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SERK and APOSTART. Candidate Genes for Apomixis in Poa pratensis

机译:搜索和APOSTART。草地早熟禾无融合生殖候选基因

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Seed production generally requires the mating of opposite sex gametes. Apomixis, an asexual mode of reproduction, avoids both meiotic reduction and egg fertilization. The essential feature of apomixis is that an embryo is formed autonomously by parthenogenesis from an unreduced egg of an embryo sac generated through apomeiosis. If apomixis were well understood and harnessed, it could be exploited to indefinitely propagate superior hybrids or specific genotypes bearing complex gene sets. A more profound knowledge of the mechanisms that regulate reproductive events would contribute fundamentally to understanding the genetic control of the apomictic pathway. In Poa pratensis, we isolated and characterized two genes, PpSERK (SOMATIC EMBRYOGENESIS RECEPTOR-LIKE KINASE) and APOSTART. These full-length genes were recovered by rapid amplification of cDNA ends and their temporal and spatial expression patterns were assessed by reverse transcription-polymerase chain reaction and in situ hybridization, respectively. The expression of PpSERK and APOSTART differed in apomictic and sexual genotypes. Their putative role in cell-signaling transduction cascades and trafficking events required during sporogenesis, gametogenesis, and embryogenesis in plants is reported and discussed. We propose that, in nucellar cells of apomictic genotypes, PpSERK is the switch that channels embryo sac development and that it may also redirect signaling gene products to compartments other than their typical ones. The involvement of APOSTART in meiosis and programmed cell death is also discussed.
机译:种子生产通常需要异性配子交配。无融合生殖是无性繁殖方式,可避免减数分裂和卵子受精。无融合生殖的基本特征是,通过单性生殖由无融合生殖产生的胚囊的未还原卵自发形成胚。如果无融合生殖被很好地理解和利用,它可以被用来无限期繁殖优良杂种或带有复杂基因组的特定基因型。对调节生殖事件的机制的更深入的了解将从根本上有助于理解无融合生殖途径的遗传控制。在印度大虾中,我们分离并鉴定了两个基因,PpSERK(体细胞胚发生受体样激酶)和APOSTART。这些全长基因是通过快速扩增cDNA末端回收的,它们的时间和空间表达模式分别通过逆转录-聚合酶链反应和原位杂交来评估。 PpSERK和APOSTART的表达在无融合基因型和有性基因型上有所不同。报道并讨论了它们在植物的孢子发生,配子发生和胚胎发生过程中所需的细胞信号转导级联和运输事件中的推定作用。我们建议,在无融合基因型的核细胞中,PpSERK是引导胚胎囊发育的开关,并且它还可能将信号基因产物重定向到除其典型细胞外的其他区域。还讨论了APOSTART与减数分裂和程序性细胞死亡的关系。

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