睡莲(睡莲科)受精和种子发育的转录组:生殖过程中表观遗传模式的证据。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Rebecca A Povilus, William E Friedman
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引用次数: 2

摘要

关键信息:首次记录了睡莲种子发育过程中的基因表达,为睡莲有性生殖过程中的动态表观遗传模式提供了证据。从开花植物(被子植物)系统发育的广泛样本中收集越来越多的物种,对种子发育过程中的基因表达进行了研究。然而,起源早于单子房和双子房分化的被子植物谱系在很大程度上被忽视了。为了为了解开花植物种子发育的早期进化提供新的资源,我们对睡莲(Nymphaea thermarum)生殖发育的三个关键阶段的全胚珠和种子进行了转录组测序。我们首先探索基因表达模式,从成熟胚珠开始,继续通过受精进入种子发育的早期和中期。我们发现了与该物种种子发育的组织学/形态学观察相一致的基因表达模式,例如与其他物种的胚胎和胚乳发育相关的淀粉合成和转录因子相关的基因表达。我们还发现了在该物种的种子发育过程中以前不知道的过程的证据,例如表观遗传修饰。然后,我们研究了与DNA模式和组蛋白甲基化相关的基因表达,这些过程对远亲和结构多样的单子房和双子房种子发育至关重要。据推测,大约89%的转录本与DNA和组蛋白甲基化修饰子同源,包括已知与模式印记相关的表观遗传修饰基因的同源基因,在热玉米种子发育过程中表达。我们的研究结果表明,动态表观遗传模式是被子植物种子发育的一个非常保守的方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transcriptomes across fertilization and seed development in the water lily Nymphaea thermarum (Nymphaeales): evidence for epigenetic patterning during reproduction.

Key message: The first record of gene expression during seed development within the Nymphaeales provides evidence for a variety of biological processes, including dynamic epigenetic patterning during sexual reproduction in the water lily Nymphaea thermarum. Studies of gene expression during seed development have been performed for a growing collection of species from a phylogenetically broad sampling of flowering plants (angiosperms). However, angiosperm lineages whose origins predate the divergence of monocots and eudicots have been largely overlooked. In order to provide a new resource for understanding the early evolution of seed development in flowering plants, we sequenced transcriptomes of whole ovules and seeds from three key stages of reproductive development in the waterlily Nymphaea thermarum, an experimentally tractable member of the Nymphaeales. We first explore patterns of gene expression, beginning with mature ovules and continuing through fertilization into early- and mid-stages of seed development. We find patterns of gene expression that corroborate histological/morphological observations of seed development in this species, such as expression of genes involved in starch synthesis and transcription factors that have been associated with embryo and endosperm development in other species. We also find evidence for processes that were previously not known to be occurring during seed development in this species, such as epigenetic modification. We then examine the expression of genes associated with patterning DNA and histone methylation-processes that are essential for seed development in distantly related and structurally diverse monocots and eudicots. Around 89% of transcripts putatively homologous to DNA and histone methylation modifiers are expressed during seed development in N. thermarum, including homologs of genes known to pattern imprinting-related epigenetic modifications. Our results suggest that dynamic epigenetic patterning is a deeply conserved aspect of angiosperm seed development.

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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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