Lee Jungkwan, Leslie John F, Bowden Robert L
Department of Plant Pathology, Throckmorton Plant Sciences Center, Kansas State University, Manhattan, Kansas 66506-5502, USA.
Eukaryot Cell. 2008 Jul;7(7):1211-21. doi: 10.1128/EC.00272-07. Epub 2008 May 23.
In heterothallic ascomycete fungi, idiomorphic alleles at the MAT locus control two sex pheromone-receptor pairs that function in the recognition and chemoattraction of strains with opposite mating types. In the ascomycete Gibberella zeae, the MAT locus is rearranged such that both alleles are adjacent on the same chromosome. Strains of G. zeae are self-fertile but can outcross facultatively. Our objective was to determine if pheromones retain a role in sexual reproduction in this homothallic fungus. Putative pheromone precursor genes (ppg1 and ppg2) and their corresponding pheromone receptor genes (pre2 and pre1) were identified in the genomic sequence of G. zeae by sequence similarity and microsynteny with other ascomycetes. ppg1, a homolog of the Saccharomyces alpha-factor pheromone precursor gene, was expressed in germinating conidia and mature ascospores. Expression of ppg2, a homolog of the a-factor pheromone precursor gene, was not detected in any cells. pre2 was expressed in all cells, but pre1 was expressed weakly and only in mature ascospores. ppg1 or pre2 deletion mutations reduced fertility in self-fertilization tests by approximately 50%. Deltappg1 reduced male fertility and Deltapre2 reduced female fertility in outcrossing tests. In contrast, Deltappg2 and Deltapre1 had no discernible effects on sexual function. Deltappg1/Deltappg2 and Deltapre1/Deltapre2 double mutants had the same phenotype as the Deltappg1 and Deltapre2 single mutants. Thus, one of the putative pheromone-receptor pairs (ppg1/pre2) enhances, but is not essential for, selfing and outcrossing in G. zeae whereas no functional role was found for the other pair (ppg2/pre1).
在异宗配合的子囊菌纲真菌中,MAT基因座上的特异性等位基因控制着两对性信息素受体,它们在识别和化学吸引具有相反交配型的菌株中发挥作用。在子囊菌纲的玉米赤霉中,MAT基因座发生了重排,使得两个等位基因在同一条染色体上相邻。玉米赤霉菌株是自育的,但也可以兼性杂交。我们的目的是确定信息素在这种同宗配合真菌的有性生殖中是否仍起作用。通过与其他子囊菌的序列相似性和微共线性,在玉米赤霉的基因组序列中鉴定出了假定的信息素前体基因(ppg1和ppg2)及其相应的信息素受体基因(pre2和pre1)。ppg1是酿酒酵母α-因子信息素前体基因的同源物,在萌发的分生孢子和成熟的子囊中表达。未在任何细胞中检测到a-因子信息素前体基因同源物ppg2的表达。pre2在所有细胞中都有表达,但pre1表达较弱,且仅在成熟子囊中表达。在自交试验中,ppg1或pre2缺失突变使育性降低了约50%。在杂交试验中,Δppg1降低了雄性育性,Δpre2降低了雌性育性。相比之下,Δppg2和Δpre1对性功能没有明显影响。Δppg1/Δppg2和Δpre1/Δpre2双突变体具有与Δppg1和Δpre2单突变体相同的表型。因此,一对假定的信息素-受体对(ppg1/pre2)增强了玉米赤霉的自交和杂交能力,但不是必需的,而另一对(ppg2/pre1)未发现有功能作用。