利用正选择和负选择方法对镰刀菌进行基因组工程,研究真菌毒素产生的调控

Mycotoxins Pub Date : 2013-01-31 DOI:10.2520/MYCO.63.85
Y. Nakajima, Hinayo Ichikawa, Kazuyuki Maeda, T. Nishiuchi, Tetsuo Kobayashi, M. Kimura
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引用次数: 1

摘要

标记基因是生物遗传操作所必需的。在转化后对转化子进行选择时,采用了两种类型的标记基因:一种是对携带正选择标记基因的转化子进行正选择,另一种是对缺乏负选择标记基因的转化子进行负选择。本文综述了镰刀菌基因组工程研究的最新进展。我们专注于通过应用阳性和阴性选择方法引入任意突变,从而将标记基因从目标基因组中排除。讨论了该技术在真菌毒素生产中生物合成基因表达调控研究中的优势和必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genome engineering of Fusarium species by using positive and negative selection approaches for studying regulation of mycotoxin production
Marker genes are required for the genetic manipulation of living organisms. For selecting transformants after the process of transformation, two types of marker genes are employed: one for the positive selection of the transformants carrying the positive selection marker gene and another for the negative selection of the transformants lacking the negative selection marker gene. Here we have summarized the current advancements in genome engineering of Fusarium species. We have focused on introducing arbitrary mutations by applying both positive and negative selection approaches that result in the exclusion of the marker genes from the target genome. We have discussed the advantages and necessity of using this technique in studies on the regulation of biosynthetic gene expression in mycotoxin production.
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