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形态学和阶段特异性转录组分析揭示了山药(Dioscorea alata L.)珠芽生长背后不同的调控程序。

Morphological and stage-specific transcriptome analyses reveal distinct regulatory programs underlying yam (Dioscorea alata L.) bulbil growth.

作者信息

Wu Zhi-Gang, Jiang Wu, Tao Zheng-Ming, Pan Xiao-Jun, Yu Wen-Hui, Huang Hui-Lian

机构信息

Key Laboratory for Plant Genetic Improvement, Institute of Subtropical Crops, Zhejiang Academy of Agricultural Sciences, Wenzhou, China.

School of Pharmacy, Wenzhou Medical University, Wenzhou, China.

出版信息

J Exp Bot. 2020 Mar 25;71(6):1899-1914. doi: 10.1093/jxb/erz552.

Abstract

In yam (Dioscorea spp) species, bulbils at leaf axils are the most striking species-specific axillary structure and exhibit important ecological niches. Genetic regulation underlying bulbil growth remains largely unclear so far. Here, we characterize yam (Dioscorea alata L.) bulbil development using histological analysis, and perform full transcriptional profiling on key developmental stages together with phytohormone analyses. Using the stage-specific scoring algorithm, we have identified 3451 stage-specifically expressed genes that exhibit a tight link between major transcriptional changes and stages. Co-expressed gene clusters revealed an obvious over-representation of genes associated with cell division and expansion at the initiation stage of bulbils (T1). Transcriptional changes of hormone-related genes highly coincided with hormone levels, indicating that bulbil initiation and growth are coordinately controlled by multiple phytohormones. In particular, localized auxin is transiently required to trigger bulbil initiation, and be further depleted or exported from bulbils to promote growth by up-regulation of genes involved in auxinconjugation and efflux. The sharp increase in supply of sucrose and an enhanced trehalose-6-phophate pathway at T1 were observed, suggesting that sucrose probably functions as a key signal and promotes bulbil initiation. Analysis of the expression of transcription factors (TFs) predicated 149 TFs as stage-specifically expressed; several T1-specific TFs (from Aux/IAA, E2F, MYB, and bHLH families) have been shown to play key roles in triggering bulbil formation. Together, our work provides a crucial angle for in-depth understanding of the molecular programs underlying yam's unique bulbil development processes. Stage-specific gene sets can be queried to obtain key candidates regulating bulbil growth, serving as valuable resources for further functional research.

摘要

在薯蓣属(Dioscorea spp)植物中,叶腋处的珠芽是最显著的物种特异性腋生结构,并展现出重要的生态位。到目前为止,珠芽生长的遗传调控在很大程度上仍不清楚。在这里,我们通过组织学分析对薯蓣(Dioscorea alata L.)珠芽发育进行了表征,并在关键发育阶段进行了全转录组分析以及植物激素分析。使用阶段特异性评分算法,我们鉴定出了3451个阶段特异性表达基因,这些基因在主要转录变化和阶段之间表现出紧密联系。共表达基因簇显示,在珠芽起始阶段(T1),与细胞分裂和扩张相关的基因明显过度富集。激素相关基因的转录变化与激素水平高度一致,表明珠芽的起始和生长受到多种植物激素的协同调控。特别是,局部生长素是触发珠芽起始所短暂需要的,随后从珠芽中进一步消耗或输出,通过上调参与生长素共轭和外排的基因来促进生长。在T1阶段观察到蔗糖供应的急剧增加和海藻糖 - 6 - 磷酸途径的增强,这表明蔗糖可能作为关键信号促进珠芽起始。对转录因子(TFs)表达的分析预测有149个TFs为阶段特异性表达;几个T1特异性TFs(来自Aux/IAA、E2F、MYB和bHLH家族)已被证明在触发珠芽形成中起关键作用。总之,我们的工作为深入理解薯蓣独特珠芽发育过程背后的分子程序提供了一个关键视角。可以查询阶段特异性基因集以获得调控珠芽生长的关键候选基因,作为进一步功能研究的宝贵资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01d3/7242083/11efd2c6f590/erz552f0001.jpg

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