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Revitalization of a Forward Genetic Screen Identifies Three New Regulators of Fungal Secondary Metabolism in the Genus Aspergillus

机译:振兴向前的遗传筛选确定了曲霉属中真菌继发代谢的三种新调节剂

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ABSTRACT The study of aflatoxin in Aspergillus spp. has garnered the attention of many researchers due to aflatoxin’s carcinogenic properties and frequency as a food and feed contaminant. Significant progress has been made by utilizing the model organism Aspergillus nidulans to characterize the regulation of sterigmatocystin (ST), the penultimate precursor of aflatoxin. A previous forward genetic screen identified 23 A.?nidulans mutants involved in regulating ST production. Six mutants were characterized from this screen using classical mapping (five mutations in mcsA ) and complementation with a cosmid library (one mutation in laeA ). The remaining mutants were backcrossed and sequenced using Illumina and Ion Torrent sequencing platforms. All but one mutant contained one or more sequence variants in predicted open reading frames. Deletion of these genes resulted in identification of mutant alleles responsible for the loss of ST production in 12 of the 17 remaining mutants. Eight of these mutations were in genes already known to affect ST synthesis ( laeA , mcsA , fluG , and stcA ), while the remaining four mutations (in laeB , sntB , and hamI ) were in previously uncharacterized genes not known to be involved in ST production. Deletion of laeB , sntB , and hamI in A.?flavus results in loss of aflatoxin production, confirming that these regulators are conserved in the aflatoxigenic aspergilli. This report highlights the multifaceted regulatory mechanisms governing secondary metabolism in Aspergillus . Additionally, these data contribute to the increasing number of studies showing that forward genetic screens of fungi coupled with whole-genome resequencing is a robust and cost-effective technique. IMPORTANCE In a postgenomic world, reverse genetic approaches have displaced their forward genetic counterparts. The techniques used in forward genetics to identify loci of interest were typically very cumbersome and time-consuming, relying on Mendelian traits in model organisms. The current work was pursued not only to identify alleles involved in regulation of secondary metabolism but also to demonstrate a return to forward genetics to track phenotypes and to discover genetic pathways that could not be predicted through a reverse genetics approach. While identification of mutant alleles from whole-genome sequencing has been done before, here we illustrate the possibility of coupling this strategy with a genetic screen to identify multiple alleles of interest. Sequencing of classically derived mutants revealed several uncharacterized genes, which represent novel pathways to regulate and control the biosynthesis of sterigmatocystin and of aflatoxin, a societally and medically important mycotoxin.
机译:摘要曲霉属中黄曲霉毒素的研究。由于黄曲霉毒素的致癌特性和作为食品和饲料污染物的频率,已经引起了许多研究人员的关注。利用模型生物体构巢曲霉(Aspergillus nidulans)表征黄曲霉毒素的倒数第二个前体stercysttocystin(ST)的调节已取得了重大进展。先前的前瞻性遗传筛选确定了23个A.?nidulans突变体参与调控ST的生产。使用经典作图法(mcsA中的五个突变)和粘粒文库的互补(laeA中的一个突变)从该筛选中表征了六个突变体。其余的突变体回交并使用Illumina和Ion Torrent测序平台测序。除一个突变体外,所有突变体均在预测的开放阅读框中含有一个或多个序列变体。这些基因的删除导致鉴定了突变等位基因,这些等位基因导致其余17个突变体中的12个产生ST的损失。这些突变中的八个是已知影响ST合成的基因(laeA,mcsA,fluG和stcA),而其余四个突变(laeB,sntB和hamI)属于以前未知的基因(未知与ST无关)生产。黄曲霉中laeB,sntB和hamI的缺失导致黄曲霉毒素产生的损失,这证实了这些调节剂在黄曲霉毒素曲霉菌中是保守的。这份报告强调了治理曲霉次生代谢的多方面调控机制。此外,这些数据促进了越来越多的研究,这些研究表明,对真菌进行正向遗传筛选以及全基因组重测序是一项可靠且具有成本效益的技术。重要性在后基因组世界中,反向遗传方法已经取代了其正向遗传方法。前向遗传学用于鉴定目标基因座的技术通常非常繁琐且耗时,这取决于模型生物中的孟德尔性状。目前的工作不仅是确定参与次级代谢调控的等位基因,而且是为了证明回归正向遗传学以追踪表型并发现无法通过反向遗传学方法预测的遗传途径。虽然以前已经从全基因组测序中鉴定出突变等位基因,但在此我们说明了将该策略与遗传筛选结合以鉴定多个目标等位基因的可能性。经典衍生突变体的测序揭示了几个未表征的基因,这些基因代表了调节和控制sterigmatocystin和黄曲霉毒素(一种在社会和医学上很重要的霉菌毒素)的生物合成的新途径。

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