首页> 外文期刊>Archives of Biological Sciences >CLONING AND EXPRESSION ANALYSIS OF TRANSCRIPTION FACTOR RRTTG1 RELATED TO PRICKLE DEVELOPMENT IN ROSE (ROSA RUGOSA)
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CLONING AND EXPRESSION ANALYSIS OF TRANSCRIPTION FACTOR RRTTG1 RELATED TO PRICKLE DEVELOPMENT IN ROSE (ROSA RUGOSA)

机译:玫瑰花粉发育相关转录因子RRTTG1的克隆与表达分析

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A prickle is an acuminate protuberance formed by the deformation of plant trichomes together with a few cortical cells. It is a type of multicellular eglandular trichome with special morphology, which originates from the phloem but is not connected to the xylem. Rosa rugosa is an important ornamental/commercial plant and an important raw material in the food and perfume industries. However, the firm prickles on its stems are inconvenient to field management, the harvesting of flowers and garden management. The TTG1 transcription factor related to the development of prickle was isolated from R. rugosa in the present study. Its expression patterns in different tissues and varieties were analyzed. Results showed the expression level of the RrTTG1 gene was highest in the leaves, followed by the stems, but was lower in the pericarps and petals. Moreover, the higher expression level of the RrTTG1 gene in all tissues of the 'Ciguo rose', as compared with that of the 'Weihai wild rose', follows the results of field morphological observation. Therefore, the RrTTG1 transcription factor is likely to regulate the development of rose prickles. This study allows for further discussion on the molecular mechanisms of prickle formation and development in R. rugosa and provides a molecular basis for the cultivation of roses with fewer or no prickles via genetic engineering.
机译:刺痒症是由植物毛状体和一些皮质细胞变形形成的尖锐突起。它是一种具有特殊形态的多细胞三角毛的毛状体,其起源于韧皮部但未与木质部连接。蔷薇(Rosa rugosa)是重要的观赏/商业植物,也是食品和香水行业的重要原材料。但是,茎上扎实的刺刺不方便田间管理,花卉采摘和花园管理。在本研究中,从拟南芥中分离到与皮刺发展相关的TTG1转录因子。分析了其在不同组织和品种中的表达模式。结果表明,RrTTG1基因的表达水平在叶片中最高,其次是茎,而在果皮和花瓣中较低。此外,RcTTG1基因在“果果玫瑰”的所有组织中的表达水平均比“威海野玫瑰”的表达水平高,这是通过田间形态学观察的结果得出的。因此,RrTTG1转录因子很可能调节玫瑰皮刺的发展。这项研究允许进一步讨论皱纹。的形成和发展的分子机制,并为通过基因工程培养少刺或无刺的玫瑰提供分子基础。

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