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Two HAP2-GCS1 homologs responsible for gamete interactions in the cellular slime mold with multiple mating types: Implication for common mechanisms of sexual reproduction shared by plants and protozoa and for male-female differentiation

机译:两个HAP2-GCS1同源物负责细胞粘液霉菌中具有多种交配类型的配子相互作用:对植物和原生动物共有的有性生殖的常见机制以及男女分化的影响

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摘要

Fertilization is a central event in sexual reproduction, and understanding its molecular mechanisms has both basic and applicative biological importance. Recent studies have uncovered the molecules that mediate this process in a variety of organisms, making it intriguing to consider conservation and evolution of the mechanisms of sexual reproduction across phyla. The social amoeba Dictyostelium discoideum undergoes sexual maturation and forms gametes under dark and humid conditions. It exhibits three mating types, type-I, -II, and -III, for the heterothallic mating system. Based on proteome analyses of the gamete membranes, we detected expression of two homologs of the plant fertilization protein HAP2-GCS1. When their coding genes were disrupted in type-I and type-II strains, sexual potency was completely lost, whereas disruption in the type-III strain did not affect mating behavior, suggesting that the latter acts as female in complex organisms. Our results demonstrate the highly conserved function of HAP2-GCS1 in gamete interactions and suggest the presence of additional allo-recognition mechanisms in D. discoideum gametes.
机译:受精是有性生殖的重要事件,了解其分子机制具有重要的生物学意义和应用意义。最近的研究发现了介导多种生物体中这一过程的分子,因此有趣的是考虑到跨门有性生殖机制的保存和进化。社交变形虫盘基网柄菌在黑暗和潮湿的条件下会发生性成熟并形成配子。对于异thaltallic交配系统,它表现出三种交配类型,即I,-II和-III。基于配子膜的蛋白质组分析,我们检测到了植物受精蛋白HAP2-GCS1的两个同源物的表达。当它们的编码基因在I型和II型菌株中被破坏时,性能力完全丧失,而在III型菌株中的破坏并不影响交配行为,这表明后者在复杂的生物体中充当雌性。我们的结果证明了HAP2-GCS1在配子相互作用中的高度保守功能,并暗示了D. discoideum配子中其他同种异体识别机制的存在。

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