首页> 外文期刊>Eukaryotic cell >FigA, a Putative Homolog of Low-Affinity Calcium System Member Fig1 in Saccharomyces cerevisiae, Is Involved in Growth and Asexual and Sexual Development in Aspergillus nidulans
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FigA, a Putative Homolog of Low-Affinity Calcium System Member Fig1 in Saccharomyces cerevisiae, Is Involved in Growth and Asexual and Sexual Development in Aspergillus nidulans

机译:图A,酿酒酵母中的低亲和力钙系统成员图1的一个假定的同系物,涉及构巢曲霉的生长以及无性和有性发育

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Calcium-mediated signaling pathways are widely employed in eukaryotes and are implicated in the regulation of diverse biological processes. In Saccharomyces cerevisiae, at least two different calcium uptake systems have been identified: the high-affinity calcium influx system (HACS) and the low-affinity calcium influx system (LACS). Compared to the HACS, the LACS in fungi is not well known. In this study, FigA, a homolog of the LACS member Fig1 from S. cerevisiae, was functionally characterized in the filamentous fungus Aspergillus nidulans. Loss of figA resulted in retardant hyphal growth and a sharp reduction of conidial production. Most importantly, FigA is essential for the homothallic mating (self-fertilization) process; further, FigA is required for heterothallic mating (outcrossing) in the absence of HACS midA. Interestingly, in a figA deletion mutant, adding extracellular Ca2+ rescued the hyphal growth defects but could not restore asexual and sexual reproduction. Furthermore, quantitative PCR results revealed that figA deletion sharply decreased the expression of brlA and nsdD, which are known as key regulators during asexual and sexual development, respectively. In addition, green fluorescent protein (GFP) tagging at the C terminus of FigA (FigA::GFP) showed that FigA localized to the center of the septum in mature hyphal cells, to the location between vesicles and metulae, and between the junctions of metulae and phialides in conidiophores. Thus, our findings suggest that FigA, apart from being a member of a calcium uptake system in A. nidulans, may play multiple unexplored roles during hyphal growth and asexual and sexual development.
机译:钙介导的信号通路广泛用于真核生物,并参与多种生物过程的调控。在酿酒酵母中,已鉴定出至少两种不同的钙摄取系统:高亲和力钙流入系统(HACS)和低亲和力钙流入系统(LACS)。与HACS相比,真菌中的LACS尚不清楚。在这项研究中,FigA是来自酿酒酵母的LACS成员Fig1的同源物,在丝状真菌构巢曲霉中进行了功能鉴定。 figA 的损失导致延迟的菌丝生长和分生孢子的急剧减少。最重要的是,FigA对于同型交配(自体受精)过程至关重要。此外,在不存在HACS midA 的情况下,杂种交配(异交)需要FigA。有趣的是,在一个 figA 缺失突变体中,添加细胞外Ca 2 + 可以挽救菌丝的生长缺陷,但不能恢复无性和有性生殖。此外,定量PCR结果显示, figA 缺失会急剧降低 brlA nsdD 的表达,而无表达和无性发育是关键调控因子, 分别。此外,在FigA的C末端标记绿色荧光蛋白(GFP)(FigA :: GFP)显示,FigA定位于成熟的菌丝细胞中隔膜的中心,囊泡与小叶之间以及结点之间的位置。分生孢子中的metulae和phialides。因此,我们的研究结果表明,FigA除了是构巢曲霉钙吸收系统的成员以外,还可能在菌丝生长,无性和性发育过程中发挥多种未开发的作用。

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