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首页> 外文期刊>PLoS Biology >Evolution of Sexes from an Ancestral Mating-Type Specification Pathway
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Evolution of Sexes from an Ancestral Mating-Type Specification Pathway

机译:从祖先交配类型规范途径的性别进化。

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Male and female sexes have evolved repeatedly in eukaryotes but the origins of dimorphic sexes and their relationship to mating types in unicellular species are not understood. Volvocine algae include isogamous species such as Chlamydomonas reinhardtii, with two equal-sized mating types, and oogamous multicellular species such as Volvox carteri with sperm-producing males and egg-producing females. Theoretical work predicts genetic linkage of a gamete cell-size regulatory gene(s) to an ancestral mating-type locus as a possible step in the evolution of dimorphic gametes, but this idea has not been tested. Here we show that, contrary to predictions, a single conserved mating locus (MT) gene in volvocine algae—MID, which encodes a RWP-RK domain transcription factor—evolved from its ancestral role in C. reinhardtii as a mating-type specifier, to become a determinant of sperm and egg development in V. carteri. Transgenic female V. carteri expressing male MID produced functional sperm packets during sexual development. Transgenic male V. carteri with RNA interference (RNAi)-mediated knockdowns of VcMID produced functional eggs, or self-fertile hermaphrodites. Post-transcriptional controls were found to regulate cell-type–limited expression and nuclear localization of VcMid protein that restricted its activity to nuclei of developing male germ cells and sperm. Crosses with sex-reversed strains uncoupled sex determination from sex chromosome identity and revealed gender-specific roles for male and female mating locus genes in sexual development, gamete fitness and reproductive success. Our data show genetic continuity between the mating-type specification and sex determination pathways of volvocine algae, and reveal evidence for gender-specific adaptations in the male and female mating locus haplotypes of Volvox. These findings will enable a deeper understanding of how a master regulator of mating-type determination in an ancestral unicellular species was reprogrammed to control sexually dimorphic gamete development in a multicellular descendant.
机译:男性和女性在真核生物中已反复进化,但尚不清楚双态性的起源以及它们与单细胞物种中交配类型的关系。 Volvocine藻类包括等配种,例如莱茵衣藻(Chlamydomonas reinhardtii),具有两种相等大小的交配类型,以及卵形多细胞种,例如Volvox Carteri,具生精子和产卵的雌性。理论工作预测配子细胞大小调控基因与祖先交配型基因座的遗传连锁可能是双态配子进化的可能步骤,但这一想法尚未得到验证。在这里,我们发现,与预测相反,火山藻中的单个保守交配基因(MID)基因编码RWP-RK结构域转录因子,是从其在莱茵衣藻中的祖先作用演变为交配型说明符的,成为卡氏弧菌精子和卵子发育的决定因素。表达男性MID的转基因雌性V. Carteri在性发育过程中产生了功能性精子包。具有RNA干扰(RNAi)介导的VcMID敲低的转基因雄性卡氏弧菌产生功能性卵或自育雌雄同体。发现转录后对照可调节VcMid蛋白的细胞类型限制表达和核定位,从而限制了其对发育中的雄性生殖细胞和精子细胞核的活性。与性逆向菌株的杂交使性别决定与性染色体身份脱钩,并揭示了男性和女性交配位点基因在性发育,配子适应性和生殖成功中的性别特异性作用。我们的数据显示了交代藻类的交配类型规格和性别决定途径之间的遗传连续性,并揭示了Volvox的雄性和雌性交配基因位型的性别特异性适应的证据。这些发现将使人们能够更深入地了解祖先单细胞物种中交配类型确定的主要调控因子是如何被编程为控制多细胞后代中性二态配子发育的。

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