Suppr超能文献

沉默蝴蝶兰花不老基因促进花朵衰老和脱落。

Silencing of FOREVER YOUNG FLOWER-Like Genes from Phalaenopsis Orchids Promotes Flower Senescence and Abscission.

机构信息

Institute of Biotechnology, National Chung Hsing University, Taichung 40227, Taiwan.

Advanced Plant Biotechnology Center, National Chung Hsing University, Taichung 40227, Taiwan.

出版信息

Plant Cell Physiol. 2021 Mar 25;62(1):111-124. doi: 10.1093/pcp/pcaa145.

Abstract

Ectopic expression of FOREVER YOUNG FLOWER (FYF) delays floral senescence and abscission in transgenic Arabidopsis. To analyze the FYF function in Phalaenopsis orchids, two FYF-like genes (PaFYF1/2) were identified. PaFYF1/2 were highly expressed in young Phalaenopsis flowers, and their expression decreased significantly afterward until flower senescence. This pattern was strongly correlated with the process of flower senescence and revealed that PaFYF1/2 function to suppress senescence/abscission during early flower development. Interestingly, in flowers, PaFYF1 was consistently expressed less in petals than in lips/sepals, whereas PaFYF2 was expressed relatively evenly in all flower organs. This difference suggests a regulatory modification of the functions of PaFYF1 and PaFYF2 during Phalaenopsis flower evolution. Delayed flower senescence and abscission, which were unaffected by ethylene treatment, were observed in 35S::PaFYF1/2 and 35S::PaFYF1/2 + SRDX transgenic Arabidopsis plants due to the downregulation of the ethylene signaling and abscission-associated genes EDF1-4, IDA and BOP1/2. These results suggest a possible repressor role for Phalaenopsis PaFYF1/2 in controlling floral senescence/abscission by suppressing ethylene signaling and abscission-associated genes. To further validate the function of PaFYF1/2, PaFYF1/2-VIGS (virus-induced gene silencing) Phalaenopsis were generated and analyzed. Promotion of senescence and abscission was observed in PaFYF1/2-VIGS Phalaenopsis flowers by the upregulation of PeEDF1/2, PeSAG39 and PeBOP1/2 expression, the early occurrence of greening according to their increased chlorophyll content and the reduction in water content in flower organs. Our results support that PaFYF1/2 function as transcriptional repressors to prohibit flower senescence and abscission in Phalaenopsis.

摘要

永生花(FOREVER YOUNG FLOWER,FYF)的异位表达可延缓转基因拟南芥的花衰老和脱落。为了分析 FYF 在蝴蝶兰中的功能,鉴定了两个 FYF 样基因(PaFYF1/2)。PaFYF1/2 在年轻的蝴蝶兰花中高表达,随后其表达显著下降,直到花衰老。这种模式与花衰老过程强烈相关,表明 PaFYF1/2 功能是在早期花发育过程中抑制衰老/脱落。有趣的是,在花中,PaFYF1 在花瓣中的表达始终低于唇瓣/萼片,而 PaFYF2 在所有花器官中的表达相对均匀。这种差异表明,在蝴蝶兰花进化过程中,PaFYF1 和 PaFYF2 的功能受到调节修饰。由于乙烯信号和脱落相关基因 EDF1-4、IDA 和 BOP1/2 的下调,35S::PaFYF1/2 和 35S::PaFYF1/2+SRDX 转基因拟南芥植物中观察到花衰老和脱落延迟,而乙烯处理对其没有影响。这些结果表明,蝴蝶兰 PaFYF1/2 可能通过抑制乙烯信号和脱落相关基因来负调控花衰老/脱落,发挥可能的转录抑制因子作用。为了进一步验证 PaFYF1/2 的功能,生成并分析了 PaFYF1/2-VIGS(病毒诱导基因沉默)蝴蝶兰。通过上调 PeEDF1/2、PeSAG39 和 PeBOP1/2 的表达,观察到 PaFYF1/2-VIGS 蝴蝶兰花的衰老和脱落促进,根据其增加的叶绿素含量和花器官含水量的减少,提前出现变绿。我们的结果支持 PaFYF1/2 作为转录抑制因子,在蝴蝶兰中阻止花衰老和脱落的功能。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验