Transcriptomes and DNA methylomes in apomictic cells delineate nucellar embryogenesis initiation in citrus.

Hui-Hui Jia, Yuan-Tao Xu, Zhao-Ping Yin, Xiao-Meng Wu, Mei Qing, Yan-Jie Fan, Xin Song, Kai-Dong Xie, Zong-Zhou Xie, Qiang Xu, Xiu-Xin Deng, Wen-Wu Guo
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引用次数: 8

Abstract

Citrus nucellar poly-embryony (NPE) is a mode of sporophytic apomixis that asexual embryos formed in the seed through adventitious embryogenesis from the somatic nucellar cells. NPE allows clonal propagation of rootstocks, but it impedes citrus cross breeding. To understand the cellular processes involved in NPE initiation, we profiled the transcriptomes and DNA methylomes in laser microdissection captured citrus apomictic cells. In apomictic cells, ribosome biogenesis and protein degradation were activated, whereas auxin polar transport was repressed. Reactive oxygen species (ROS) accumulated in the poly-embryonic ovules, and response to oxidative stress was provoked. The global DNA methylation level, especially that of CHH context, was decreased, whereas the methylation level of the NPE-controlling key gene CitRWP was increased. A C2H2 domain-containing transcription factor gene and CitRWP co-expressed specifically in apomictic cells may coordinate to initiate NPE. The activated embryogenic development and callose deposition processes indicated embryogenic fate of nucellar embryo initial (NEI) cells. In our working model for citrus NPE initiation, DNA hyper-methylation may activate transcription of CitRWP, which increases C2H2 expression and ROS accumulation, triggers epigenetic regulation and regulates cell fate transition and NEI cell identity in the apomictic cells.

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柑橘无融合细胞的转录组和DNA甲基化组描述了柑桔核胚发生的起始。
柑桔核心多胚胎(NPE)是一种孢子体无融合生殖模式,由体细胞的核心细胞通过不定胚发生在种子中形成无性胚。NPE允许砧木无性系繁殖,但它阻碍了柑橘的杂交育种。为了了解NPE起始的细胞过程,我们分析了激光显微解剖捕获的柑橘无分裂细胞的转录组和DNA甲基化组。在无分裂细胞中,核糖体的生物发生和蛋白质降解被激活,而生长素的极性运输被抑制。活性氧(ROS)在多胚胚珠中积累,引起对氧化应激的反应。整体DNA甲基化水平下降,尤其是CHH背景下的甲基化水平下降,而npe控制关键基因CitRWP的甲基化水平升高。一个含有C2H2结构域的转录因子基因和CitRWP在无分裂细胞中特异表达,可能协同启动NPE。激活的胚性发育和胼胝质沉积过程表明了珠心胚初始(NEI)细胞的胚性命运。在我们的柑橘NPE启动工作模型中,DNA超甲基化可能激活柑橘rwp的转录,从而增加C2H2的表达和ROS的积累,触发表观遗传调控,调节无分裂细胞的细胞命运转变和NEI细胞身份。
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