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Transcriptomic Insights into Mechanisms of Early Seed Maturation in the Garden Pea (Pisum sativum L.)

机译:转录组学洞察豌豆(Pisum sativum L.)种子早期成熟的机制

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摘要

The garden pea ( L.) is a legume crop of immense economic value. Extensive breeding has led to the emergence of numerous pea varieties, of which some are distinguished by accelerated development in various stages of ontogenesis. One such trait is rapid seed maturation, which, despite novel insights into the genetic control of seed development in legumes, remains poorly studied. This article presents an attempt to dissect mechanisms of early maturation in the pea line Sprint-2 by means of whole transcriptome RNA sequencing in two developmental stages. By using a de novo assembly approach, we have obtained a reference transcriptome of 25,756 non-redundant entries expressed in pea seeds at either 10 or 20 days after pollination. Differential expression in Sprint-2 seeds has affected 13,056 transcripts. A comparison of the two pea lines with a common maturation rate demonstrates that while at 10 days after pollination, Sprint-2 seeds show development retardation linked to intensive photosynthesis, morphogenesis, and cell division, and those at 20 days show a rapid onset of desiccation marked by the cessation of translation and cell anabolism and accumulation of dehydration-protective and -storage moieties. Further inspection of certain transcript functional categories, including the chromatin constituent, transcription regulation, protein turnover, and hormonal regulation, has revealed transcriptomic trends unique to specific stages and cultivars. Among other remarkable features, Sprint-2 demonstrated an enhanced expression of transposable element-associated open reading frames and an altered expression of major maturation regulators and DNA methyltransferase genes. To the best of our knowledge, this is the first comparative transcriptomic study in which the issue of the seed maturation rate is addressed.
机译:豌豆(L.)是一种具有巨大经济价值的豆类作物。广泛的育种导致了许多豌豆品种的出现,其中一些以在个体发育的各个阶段加速发展而著称。这样的特征之一就是种子快速成熟,尽管对豆类种子发育的遗传控制有新的见解,但仍然研究不足。本文提出了在两个发育阶段通过全转录组RNA测序来分析豌豆品系Sprint-2早期成熟机制的尝试。通过使用从头组装方法,我们获得了在授粉后10或20天以豌豆种子表达的25,756个非冗余条目的参考转录组。 Sprint-2种子中的差异表达影响了1,056个转录本。比较两种豌豆株系具有相同的成熟率,结果表明,在授粉后10天,Sprint-2种子显示出发育迟缓,与光合作用,形态发生和细胞分裂有关,而在20天时则表现出快速的脱水作用。以停止翻译和细胞合成代谢以及脱水保护和储存部分的积累为特征。进一步检查某些转录功能类别,包括染色质成分,转录调控,蛋白质更新和激素调控,已揭示了特定阶段和品种独特的转录组趋势。在其他显着特征中,Sprint-2展示了与可转座因子相关的开放阅读框的增强表达,以及主要成熟调节因子和DNA甲基转移酶基因的表达变化。据我们所知,这是第一个比较转录组学研究,其中涉及了种子成熟率的问题。

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