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A strain of Fusarium kyushuense is able to produce aflatoxin B1 and G1

机译:九州镰刀菌菌株能够产生黄曲霉毒素B 1 和G 1

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摘要

A strain of F. kyushuense is able to produce aflatoxin B1 and G1 under certain growth conditions. This was ultimately demonstrated by LC-MS analysis. By using a microarray covering oligonucleotides specific for the aflatoxin pathway genes of A. flavus, the expression of homologues of nearly the complete aflatoxin biosynthesis gene cluster was detected in F. kyushuense under producing conditions, e.g., after growth in liquid YES medium. In contrast, after growth of F. kyushuense on solid YES medium, only a very low transcription level of one of the homologues (nor-1) could be observed by microarray and Real Time PCR demonstrating differential gene expression. The cross-hybridization of the F. kyushuense mRNA to the A. flavus aflatoxin biosynthesis gene oligonucleotides of the array indicates homology between the sequences. PCR analyses with primers deduced from the nor-1 gene sequence of the aflatoxin biosynthesis gene cluster from A. flavus revealed the presence of a homologue of this gene in F. kyushuense. Sequencing of PCR fragments of the nor-1 homologue revealed a sequence similarity of >90% to the nor-1 gene of A. flavus.
机译:在一定的生长条件下,九州镰刀菌菌株能够产生黄曲霉毒素B 1 和G 1 。 LC-MS分析最终证明了这一点。通过使用覆盖特异黄曲霉黄曲霉毒素途径基因特异性寡核苷酸的微阵列,在生产条件下,例如在液态YES培养基中生长后,在九州F.中检测到了几乎完整的黄曲霉毒素生物合成基因簇的同源物。相反,九州F.在固体YES培养基上生长后,通过微阵列和实时PCR证明差异基因表达,只能观察到一种同源物(nor-1)的非常低的转录水平。 F. kyushuense mRNA与黄曲霉黄曲霉毒素生物合成基因寡核苷酸的交叉杂交表明了序列之间的同源性。用从黄曲霉黄曲霉毒素生物合成基因簇的nor-1基因序列推导的引物进行PCR分析,发现九州F.中存在该基因的同源物。对nor-1同源物的PCR片段测序表明,与黄曲霉的nor-1基因的序列相似性> 90%。

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