a growth of 0.27g relative to 0.38g at 120 hours. Mucor sp had a growth of 0.54g relative to 0.44g at 120 hours. Neurospora crassa had a growth of 1.05g relative to 0.24g at 120 hours. Rhizopus oryzae had a growth of 0.14g relative to 0.25g at 120 hours. The study revealed that Canavalia ensiformis contains minerals and nutrients that is able to provide the nutritional requirements of these fungi. Thus, it can be used as an alternative material in the preparation of culture media for in vitro cultivation of these fungi for teaching and research purposes.
机译:使用Canavalia ensiformis(Linn)(千斤顶豆)作为碳和氮源,评估了开发替代商业马铃薯葡萄糖琼脂培养基的可能性。六种豆科粕培养基被用作碳或氮或两者的替代,而马铃薯葡萄糖肉汤(PDB)被用作阳性对照,基础培养基被用作阴性对照。将六种真菌黄曲霉,黑曲霉,圆锥孢子虫,Mucor sp,Crus Neurospora crassa和米根霉无菌接种到配制的培养基中并使其生长。在24、48、72、96和120小时后,测量其菌丝干重。相对于对照,在配制的培养基中观察到所有真菌种类的生长略低,大约相同或更好。黄连曲霉在以坎氏细丝酵母为碳源配制的培养基中的最高生物量为1.70g,相对于120小时时的标准样品为1.42g。与对照120小时的0.61g相比,黑曲霉的生长为0.62g。在120小时时,圆锥体孢子菌的生长相对于0.38g为0.27g。 Mucor sp在120小时时的相对于0.44g的增长为0.54g。相对于120小时时的0.24克,芥菜神经孢菌的生长量为1.05克。米根霉在120小时时的生长量为0.25g,相对而言为0.14g。该研究表明,加拿大雪茄含有矿物质和营养成分,能够提供这些真菌的营养需求。因此,它可以用作制备用于体外培养这些真菌以用于教学和研究目的的培养基的替代材料。

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