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用于筛选积累锌的土壤微生物的放射自显影方法。

Autoradiographic method to screen for soil microorganisms which accumulate zinc.

作者信息

Zamani B, Knezek B D, Flegler S L, Beneke E S, Dazzo F B

出版信息

Appl Environ Microbiol. 1985 Jan;49(1):137-42. doi: 10.1128/aem.49.1.137-142.1985.

Abstract

An autoradiographic method was developed to screen for and isolate soil microorganisms which accumulate zinc (Zn). Diluted soil samples (Rubicon fine sand, Entic Haplorthods [pH 5.9]) were plated on soil extract-glucose agar containing radioactive 65Zn. After 7 days of incubation, individual colonies which accumulated sufficient 65Zn could be detected by autoradiography. These colonies were isolated and confirmed as Zn accumulators in pure culture by using the autoradiographic plate technique. Most Zn accumulators were filamentous fungi, identified as Penicillium janthinellum, Aspergillus fumigatus, and Paecilomyces sp. Isolates of Penicillium janthinellum were the most common Zn accumulators. The most abundant Zn-accumulating bacteria were Bacillus spp. The validity of the autoradiographic plate technique to differentiate soil microbes which accumulate Zn was examined independently by energy dispersive X-ray analysis in a scanning electron microscope. This method confirmed that fungal isolates which gave positive autoradiographic responses in the plate assay bioaccumulated more Zn in their biomass than fungal isolates from the same soil sample which gave negative autoradiographic responses. Thus, this technique can be applied to specifically screen for and isolate microbes from the environment which bioaccumulate Zn.

摘要

开发了一种放射自显影方法,用于筛选和分离积累锌(Zn)的土壤微生物。将稀释的土壤样品(鲁比肯细砂,潮湿雏形土 [pH 5.9])接种在含有放射性65Zn的土壤提取物 - 葡萄糖琼脂平板上。培养7天后,通过放射自显影可以检测到积累足够65Zn的单个菌落。使用放射自显影平板技术将这些菌落分离并在纯培养物中确认为锌积累菌。大多数锌积累菌是丝状真菌,鉴定为浅黄青霉、烟曲霉和拟青霉属。浅黄青霉的分离物是最常见的锌积累菌。最丰富的锌积累细菌是芽孢杆菌属。通过扫描电子显微镜中的能量色散X射线分析独立检查了放射自显影平板技术区分积累锌的土壤微生物的有效性。该方法证实,在平板试验中给出阳性放射自显影反应的真菌分离物在其生物量中比来自同一土壤样品的给出阴性放射自显影反应的真菌分离物积累更多的锌。因此,该技术可用于从环境中特异性筛选和分离生物积累锌的微生物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/644e/238358/1daf9e76e40d/aem00147-0154-a.jpg

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