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使用纳升范围的基于液滴的微流控技术对丝状真菌进行高通量筛选。

High-throughput screening of filamentous fungi using nanoliter-range droplet-based microfluidics.

作者信息

Beneyton Thomas, Wijaya I Putu Mahendra, Postros Prexilia, Najah Majdi, Leblond Pascal, Couvent Angélique, Mayot Estelle, Griffiths Andrew D, Drevelle Antoine

机构信息

École Supérieure de Physique et de Chimie Industrielles de la Ville de Paris (ESPCI Paris), CNRS UMR 8231, 10, rue Vauquelin, 75231 Paris Cedex 05, France.

Ets J. Soufflet/CRIS-OSIRIS, Quai Sarrail, BP12, 10400 Nogent-sur-Seine, France.

出版信息

Sci Rep. 2016 Jun 7;6:27223. doi: 10.1038/srep27223.

Abstract

Filamentous fungi are an extremely important source of industrial enzymes because of their capacity to secrete large quantities of proteins. Currently, functional screening of fungi is associated with low throughput and high costs, which severely limits the discovery of novel enzymatic activities and better production strains. Here, we describe a nanoliter-range droplet-based microfluidic system specially adapted for the high-throughput sceening (HTS) of large filamentous fungi libraries for secreted enzyme activities. The platform allowed (i) compartmentalization of single spores in ~10 nl droplets, (ii) germination and mycelium growth and (iii) high-throughput sorting of fungi based on enzymatic activity. A 10(4) clone UV-mutated library of Aspergillus niger was screened based on α-amylase activity in just 90 minutes. Active clones were enriched 196-fold after a single round of microfluidic HTS. The platform is a powerful tool for the development of new production strains with low cost, space and time footprint and should bring enormous benefit for improving the viability of biotechnological processes.

摘要

丝状真菌是工业酶的一个极其重要的来源,因为它们能够分泌大量蛋白质。目前,真菌的功能筛选存在通量低和成本高的问题,这严重限制了新型酶活性和优良生产菌株的发现。在此,我们描述了一种基于纳升液滴的微流控系统,该系统特别适用于对大型丝状真菌文库的分泌酶活性进行高通量筛选(HTS)。该平台能够(i)将单个孢子分隔在约10 nl的液滴中,(ii)实现孢子萌发和菌丝体生长,以及(iii)基于酶活性对真菌进行高通量分选。仅用90分钟就基于α-淀粉酶活性对黑曲霉的一个10⁴克隆紫外线诱变文库进行了筛选。经过一轮微流控HTS后,活性克隆富集了196倍。该平台是开发具有低成本、低空间和时间占用的新生产菌株的有力工具,应该会为提高生物技术工艺的可行性带来巨大益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc71/4895158/22270c00809e/srep27223-f1.jpg

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