Kale S P, Cary J W, Bhatnagar D, Bennett J W
Biology Department, Xavier University, New Orleans, Louisiana 70125, USA.
Appl Environ Microbiol. 1996 Sep;62(9):3399-404. doi: 10.1128/aem.62.9.3399-3404.1996.
Six previously isolated, nonaflatoxigenic variants of Aspergillus parasiticus, designated sec mutants, were characterized morphologically by electron microscopy, biochemically by biotransformation studies with an aflatoxin precursor, and genetically by Northern (RNA) hybridization analysis of aflatoxin biosynthetic gene transcripts. Scanning electron micrographs clearly demonstrated that compared with the parental sec+ forms, the variant sec forms had an abundance of vegetative mycelia, orders of magnitude reduced number of conidiophores and conidia, and abnormal metulae. Conidiospores were detected in sec cultures only at higher magnifications (x 500), in contrast to the sec+ (wild-type) strain, in which abundant conidiospores (masking the vegetative mycelia) were observed at even lower magnifications (x 300). All sec+ forms, but none of the sec forms, showed bioconversion of sterigmatocystin to aflatoxins. Northern blots probed with pathway genes demonstrated lack of expression of both the aflatoxin biosynthetic pathway structural (nor-1 and omtA) and regulatory (aflR) genes in the sec forms; PCR and Southern hybridization analysis confirmed the presence of the genes in the sec genomes. Thus, the loss of aflatoxigenic capabilities in the sec form is correlated with alterations in the conidial morphology of the fungus, suggesting that the regulation of aflatoxin synthesis and conidiogenesis may be interlinked.
六个先前分离出的寄生曲霉非产黄曲霉毒素变体,命名为sec突变体,通过电子显微镜进行形态学表征,利用黄曲霉毒素前体进行生物转化研究进行生物化学表征,并通过对黄曲霉毒素生物合成基因转录本进行Northern(RNA)杂交分析进行遗传学表征。扫描电子显微镜照片清楚地表明,与亲本sec+形式相比,变体sec形式具有丰富的营养菌丝体,分生孢子梗和分生孢子数量减少了几个数量级,并且有异常的帚状枝。与sec+(野生型)菌株相比,在sec培养物中仅在较高放大倍数(x 500)下才能检测到分生孢子,而在sec+(野生型)菌株中,即使在较低放大倍数(x 300)下也能观察到大量分生孢子(掩盖了营养菌丝体)。所有sec+形式都能将柄曲霉素生物转化为黄曲霉毒素,但sec形式均不能。用途径基因进行Northern印迹分析表明,sec形式中黄曲霉毒素生物合成途径结构基因(nor-1和omtA)和调节基因(aflR)均不表达;PCR和Southern杂交分析证实sec基因组中存在这些基因。因此,sec形式中产黄曲霉毒素能力的丧失与真菌分生孢子形态的改变相关,这表明黄曲霉毒素合成和分生孢子形成的调节可能是相互关联的。