Conserved, divergent and heterochronic gene expression during Brachypodium and Arabidopsis embryo development.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2021-09-01 Epub Date: 2021-05-05 DOI:10.1007/s00497-021-00413-4
Zhaodong Hao, Zhongjuan Zhang, Daoquan Xiang, Prakash Venglat, Jinhui Chen, Peng Gao, Raju Datla, Dolf Weijers
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Abstract

Key message: Developmental and transcriptomic analysis of Brachypodium embryogenesis and comparison with Arabidopsis identifies conserved and divergent phases of embryogenesis and reveals widespread heterochrony of developmental gene expression. Embryogenesis, transforming the zygote into the mature embryo, represents a fundamental process for all flowering plants. Current knowledge of cell specification and differentiation during plant embryogenesis is largely based on studies of the dicot model plant Arabidopsis thaliana. However, the major crops are monocots and the transcriptional programs associated with the differentiation processes during embryogenesis in this clade were largely unknown. Here, we combined analysis of cell division patterns with development of a temporal transcriptomic resource during embryogenesis of the monocot model plant Brachypodium distachyon. We found that early divisions of the Brachypodium embryo were highly regular, while later stages were marked by less stereotypic patterns. Comparative transcriptomic analysis between Brachypodium and Arabidopsis revealed that early and late embryogenesis shared a common transcriptional program, whereas mid-embryogenesis was divergent between species. Analysis of orthology groups revealed widespread heterochronic expression of potential developmental regulators between the species. Interestingly, Brachypodium genes tend to be expressed at earlier stages than Arabidopsis counterparts, which suggests that embryo patterning may occur early during Brachypodium embryogenesis. Detailed investigation of auxin-related genes shows that the capacity to synthesize, transport and respond to auxin is established early in the embryo. However, while early PIN1 polarity could be confirmed, it is unclear if an active response is mounted. This study presents a resource for studying Brachypodium and grass embryogenesis and shows that divergent angiosperms share a conserved genetic program that is marked by heterochronic gene expression.

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蕨类植物和拟南芥胚胎发育过程中基因表达的一致性、差异性和异时性。
关键信息:对蕨类植物胚胎发生的发育和转录组分析,以及与拟南芥的比较,确定了胚胎发生的保守阶段和不同阶段,并揭示了发育基因表达的广泛异序性。胚胎发生是将合子转化为成熟胚胎的过程,是所有开花植物的基本过程。目前对植物胚胎发生过程中细胞规格和分化的了解主要基于对双子叶模式植物拟南芥的研究。然而,主要的农作物都是单子叶植物,与该支系胚胎发生过程中分化过程相关的转录程序在很大程度上是未知的。在这里,我们将细胞分裂模式分析与单子叶模式植物大戟科(Brachypodium distachyon)胚胎发生过程中的时间转录组资源开发相结合。我们发现,蕨类植物胚胎的早期分裂非常有规律,而后期分裂的模式则不那么刻板。拟南芥和拟南芥的转录组比较分析表明,早期和晚期胚胎发生具有共同的转录程序,而中期胚胎发生在物种间存在差异。对同源组的分析表明,物种间潜在的发育调控因子存在广泛的异时表达。有趣的是,婆婆纳基因往往比拟南芥基因在更早的阶段表达,这表明在婆婆纳胚胎发生过程中,胚胎模式化可能发生得较早。对叶绿素相关基因的详细研究表明,叶绿素的合成、运输和反应能力在胚胎早期就已建立。然而,虽然可以确认早期 PIN1 的极性,但尚不清楚是否已经开始主动响应。这项研究为研究蕨类植物和禾本科植物的胚胎发生提供了资源,并表明不同的被子植物共享一个保守的遗传程序,该程序以异时性基因表达为标志。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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