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首页> 外文期刊>Frontiers in Plant Science >Tissue-Specific Transcriptome and Hormonal Regulation of Pollinated and Parthenocarpic Fig ( Ficus carica L.) Fruit Suggest that Fruit Ripening Is Coordinated by the Reproductive Part of the Syconium
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Tissue-Specific Transcriptome and Hormonal Regulation of Pollinated and Parthenocarpic Fig ( Ficus carica L.) Fruit Suggest that Fruit Ripening Is Coordinated by the Reproductive Part of the Syconium

机译:授粉和单性结实无花果果实的组织特异性转录组和激素调节表明,果实的成熟受制于枸杞子的生殖部分。

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In the unconventional climacteric fig ( Ficus carica ) fruit, pollinated and parthenocarpic fruit of the same genotype exhibit different ripening characteristics. Integrative comparative analyses of tissue-specific transcript and of hormone levels during fruit repining from pollinated vs. parthenocarpic fig fruit were employed to unravel the similarities and differences in their regulatory processes during fruit repining. Assembling tissue-specific transcripts into 147,000 transcripts with 53,000 annotated genes provided new insights into the spatial distribution of many classes of regulatory and structural genes, including those related to color, taste and aroma, storage, protein degradation, seeds and embryos, chlorophyll, and hormones. Comparison of the pollinated and parthenocarpic tissues during fruit ripening showed differential gene expression, especially in the fruit inflorescence. The distinct physiological green phase II and ripening phase III differed significantly in their gene-transcript patterns in both pulp and inflorescence tissues. Gas chromatographic analysis of whole fruits enabled the first determination of ripening-related hormone levels from pollinated and non-pollinated figs. Ethylene and auxin both increased during fruit ripening, irrespective of pollination, whereas no production of active gibberellins or cytokinins was found in parthenocarpic or pollinated ripening fruit. Tissue-specific transcriptome revealed apparent different metabolic gene patterns for ethylene, auxin and ABA in pollinated vs. parthenocarpic fruit, mostly in the fruit inflorescence. Our results demonstrate that the production of abscisic acid (ABA), non-active ABA–GE conjugate and non-active indoleacetic acid (IAA)–Asp conjugate in pollinated fruits is much higher than in parthenocarpic fruits. We suggest that fruit ripening is coordinated by the reproductive part of the syconium and the differences in ABA production between pollinated and parthenocarpic fig fruit might be the key to their different ripening characteristics.
机译:在非常规的更年期无花果(无花果)果实中,相同基因型的授粉和单性结实果实表现出不同的成熟特性。授粉与单性结实无花果果实摘果过程中组织特异性转录本和激素水平的综合比较分析被用于揭示摘果过程中其调控过程的异同。将具有53,000个带注释基因的组织特异性转录本组装成147,000个转录本,为深入了解多种调控和结构基因的空间分布提供了新见解,包括与颜色,味道和香气,贮藏,蛋白质降解,种子和胚芽,叶绿素和激素。果实成熟期间授粉和单性结实组织的比较显示差异的基因表达,尤其是在果实的花序中。在果肉和花序组织中,不同的生理绿色阶段II和成熟阶段III在基因转录方式上有显着差异。整个水果的气相色谱分析可以从无花果和无花果无花果中首次确定与成熟相关的激素水平。乙烯和生长素在果实成熟期间均增加,而与授粉无关,而在单性结实或授粉的成熟果实中未发现活性赤霉素或细胞分裂素的产生。组织特异的转录组揭示了在授粉的和单性结实的果实中,主要在果实花序中,乙烯,生长素和ABA的代谢基因模式明显不同。我们的结果表明,授粉果实中脱落酸(ABA),非活性ABA-GE结合物和非活性吲哚乙酸(IAA)-Asp结合物的产量远高于单性结实的果实。我们建议果实的成熟由糖蜜的生殖部分协调,授粉和单性无花果果实之间ABA产量的差异可能是其成熟特性不同的关键。

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