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Transcriptome profiling of postharvest shoots identifies PheNAP2- and PheNAP3-promoted shoot senescence

机译:采后射击的转录组谱析出鉴定苯染料2和苯染料3促进的芽衰老

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摘要

The juvenile shoots of Phyllostachys edulis have been used as a food source for thousands of years, and it is recognized as a potential source of nutraceuticals. However, its rapid senescence restricts bamboo production and consumption, and the underlying molecular mechanisms of rapid shoot senescence remain largely unclear. In the present study, transcriptome profiling was employed to investigate the molecular regulation of postharvest senescence in shoots, along with physiological assays and anatomical dissections. Results revealed a distinct shift in expression postharvest, specifically transitions from cellular division and differentiation to the relocation of nutrients and programmed cell death. A number of regulatory and signaling factors were induced during postharvest senescence. Moreover, transcription factors, including NAM, ATAF and CUC (NAC) transcription factors, basic helix-loop-helix transcription factors, basic region/leucine zipper transcription factors, MYB transcription factors and WRKY transcription factors, were critical for shoot postharvest senescence, of which NACs were the most abundant. PheNAP2 and PheNAP3 were induced in postharvest shoots and found to promote leaf senescence in Arabidopsis by inducing the expression of AtSAG12 and AtSAG113. PheNAP2 and PheNAP3 could both restore the stay-green Arabidopsis nap to the wildtype phenotype either under normal growth condition or under abscisic acid treatment. Collectively, these results suggest that PheNAPs may promote shoot senescence. These findings provide a systematic view of shoot senescence and will inform future studies on the underlying molecular mechanisms responsible for shoot degradation during storage.
机译:Phyllostachys Edulis的少年射击已被用作千年的食物来源,并且被认为是潜在的营养素来源。然而,其快速衰老限制了竹制的生产和消费,快速射击衰老的潜在分子机制仍然很大程度上不清楚。在本研究中,使用转录组分析来研究芽中Postharct衰老的分子调控,以及生理测定和解剖学夹层。结果表明,表达后氨基乙醇的不同转变,特别是从细胞分裂和分化与营养素迁移和编程细胞死亡的转变。在采后衰老期间诱导了许多监管和信号传导因子。此外,转录因子包括NAM,ATAF和CUC(NAC)转录因子,基本螺旋环 - 螺旋转录因子,基本区域/亮氨酸剽窃转录因子,MYB转录因子和腕表转录因子,对射击衰老至关重要哪些NAC是最丰富的。 Phostharvest芽中诱导phopap2和phapap3,发现通过诱导Atsag12和Atsag113的表达,促进拟南芥中的叶片衰老。 PhapaP2和Phapap3可以在正常生长条件下或在脱钙酸处理下恢复到野生型表型的野生型拟南芥。总的来说,这些结果表明,脂肪可能促进射击衰老。这些调查结果提供了对芽衰老的系统性观点,并将通知未来的研究,负责在储存期间脱枝降解的潜在分子机制。

著录项

  • 来源
    《Tree Physiology》 |2019年第12期|共18页
  • 作者单位

    State Forestry &

    Grassland Adm Int Ctr Bamboo &

    Rattan Key Lab Bamboo &

    Rattan Sci &

    Technol Futong East St 8 Beijing 100102 Peoples R China;

    State Forestry &

    Grassland Adm Int Ctr Bamboo &

    Rattan Key Lab Bamboo &

    Rattan Sci &

    Technol Futong East St 8 Beijing 100102 Peoples R China;

    State Forestry &

    Grassland Adm Int Ctr Bamboo &

    Rattan Key Lab Bamboo &

    Rattan Sci &

    Technol Futong East St 8 Beijing 100102 Peoples R China;

    State Forestry &

    Grassland Adm Int Ctr Bamboo &

    Rattan Key Lab Bamboo &

    Rattan Sci &

    Technol Futong East St 8 Beijing 100102 Peoples R China;

    State Forestry &

    Grassland Adm Int Ctr Bamboo &

    Rattan Key Lab Bamboo &

    Rattan Sci &

    Technol Futong East St 8 Beijing 100102 Peoples R China;

    State Forestry &

    Grassland Adm Int Ctr Bamboo &

    Rattan Key Lab Bamboo &

    Rattan Sci &

    Technol Futong East St 8 Beijing 100102 Peoples R China;

    State Forestry &

    Grassland Adm Int Ctr Bamboo &

    Rattan Key Lab Bamboo &

    Rattan Sci &

    Technol Futong East St 8 Beijing 100102 Peoples R China;

    State Forestry &

    Grassland Adm Int Ctr Bamboo &

    Rattan Key Lab Bamboo &

    Rattan Sci &

    Technol Futong East St 8 Beijing 100102 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 林业;
  • 关键词

    NAC; Phyllostachys edulis; postharvest; regulatory factors; shoot senescence;

    机译:NAC;Phyllostachys Edulis;POSTPROST;监管因素;射击衰老;

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