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首页> 外文期刊>PLoS Genetics >MYB64 and MYB119 Are Required for Cellularization and Differentiation during Female Gametogenesis in Arabidopsis thaliana
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MYB64 and MYB119 Are Required for Cellularization and Differentiation during Female Gametogenesis in Arabidopsis thaliana

机译:拟南芥进行雌性配子过程中细胞化和分化需要 MYB 64 MYB 119

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In angiosperms, the egg cell forms within the multicellular, haploid female gametophyte. Female gametophyte and egg cell development occurs through a unique process in which a haploid spore initially undergoes several rounds of synchronous nuclear divisions without cytokinesis, resulting in a single cell containing multiple nuclei. The developing gametophyte then forms cell walls (cellularization) and the resulting cells differentiate to generate the egg cell and several accessory cells. The switch between free nuclear divisions and cellularization-differentiation occurs during developmental stage FG5 in Arabidopsis , and we refer to it as the FG5 transition. The molecular regulators that initiate the FG5 transition during female gametophyte development are unknown. In this study, we show using mutant analysis that two closely related MYB transcription factors, MYB64 and MYB119, act redundantly to promote this transition. MYB64 and MYB119 are expressed during the FG5 transition, and most myb64 myb119 double mutant gametophytes fail to initiate the FG5 transition, resulting in uncellularized gametophytes with supernumerary nuclei. Analysis of cell-specific markers in myb64 myb119 gametophytes that do cellularize suggests that gametophytic polarity and differentiation are also affected. We also show using multiple-mutant analysis that MYB119 expression is regulated by the histidine kinase CKI1, the primary activator of two-component signaling (TCS) during female gametophyte development. Our data establish a molecular pathway regulating the FG5 transition and implicates CKI1-dependent TCS in the promotion of cellularization, differentiation, and gamete specification during female gametogenesis. Author Summary Female gamete formation in angiosperms occurs through a unique process in which a haploid spore initially undergoes a series of free nuclear divisions without cytokinesis, resulting in a single cell containing multiple nuclei. The nuclei then differentiate and are partitioned with cell walls to generate the egg cell and several accessory cells. The molecular regulators that initiate the switch between free nuclear divisions and differentiation during female gametophyte development are unknown. In this study we show that two transcription factors, MYB64 and MYB119, redundantly act to promote this process in the model organism Arabidopsis . We also show that one of them, MYB119 , is transcriptionally regulated by the histidine-kinase CKI1. Our data establish the framework of a gene regulatory network required to promote cellularization, differentiation, and gamete specification during female gametogenesis.
机译:在被子植物中,卵细胞在多细胞单倍体雌配子体中形成。雌配子体和卵细胞的发育是通过一个独特的过程发生的,在该过程中,单倍体孢子最初经历了几轮同步核分裂而没有胞质分裂,从而形成了一个包含多个核的单细胞。然后,发育中的配子体形成细胞壁(细胞化),并且所形成的细胞分化生成卵细胞和几个辅助细胞。自由核分裂与细胞分化之间的转换发生在拟南芥的FG5发育阶段,我们将其称为FG5过渡。在女性配子体发育过程中启动FG5过渡的分子调节剂尚不清楚。在这项研究中,我们显示了使用突变分析,两个密切相关的MYB转录因子,MYB64和MYB119,多余地发挥作用来促进这种转变。 MYB64和MYB119在FG5过渡过程中表达,大多数myb64 myb119双重突变配子体无法启动FG5过渡,从而导致具有超核的未细胞配子体。对确实细胞化的myb64 myb119配子体中的细胞特异性标记物的分析表明,配子体的极性和分化也受到影响。我们还显示使用多突变分析表明,MYB119表达受组氨酸激酶CKI1调节,组氨酸激酶CKI1是雌配子体发育过程中两组分信号转导(TCS)的主要激活剂。我们的数据建立了调节FG5过渡的分子途径,并在女性配子发生过程中牵涉CKI1依赖性TCS促进细胞化,分化和配子规格。作者摘要被子植物中的雌配子形成是通过一个独特的过程发生的,在该过程中,单倍体孢子最初经历了一系列自由核分裂,而没有胞质分裂作用,从而形成了一个包含多个核的单细胞。然后细胞核分化并与细胞壁分隔,以产生卵细胞和几个辅助细胞。在雌配子体发育过程中引发自由核分裂与分化之间转换的分子调节剂尚不清楚。在这项研究中,我们显示了两个转录因子MYB64和MYB119在模型生物拟南芥中冗余地促进了这一过程。我们还显示,其中之一,MYB119,受组氨酸激酶CKI1的转录调控。我们的数据建立了在雌性配子发生过程中促进细胞化,分化和配子规格所需的基因调控网络框架。

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