A Fusarium verticillioides MAT1-2 Strain near Isogenic to the Sequenced FGSC7600 Strain for Producing Homozygous Multigene Mutants.

IF 4.2 2区 生物学 Q2 MICROBIOLOGY Journal of Fungi Pub Date : 2024-08-21 DOI:10.3390/jof10080592
Scott E Gold, Daren W Brown, Felicia N Williams, Brian D Nadon, Vivian T Vo, Christine E Miller
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Abstract

Fungal genetic systems ideally combine molecular tools for genome manipulation and a sexual reproduction system to create an informative assortment of combinations of genomic modifications. When employing the sexual cycle to generate multi-mutants, the background genotype variations in the parents may result in progeny phenotypic variation obscuring the effects of combined mutations. Here, to mitigate this variation in Fusarium verticillioides, we generated a MAT1-2 strain that was near isogenic to the sequenced wild-type MAT1-1 strain, FGSC7600. This was accomplished by crossing FGSC7600 with the divergent wild-type MAT1-2 strain FGSC7603 followed by six sequential backcrosses (e.g., six generations) of MAT1-2 progeny to FGSC7600. We sequenced each generation and mapped recombination events. The parental cross involved twenty-six crossovers on nine of the eleven chromosomes. The dispensable chromosome 12, found in FGSC7603 but lacking in FGSC7600, was not present in the progeny post generation five. Inheritance of complete chromosomes without crossover was frequently observed. A deletion of approximately 140 kilobases, containing 54 predicted genes on chromosome 4, occurred in generation 4 and was retained in generation 5 indicating that these genes are dispensable for growth and both asexual and sexual reproduction. The final MAT1-2 strain TMRU10/35 is about 93% identical to FGSC7600. TMRU10/35 is available from the Fungal Genetics Stock Center as FGSC27326 and from the ARS Culture Collection as NRRL64809.

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疣状镰刀菌 MAT1-2 株系与已测序的 FGSC7600 株系接近同源,可产生同源多基因突变体。
真菌遗传系统将基因组操作的分子工具与有性生殖系统理想地结合在一起,创造出各种信息丰富的基因组修饰组合。当利用有性生殖周期产生多突变体时,亲本的背景基因型变异可能导致后代表型变异,从而掩盖了组合突变的效果。在此,为了减少轮纹镰刀菌中的这种变异,我们产生了一种与已测序的野生型 MAT1-1 株系 FGSC7600 接近同源的 MAT1-2 株系。具体方法是将 FGSC7600 与不同的野生型 MAT1-2 菌株 FGSC7603 杂交,然后将 MAT1-2 后代与 FGSC7600 连续回交六次(即六代)。我们对每一代都进行了测序,并绘制了重组事件图。亲本杂交涉及 11 条染色体中 9 条染色体上的 26 次交叉。在 FGSC7603 中发现而在 FGSC7600 中缺乏的第 12 号染色体在第五代后代中不存在。经常观察到完整染色体的遗传而没有交叉。第 4 代出现了约 140 千碱基的缺失,其中包含第 4 号染色体上的 54 个预测基因,第 5 代保留了这些基因,这表明这些基因对于生长以及无性和有性生殖都是不可或缺的。最终的 MAT1-2 菌株 TMRU10/35 与 FGSC7600 大约 93% 相同。TMRU10/35 可从真菌遗传资源中心(Fungal Genetics Stock Center)获得,编号为 FGSC27326;也可从美国农业部菌种保藏中心(ARS Culture Collection)获得,编号为 NRRL64809。
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来源期刊
Journal of Fungi
Journal of Fungi Medicine-Microbiology (medical)
CiteScore
6.70
自引率
14.90%
发文量
1151
审稿时长
11 weeks
期刊介绍: Journal of Fungi (ISSN 2309-608X) is an international, peer-reviewed scientific open access journal that provides an advanced forum for studies related to pathogenic fungi, fungal biology, and all other aspects of fungal research. The journal publishes reviews, regular research papers, and communications in quarterly issues. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on paper length. Full experimental details must be provided so that the results can be reproduced.
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