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蓝光通过调控乙烯和脱落酸途径相关基因延缓香石竹花朵衰老。

Blue light postpones senescence of carnation flowers through regulation of ethylene and abscisic acid pathway-related genes.

机构信息

Laboratory of Photosynthesis, Department of Horticulture, Aburaihan Campus, University of Tehran, Pakdasht, Tehran, Iran.

Laboratory of Photosynthesis, Department of Horticulture, Aburaihan Campus, University of Tehran, Pakdasht, Tehran, Iran.

出版信息

Plant Physiol Biochem. 2020 Jun;151:103-112. doi: 10.1016/j.plaphy.2020.03.018. Epub 2020 Mar 18.

Abstract

Endogenous signals in response to exogenous factors determine the senescence of flowers. Interactions among phytohormones especially abscisic acid (ABA) and ethylene are the major determinant of the senescence. In the present study, complex expression patterns of the genes related to ABA and ethylene as endogenous signals were investigated on cut carnations (Dianthus caryophyllus L.) that were exposed to different light spectra. Expression of ethylene biosynthetic (DcACS and DcACO), and signaling (DcETR and DcEin2) genes and also genes involved in ABA biosynthesis (DcZEP1 and DcNCED1), transport (DcABCG25 and DcABCG40) and catabolism (DcCYP707A1) were evaluated in petals of carnations exposed to three light spectra [white, blue and red]. Lowest relative membrane permeability (RMP) was detected in flowers that exposed to Blue light (BLFs), as a consequence, the longest vase life was found in BLFs. The Red and White lights markedly accelerated flower senescence and increased expression of DcACS and DcACO on day 6 and 10 of vase life assessment respectively; while Blue light inhibited the expression of ethylene biosynthetic genes. Expression of the genes involved in the production and transport of ABA and in signal transduction of ethylene was elevated during vase life of flowers irrespective of exposure to different light spectra. In conclusion, Blue light can be an effective environmental factor to extend the vase life of carnation flowers by delaying the petal senescence through down-regulation of ethylene biosynthetic genes and up-regulation of ABA biosynthetic genes.

摘要

内源性信号对外源性因素的反应决定了花的衰老。植物激素,尤其是脱落酸(ABA)和乙烯之间的相互作用是衰老的主要决定因素。在本研究中,研究了暴露于不同光谱光下的切花康乃馨(Dianthus caryophyllus L.)中与 ABA 和乙烯作为内源性信号相关的基因的复杂表达模式。研究了乙烯生物合成(DcACS 和 DcACO)和信号(DcETR 和 DcEin2)基因以及参与 ABA 生物合成(DcZEP1 和 DcNCED1)、运输(DcABCG25 和 DcABCG40)和分解代谢(DcCYP707A1)的基因在康乃馨花瓣中的表达。在暴露于三种光谱光(白光、蓝光和红光)的康乃馨中,检测到最低的相对膜通透性(RMP),因此在 BLF 中发现了最长的瓶插寿命。红光和白光明显加速了花朵的衰老,并分别在瓶插寿命评估的第 6 天和第 10 天增加了 DcACS 和 DcACO 的表达;而蓝光抑制了乙烯生物合成基因的表达。在花朵的瓶插寿命期间,参与 ABA 的产生和运输以及乙烯信号转导的基因的表达均升高,而不论暴露于不同光谱光。总之,蓝光可以通过下调乙烯生物合成基因和上调 ABA 生物合成基因来延缓花瓣衰老,从而成为延长康乃馨瓶插寿命的有效环境因素。

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