Identification and expression analysis of YABBY family genes in Platycodon grandiflorus.

IF 2.8 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Lingyang Kong, Jiaying Sun, Zhehui Jiang, Weichao Ren, Zhen Wang, Meiqi Zhang, Xiubo Liu, Lijuan Wang, Wei Ma, Jiao Xu
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引用次数: 0

Abstract

Platycodon grandiflorus set ornamental, edible, and medicinal plant with broad prospects for further application development. However, there are no reports on the YABBY transcription factor in P. grandiflorus. Identification and analysis of the YABBY gene family of P. grandiflorus using bioinformatics means. Six YABBY genes were identified and divided into five subgroups. Transcriptome data and qRT-PCR were used to analyze the expression patterns of YABBY. YABBY genes exhibited organ-specific patterns in expression in P grandiflorus. Upon salt stress and drought induction, P. grandiflorus presented different morphological and physiological changes with some dynamic changes. Under salt treatment, the YABBY gene family was down-regulated; PgYABBY5 was up-regulated in leaves at 24 h. In drought treatment, PgYABBY1, PgYABBY2, and PgYABBY3 were down-regulated to varying degrees, but PgYABBY3 was significantly up-regulated in the roots. PgYABBY5 was up-regulated gradually after being down-regulated. PgYABBY5 was significantly up-regulated in stem and leaf at 48 h. PgYABBY6 was down-regulated at first and then significantly up-regulated. The dynamic changes of salt stress and drought stress can be regarded as the responses of plants to resist damage. During the whole process of salt and drought stress treatment, the protein content of each tissue part of P grandiflorus changed continuously. At the same time, we found that the promoter region of the PgYABBY gene contains stress-resistant elements, and the regulatory role of YABBY transcription factor in the anti-stress mechanism of P grandiflorus remains to be studied. PgYABBY1, PgYABBY2, and PgYABBY5 may be involved in the regulation of saponins in P. grandiflorus. PgYABBY5 may be involved in the drought resistance mechanism in P. grandiflorus stems and leaves. This study may provide a theoretical basis for studying the regulation of terpenoids by the YABBY transcription factor and its resistance to abiotic stress.

Abstract Image

Abstract Image

Abstract Image

桔梗YABBY家族基因的鉴定与表达分析。
桔梗集观赏、食用、药用于一体,具有广阔的应用开发前景。然而,目前还没有关于桔梗YABBY转录因子的报道。应用生物信息学方法鉴定和分析桔梗YABBY基因家族。鉴定出6个YABBY基因,并将其分为5个亚组。利用转录组数据和qRT-PCR分析YABBY的表达模式。YABBY基因在桔梗中表现出器官特异性表达模式。在盐胁迫和干旱诱导下,桔梗表现出不同的形态和生理变化,并有一定的动态变化。在盐处理下,YABBY基因家族被下调;PgYABBY5在24小时时在叶片中上调。在干旱处理中,PgYABBY1、PgYABBY2和PgYABBSY3在不同程度上下调,但PgYABBBY3在根部显著上调。PgYABBY5在下调后逐渐上调。PgYABBY5在48小时时在茎和叶中显著上调。PgYABBY6先下调后明显上调。盐胁迫和干旱胁迫的动态变化可以看作是植物抵抗损伤的反应。在盐胁迫和干旱胁迫处理的整个过程中,桔梗各组织部分的蛋白质含量不断变化。同时,我们发现PgYABBY基因的启动子区含有抗应激元件,YABBY转录因子在桔梗抗应激机制中的调节作用还有待研究。PgYABBY1、PgYABBY2和PgYABBBY5可能参与了桔梗皂苷的调节。PgYABBY5可能参与了桔梗茎叶的抗旱机制。本研究为研究YABBY转录因子对萜类化合物的调节及其对非生物胁迫的抗性提供了理论依据。
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来源期刊
Plant Signaling & Behavior
Plant Signaling & Behavior Agricultural and Biological Sciences-Plant Science
CiteScore
6.00
自引率
3.40%
发文量
111
期刊介绍: Plant Signaling & Behavior, a multidisciplinary peer-reviewed journal published monthly online, publishes original research articles and reviews covering the latest aspects of signal perception and transduction, integrative plant physiology, and information acquisition and processing.
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