不同的载体成分上的异位抗菌素测试

Nida Uli Al-Azmiya, F. H. Khumairah, Mieke Rochimi Setiawati, T. Simarmata
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引用次数: 0

摘要

微生物接种到将被分解的植物生物质中的过程需要合适的载体材料来促进所用微生物的应用。嗜盐细菌是一种能够通过维持渗透平衡在高盐水平下生存的微生物。细菌群落是细菌的集合,它们共同形成一个群落,生产出重要的产品。本实验旨在确定载体组成对接种剂活力的影响。实验在印度尼西亚西爪哇省万隆市Bintang Asri Arthauly实验室进行。该研究采用了三次重复的非析因随机设计。本实验中要测试的处理设计,除其他外:c1:泥炭50%+堆肥50%+营养0%,c2:泥炭50%+堆肥45%+营养5%,c3:泥炭50%+Compost40%+营养10%,c4:泥炭50%+compost25%+Biochar25%+营养0%、c5:泥炭50%%Compost22.5%+Biocar22.5%+营养50%,c6:泥炭50%\Compost20%+Biochar20%+营养10%,c7:泥炭50%+堆肥20%+生物炭20%+白云石5%+鸟粪5%+营养0%,c8:泥炭50%+堆肥17.5%+生物炭17.5%+白云石5%+鸟粪5%+营养5%,c9:泥炭50%+Compost15%+生物碳15%+白云石5%+鸟粪5%+营养10%。第二阶段实验的结果表明,c8组合物在所有载体组合物中具有最好的活性。
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Uji Viabilitas Isolat Bakteri Penambat Nitrogen Halotoleran pada Komposisi Bahan Pembawa yang Berbeda
The process of microbial inoculation into plant biomass which will be decomposed needs a suitable carrier material to facilitate the application of the microorganisms to be used. Halophilic bacteria are a type of microorganism that can survive high salt levels by maintaining an osmotic balance. The bacterial consortium is a collection of bacteria that work together to form a community, to produce a significant product. The experiment aims to determine the effect of carrier composition on inoculant viability. The experiment was carried out at the laboratory CV. Bintang Asri Arthauly Bandung, West Java, Indonesia. The study used a non factorial randomized design with three replications. The treatment design to be tested in this experiment, among others: c1: Peat 50% + Compost 50% + Nutrition 0%, c2: Peat 50% + Compost 45% + Nutrition 5%, c3: Peat 50% + Compost 40% + Nutrition 10%, c4: Peat 50% + Compost 25 % + Biochar 25% + Nutrition 0%, c5: Peat 50% + Compost 22.5% + Biochar 22.5% + Nutrition 5%, c6: Peat 50% + Compost 20% + Biochar 20% + Nutrition 10%, c7: Peat 50% + Compost 20% + Biochar 20% + Dolomite 5% + Guano 5% + Nutrition 0%, c8: Peat 50% + Compost 17.5% + Biochar 17.5% + Dolomite 5% + Guano 5 % + Nutrition 5%, c9: Peat 50% + Compost 15% + Biochar 15% + Dolomite 5% + Guano 5% + Nutrition 10%. The results of the second stage experiment showed that the c8 composition had the best viability in all carrier compositions.
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