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Sexual reproduction is the default mode in apomictic Hieracium subgenus Pilosella, in which two dominant loci function to enable apomixis

机译:有性繁殖是无融合生殖的Hieracium亚属pilosella的默认模式,其中两个显性基因座功能可以实现无融合生殖

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摘要

Asexual seed formation, or apomixis, in the Hieracium subgenus Pilosella is controlled by two dominant independent genetic loci, LOSS OF APOMEIOSIS (LOA) and LOSS OF PARTHENOGENESIS (LOP). We examined apomixis mutants that had lost function in one or both loci to establish their developmental roles during seed formation. In apomicts, sexual reproduction is initiated first. Somatic aposporous initial (AI) cells differentiate near meiotic cells, and the sexual pathway is terminated as AI cells undergo mitotic embryo sac formation. Seed initiation is fertilization-independent. Using a partially penetrant cytotoxic reporter to inhibit meioisis, we showed that developmental events leading to the completion of meiotic tetrad formation are required for AI cell formation. Sexual initiation may therefore stimulate activity of the LOA locus, which was found to be required for AI cell formation and subsequent suppression of the sexual pathway. AI cells undergo nuclear division to form embryo sacs, in which LOP functions gametophytically to stimulate fertilization-independent embryo and endosperm formation. Loss of function in either locus results in partial reversion to sexual reproduction, and loss of function in both loci results in total reversion to sexual reproduction. Therefore, in these apomicts, sexual reproduction is the default reproductive mode upon which apomixis is superimposed. These loci are unlikely to encode genes essential for sexual reproduction, but may function to recruit the sexual machinery at specific time points to enable apomixis.
机译:毛状结肠亚属中无性种子的形成或无融合生殖是由两个显着的独立遗传基因座控制的,这是遗传性失落(LOA)和单性生殖失落(LOP)。我们检查了在一个或两个基因座中丧失功能的无融合生殖突变体,以建立其在种子形成过程中的发育作用。在无生殖细胞中,首先开始有性生殖。体细胞的无孔初始(AI)细胞在减数分裂细胞附近分化,当AI细胞经历有丝分裂胚囊形成时,性途径终止。种子萌发不依赖于施肥。使用部分渗透的细胞毒性报告基因抑制减数分裂,我们显示导致减数分裂四联体形成完成的发育事件是AI细胞形成所必需的。因此,性启动可能会刺激LOA基因座的活性,这被发现是AI细胞形成和随后抑制性途径所必需的。 AI细胞经过核分裂形成胚囊,其中LOP具有配子体作用,以刺激不依赖受精的胚和胚乳的形成。任一基因座的功能丧失都会导致部分恢复性生殖,而两个基因座的功能丧失都会导致完全恢复性生殖。因此,在这些无融合生殖中,有性生殖是叠加无融合生殖的默认生殖方式。这些基因座不太可能编码有性生殖所必需的基因,但可能在特定时间点起征募性器官的功能,以使无融合生殖成为可能。

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