Laboratory of Genetics, Plant Sciences, Wageningen University, Wageningen, The Netherlands.
Stud Mycol. 2007;59:19-30. doi: 10.3114/sim.2007.59.03.
Gene flow within populations can occur by sexual and/or parasexual means. Analyses of experimental and in silico work are presented relevant to possible gene flow within the aspergilli. First, the discovery of mating-type (MAT) genes within certain species of Aspergillus is described. The implications for self-fertility, sexuality in supposedly asexual species and possible uses as phylogenetic markers are discussed. Second, the results of data mining for heterokaryon incompatibility (het) and programmed cell death (PCD) related genes in the genomes of two heterokaryon incompatible isolates of the asexual species Aspergillus niger are reported. Het-genes regulate the formation of anastomoses and heterokaryons, may protect resources and prevent the spread of infectious genetic elements. Depending on the het locus involved, hetero-allelism is not tolerated and fusion of genetically different individuals leads to growth inhibition or cell death. The high natural level of heterokaryon incompatibility in A. niger blocks parasexual analysis of the het-genes involved, but in silico experiments in the sequenced genomes allow us to identify putative het-genes. Homologous sequences to known het- and PCD-genes were compared between different sexual and asexual species including different Aspergillus species, Sordariales and the yeast Saccharomyces cerevisiae. Both het- and PCD-genes were well conserved in A. niger. However some point mutations and other small differences between the het-genes in the two A. niger isolates examined may hint to functions in heterokaryon incompatibility reactions.
种群内的基因流动可以通过有性和/或准性生殖方式发生。本文介绍了与曲霉属内可能发生的基因流动相关的实验和计算机模拟分析。首先,描述了某些曲霉属物种中交配型(MAT)基因的发现。讨论了其对自育性、假定为无性物种中的有性生殖以及作为系统发育标记可能的用途。其次,报告了对两个无性种黑曲霉异核不亲和分离株基因组中异核不亲和(het)和程序性细胞死亡(PCD)相关基因进行数据挖掘的结果。het 基因调控着吻合和异核体的形成,可能保护资源并防止传染性遗传元件的传播。根据涉及的 het 基因座,异等位基因不被容忍,遗传上不同个体的融合会导致生长抑制或细胞死亡。黑曲霉中天然存在的高水平异核不亲和性阻止了对涉及的 het 基因的准性分析,但在已测序基因组中的计算机模拟实验使我们能够识别出可能的 het 基因。在不同的有性和无性物种(包括不同的曲霉属物种、Sordariales 和酵母 Saccharomyces cerevisiae)之间,对已知的 het 和 PCD 基因以及不同的黑曲霉分离株中的同源序列进行了比较。het 和 PCD 基因在黑曲霉中都得到了很好的保守。然而,在两个被研究的黑曲霉分离株的 het 基因之间存在一些点突变和其他小差异,这可能暗示了其在异核不亲和反应中的功能。