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Comparative Embryogenesis in Angiosperms: Activation and Patterning of Embryonic Cell Lineages
Annual Review of Plant Biology ( IF 23.9 ) Pub Date : 2021-06-18 , DOI: 10.1146/annurev-arplant-082520-094112
Thomas Dresselhaus 1 , Gerd Jürgens 2, 3
Affiliation  

Following fertilization in flowering plants (angiosperms), egg and sperm cells unite to form the zygote, which generates an entire new organism through a process called embryogenesis. In this review, we provide a comparative perspective on early zygotic embryogenesis in flowering plants by using the Poaceae maize and rice as monocot grass and crop models as well as Arabidopsis as a eudicot model of the Brassicaceae family. Beginning with the activation of the egg cell, we summarize and discuss the process of maternal-to-zygotic transition in plants, also taking recent work on parthenogenesis and haploid induction into consideration. Aspects like imprinting, which is mainly associated with endosperm development and somatic embryogenesis, are not considered. Controversial findings about the timing of zygotic genome activation as well as maternal versus paternal contribution to zygote and early embryo development are highlighted. The establishment of zygotic polarity, asymmetric division, and apical and basal cell lineages represents another chapter in which we also examine and compare the role of major signaling pathways, cell fate genes, and hormones in early embryogenesis. Except for the model Arabidopsis, little is known about embryopatterning and the establishment of the basic body plan in angiosperms. Using available in situ hybridization, RNA-sequencing, and marker data, we try to compare how and when stem cell niches are established. Finally, evolutionary aspects of plant embryo development are discussed.

中文翻译:


被子植物中的比较胚胎发生:胚胎细胞谱系的激活和模式化

在开花植物(被子植物)受精后,卵细胞和精子细胞结合形成合子,通过称为胚胎发生的过程产生全新的生物体。在这篇综述中,我们通过使用禾本科玉米和水稻作为单子叶植物和作物模型以及拟南芥,提供了开花植物早期合子胚胎发生的比较视角。作为十字花科的双子叶植物模型。从卵细胞的激活开始,我们总结和讨论了植物中母体到合子转变的过程,同时考虑了最近在孤雌生殖和单倍体诱导方面的工作。像印记这样的方面,主要与胚乳发育和体细胞胚胎发生有关,没有被考虑。强调了关于合子基因组激活时间以及母本与父本对合子和早期胚胎发育的贡献的有争议的发现。合子极性、不对称分裂以及顶端和基底细胞谱系的建立代表了另一章,我们还检查和比较了主要信号通路、细胞命运基因和激素在早期胚胎发生中的作用。除了型号拟南芥,关于胚胎图案化和被子植物基本身体计划的建立知之甚少。使用可用的原位杂交、RNA 测序和标记数据,我们尝试比较干细胞壁龛的建立方式和时间。最后,讨论了植物胚胎发育的进化方面。

更新日期:2021-06-19
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