Eberhart L J, Knutson C M, Barney B M
Department of Bioproducts and Biosystems Engineering, Biotechnology Institute, University of Minnesota, St. Paul, MN, USA.
J Appl Microbiol. 2016 Jun;120(6):1595-604. doi: 10.1111/jam.13091.
Efficient manipulation of multiple regions within a genome can be improved by counter-selection approaches. In this work, we sought to develop a method to manipulate Azotobacter vinelandii using a counter-selection approach based on the presence of the pyrF gene.
A background uracil auxotroph of A. vinelandii was first constructed by deleting the pyrF gene coding orotidine-5'-phosphate decarboxylase. The pyrF gene and promoter were also incorporated together with an antibiotic marker to create a selection and counter-selection cassette to shuttle into various plasmids. The constructed cassette could then be removed using a plasmid lacking the pyrF gene via counter-selection resulting from the production of 5-fluorouracil. The process could be repeated multiple times using the same procedure for selection and counter-selection. Following completion, the pyrF gene may be reintroduced to the genome in its original location, leaving a completed strain devoid of any antibiotic markers.
Utilization of the pyrF gene for counter-selection is a powerful tool that can be used effectively to make multiple gene deletions in A. vinelandii.
This study demonstrates the successful application of a counter-selection approach to yield markerless genetic modifications to A. vinelandii, which should be of interest for a range of applications in this important model bacterium.
通过反选择方法可以改进对基因组内多个区域的有效操作。在本研究中,我们试图开发一种基于pyrF基因的存在,利用反选择方法来操纵棕色固氮菌的方法。
首先通过缺失编码乳清苷-5'-磷酸脱羧酶的pyrF基因构建了棕色固氮菌的尿嘧啶营养缺陷型背景菌株。pyrF基因和启动子还与抗生素标记一起构建成一个选择和反选择盒,以便穿梭到各种质粒中。然后,可以使用缺乏pyrF基因的质粒通过5-氟尿嘧啶产生的反选择来去除构建的盒。使用相同的选择和反选择程序可以重复该过程多次。完成后,pyrF基因可以在其原始位置重新引入基因组,从而得到一个不含任何抗生素标记的完整菌株。
利用pyrF基因进行反选择是一种强大的工具,可以有效地用于在棕色固氮菌中进行多个基因缺失。
本研究证明了反选择方法在棕色固氮菌中产生无标记遗传修饰的成功应用,这对于在这种重要模式细菌中的一系列应用应该是有意义的。