表征钼还原菌生长的微孔板格式

Shukor
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引用次数: 44

摘要

钼对反刍动物以及鲶鱼和小鼠的精子发生过程具有毒性。包括钼在内的重金属的生物修复技术正在得到广泛的研究。更高效的减速器正在被分离出来。微生物钼酸盐还原钼蓝的一个优点是强蓝色产物在远红色区域吸收波长强,而未添加钼的细胞在该区域吸收很少。这意味着不需要像离心这样的样品处理,读数可以直接取下。在这项工作中,我们开发了一种微孔板或微量滴度板测定法来监测细菌的钼蓝产量。用微孔板测得的钼蓝比用普通试管测得的钼蓝吸光度低约2倍,但足以用于表征工作,因为用试管测得的吸光度为0.886,而用试管测得的吸光度为1.709。用于监测微生物对钼蓝还原的微孔板格式的开发易于执行,并将确保对新型钼还原剂的表征工作可能在几天内而不是几周内进行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Microplate Format for Characterizing the Growth of Molybdenum-reducing Bacteria
Molybdenum is toxic to ruminants and the process of spermatogenesis in catfish and mice. The bioremediation of heavy metals including molybdenum is being intensely studied. More efficient reducers are being isolated. An advantage of microbial molybdate reduction to molybdenum blue is the intense blue product absorbs wavelength strongly in the far red region whilst cells without the addition of molybdenum showed little absorption in this region. This means that no sample treatments such as centrifugation are needed and the readings can be taken straight away. In this work we developed a microplate or a microtiter plate assay for monitoring molybdenum blue production from a bacterium. The molybdenum blue produced when measured from a microplate gave about 2 times less absorbance intensity compared to measurement using a normal cuvette, but is adequate for characterization works as the absorbance obtained was 0.886 compared to 1.709 for measurement using cuvette. The development of microplate format for monitoring microbial reduction to molybdenum blue is simple to perform and would ensure works on the characterizations of novel molybdenum reducers can potentially be carried out in a few days instead of a few weeks.
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